HomeMy WebLinkAboutENERGY EFFICIENCY CODE" FORM R405-2017
FLORIDA ENERGY EFFICIENCY CODE FOR BUILDING CONSTRUCTION
Florida Department of Business and Professional Regulation - Residential Performance Method
Project Name: -� 1612 B LHG - N
' �
Builder Name:
SCANNED
Street: soo "I ,�.
Permit Office: PortSt. Lucie
City, State, Zip: , FL, C
Permit Number:
BY
Owner: WADEJOURNEY
Jurisdiction: 661000
St. LucieCoun41
Design Location: FL, ST_LUCIE_CO_INTL
County: St. Lucie (Florida Climate Zone 2 )
1. New construction or existing New (From Plans)
9. Wall Types (1464.0 sqft.)
Insulation Area
2. Single family or multiple family Single-family
a. Frame - Wood, Exterior
R-13.0 1172.00 ft2
b. Frame - Wood, Adjacent
R=13.0 292.00 ft2
3. Number of units, if multiple family 1
c. N/A
R= ft2
4. Number of Bedrooms 4
d. N/A
R= ft2
10. Ceiling Types (1603.0 sqft.)
Insulation Area
5. Is this a worst case? No
a. Under Attic (Vented)
R=30.0 1603.00 fl a
6. Conditioned floor area above grade (112) 1603
b. N/A
R= ft2
Conditioned floor area below grade (ft2) 0
c. N/A
R= ft2
11. Ducts
R ft2
7. Windows(121.8 sqft.) Description Area
a. Sup: Attic, Ret: Main, AH: Main
6 320.6
a. U-Factor: Dbl, U=0.32 121.84 ft2
SHGC: SHGC=0.22
b. U-Factor: N/A ft2
12. Cooling systems
kBtu/hr Efficiency
SHGC:
a. Central Unit
22.2 SEER:14.00
c. U-Factor: N/A ft2
SHGC:
13. Heating systems
kBtu/hr Efficiency
d. U-Factor: N/A ft2
a. Electric Heat Pump
22.2 HSPF:8.20
SHGC:
Area Weighted Average Overhang Depth: 1.000 ft.
Area Weighted Average SHGC: 0.220
14. Hot water systems
a. Electric
Cap: 50 gallons
8. Floor Types (1603.0 sqft.) Insulation Area
EF: 0.920
a. Slab -On -Grade Edge Insulation R=0.0 1603.00 112
b. Conservation features
b. WA R. ft2
None
c. N/A R= ft2
15. Credits
Pstat
Glass/Floor Area: 0.076 Total Proposed Modified Loads: 49.33
PASS
Total Baseline Loads: 49.70
I hereby certify that the plans and specifications covered by
Review of the plans and
Yg6E S7,gT
this calculation are in compliance with the Florida Energy
specifications covered by this
FOB
Cede. BO an
calculation indicates compliance
�DigitallysignedbyBojan
f Paukovic
with the Florida Energy Code.
Date: 2019.03.01162654
PREPARED BY: Pallknvi�
Before construction is completed
DATE:
this building will be inspected for
compliance with Section 553.908
0 -LEI ' a
I hereby certify that this building, as designed, is in compliance
Florida Statutes.
yS
cCD
with the Florida Energy ode.
WE
OWNER/AG
BUILDING OFFICIAL:
DATE:
DATE:
- Compliance requires certification by the air handler unit manufacturer that the air handler enclosure qualifies as
certified factory -sealed In accordance with R403.3.2.1.
- Compliance requires an Air Barrier and Insulation Inspection Checklist in accordance with R402.4.1.1 and this project requires an
envelope leakage test report with envelope leakage no greater than 7.00 ACH50 (R402.4.1.2).
- Compliance with a proposed duct leakage On requires a Duct Leakage Test Report confirming duct leakage to outdoors,
tested in accordance with ANSI/RESNET/ICC 380, is not greater than 0.030 On for whole house.
3/1/2019 4:25 PM EnergyGauge® USA Section R405.4.1 Compliant Software Page 1 of 4
FORM R405-2017 INPUT SUMMARY CHECKLIST REPORT
PROJECT
Title:
Building Type:
Owner Name:
# of Units:
Builder Name:
Permit Office:
Jurisdiction:
Family Type:
New/Existing:
Comment:
Lot 06 1612 B LHG - N
User
WADE JOURNEY
1
Port St. Lucie
661000
Single-family
Now (From Plans)
Bedrooms: 4
Conditioned Area: 1603
Total Stories: 1
Worst Case: No
Rotate Angle: 0
Cross Ventilation: No
Whole House Fan: No
Address Type: Lot Information
Lot# 06
Block/Subdivision: Lakewood Park
PlatBook:
Street:
County: _ - St. Lucie
City, State, Zip:
FL,
CLIMATE
/
V Design Location
Design Temp
TMY Site 97.5 % 2.5 %
Int Design Temp Heating Design Daily Temp
Winter Summer Degree Days Moisture Range
FL, ST_LUCIE_CO_INTL FL_VERO_BEACH_MUNI 39 90
70
75 299 58
Medium
BLOCKS
Number
Name
Area Volume
1
Blockl
1603 12824
SPACES
Number
Name
Area Volume Kitchen Occupants
Bedrooms
Infil ID Finished Cooled
Heated
1
Main
1603 12824 Yes 5
4
1 Yes Yes
Yes
FLOORS
#
Floor Type
Space Perimeter R-Value
Area
Tile Wood
Carpet
1 Slab -On -Grade Edge Insulatio
Main 146.5 It 0
1603 ft2
---- 0.29 0
0.71
ROOF
V #
Roof Gable Roof
Type Materials Area Area Color
Solar
Absor.
SA Emitt Emitt Deck
Tested Tested Insul.
Pitch
(deg)
1
Gable or Shed Composition shingles 1793 ft2 402 ft2 Medium
0.7
N 0.7 No 0
26.6
ATTIC
/
V #
Type
Ventilation Vent Ratio (1 in)
Area
RIBS IRCC
1
Full attic
Vented 300 1603 ft2
N N
CEILING
#
Ceiling Type
Space R-Value Ins Type Area Framing Frac Truss Type
1
Under Attic (Vented)
Main 30 Blown
1603 ft2 0.1 Wood
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FORM R405-2017 INPUT SUMMARY CHECKLIST REPORT
WALLS
Adjacent Space
Cavity Width Height
Sheathing Framing Solar
Below
_ 1
-2
,_3
-_ 4
5
N
E
S
W
-
Exterior Frame - Wood Main
Exterior Frame - Wood Main
Exterior Frame- Wood Main
Exterior Frame - Wood Main
Garage Frame - Wood Main
13 18 6 8
13 36 6 8
13 38 6 8
13 53 0 8
13 36 6 8
0 148.0 ft2
0 292.0 ft2
0 308.0 ft2
0 424.0 ft2
0 292.0 ft2
0
0
0
0
0
0.25 0.8
0.25 0.8
0.25 0.8
0.25 0.8
0.25 0.8
0
0
0
0
0
DOORS
#
Ornt Door Type Space
Storms
U-Value
Ft
Width
In
Height
Ft In
Area
1
2
N Wood Main
- Wood Main
None
None
.39 3
.39 2
8
6 8
6 8
20 ftz
17.8 ft2
WINDOWS
' Orientation shown is the entered. Proposed orientation.
'
V
#
Wall
Omt ID Frame Panes NFRC
U-Factor SHGC Imp
Overhang
Area Depth Separation
Int Shade
Screening
1
2
3
4
5
n 1 Vinyl Low-E Double Yes
e 2 Vinyl Low-E Double Yes
s 3 Vinyl Low-E Double Yes
s 3 Vinyl Low-E Double Yes
W 4 Vinyl Low-E Double Yes
0.32 0.22 N
0.32 0.22 N
0.32 0.22 N
0.32 0.22 N
0.32 0.22 N
28.3 ft2 1 it 0 in
29.2 ft2 1 it 0 in
6.0 ft2 1 it 0 in
30.0 ft2 1 it 0 in
28.3 ft2 1 ft 0 in
1 it 0 in
1 it 0 in
1 it 0 in
1 it 0 in
1 ft 0 in
Drapes/blinds
Drapes/blinds
Drapes/blinds
Drapes/blinds
Drapes/blinds
None
None
None
None
None
GARAGE
#
Floor Area Ceiling Area
Exposed Wall Perimeter
Avg. Wall Height
Exposed Wall Insulation
1
387 ft2 387 ft2
64 it
8 it
1
INFILTRATION
#
Scope
' Method SLA
CFM 50'. . ELA EgLA ACH
ACH 50
1 Wholehouse Proposed ACH(50) .000356
1496.1 82.14 154.47 .2649
7
HEATING SYSTEM
#
System Type Subtype
Efficiency
Capacity
Block
Ducts
1
Electric Heat Pump/ Split
HSPF:8.2
22.2 kBtu/hr
1
sys#1
COOLING SYSTEM
#
System Type Subtype
Efficiency
Capacity Air Flow
SHR Block
Ducts
1
Central Unitt Split
SEER: 14 22.2 kBtu/hr
cfm
0.76 1
sys#1
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FORM R405-2017 INPUT SUMMARY CHECKLIST REPORT
HOT WATER SYSTEM
# System Type
SubType
Location
EF Cap
Use
SetPnt
Conservation
1 Electric
None
Garage
0.92 50 gal
60.9 gal
120 deg
None
SOLAR HOT WATER SYSTEM
FSEC
Collector
Storage
Cert # Company Name
System Model # Collector Model
# Area
Volume
FEF
None None
ft2
DUCTS
/ --- Supply ---
---- Return----
Air
CFM 25
CFM25
HVAC #
V # Location R-Value Area
Location
Area Leakage Type
Handler
TOT
OUT
ON RLF
Heat Cool
1 Attic
6 320.6 ft
Main
80.15 ft Prop. Leak Free
Main
--- cfm
48.1 cfm 0.03
0.50
1 1
TEMPERATURES
Programablre Thermostat: Y
Ceiling Fans:
Heating [ Jan [ Feb
r'
[)C) Mar
AApr
MayX� [X�
May ] Jun[ ] Jul
rX�
[ ] Aug
fX�
[ ]Sep
irX,i
Oct
Nov
Nov
Dee
Dec
Venting [ Jan I Feb
[xi Mar
1 Jun L) Jul
[ 1 Aug
[ ]Sep
[X]
Thermostat Schedule: HERS 2006 Reference
Hours
Schedule Type
1
2 3
4 5 6
7
8
9
10
11
12
Cooling(WD) AM
78
78 78
78 78 78
78
78
80
80
80
80
PM
80
80 78
78 78 78
78
78
78
78
78
78
Cooling(WEH) AM
78
78 78
78 78 78
78
78
78
78
78
78
PM
78
78 78
78 78 78
78
78
78
78
78
78
Heating (WD) AM
66
66 66
66 66 68
68
68
68
68
68
68
PM
68
68 68
68 68 68
68
68
68
68
66
66
Heating (WEH) AM
66
66 66
66 66 68
68
68
68
68
68
68
PM
68
68 68
68 68 68
68
68
68
68
66
66
MASS
Mass Type
Area
Thickness
Furniture Fraction
Space
Default 8 Ibs/s .ft.
0 ft2
0 ft
0.3
Main
Name: Test Rater
Signature:
Rating Compant: Test Rater Date:
3/1/2019 4:25 PM EnergyGauge® USA Section R405.4.1 Compliant Software Page 4 of 4
Florida Building Code, Energy Conservation, 6th Edition (2017)
Mandatory Requirements for Residential Performance, Prescriptive and ERI Methods
ADDRESS: Permit Number:
FL,
MANDATORY REQUIREMENTS See individual code sections for full details.
SECTION R401 GENERAL
R401.3 Energy Performance Level (EPL) display card (Mandatory). The building official shall require that an energy performance level (EPL)
display card be completed and certified by the builder to be accurate and correct before final approval of the building for occupancy. Florida law
(Section 553.9085, Florida Statutes) requires the EPL display card to be included as an addendum to each sales contract for both presold and
nonpresold residential buildings. The EPL display card contains information indicating the energy performance level and efficiencies of components
installed in a dwelling unit. The building official shall verily that the EPL display card completed and signed by the builderaccurately reflects the plans
and specifications submitted to demonstrate code compliance for the building. A copy of the EPL display card can be found in Appendix RD.
R402.4 Air leakage (Mandatory). The building thermal envelope shall be constructed to limit air leakage in accordance with the requirements of
Sections R402.4.1 through R402.4.5.
Exception: Dwelling units of R-2 Occupanciesand multiple attached single family dwellings shall be permitted to
comply with Section C402.5.
❑ R402.4.1 Building thermal enveloyft building thermal envelope shall comply with Sections R402.4.1.1 and R402.4.1.2.
The sealing methods between dissimilar materials shall allow for differential expansion and contraction.
R402.4.1.1 Installation.The components of the building thermal envelope as listed in Table R402.4.1.1 shall be Installed in accordance
with the manufacturers instructions and the criteria listed in Table R402.4.1.1, as applicable to the method of construction. Where required
by the code official, an approved third party shall inspect all components and verify compliance.
R402.4.1.2 Testing. The building or dwelling unit shall be tested and verified as having an air leakage rate not exceeding seven air
changes per hour in Climate Zones 1 and 2, and three air changes per hour in Climate Zones 3 through 8. Testing shall be conducted in
accordance with ANSI/RESNETACC 380 and reported at a pressure of 0.2 inch w.g. (50 pascals). Testing shall be conducted by either
individuals as defined in Section 553.993(5) or (7), Florida Statutes, or individuals licensed as set forth in Section 489.105(3)(f), (g) or (I) or
an approved third party. A written report of the results of the test shall be signed by the party conducting the test and provided to the code
official. Testing shall be performed at any time after creation of all penetrations of the building thermal envelope.
Exception: Testing is not required for additions, alterations, renovations, or repairs, of the building thermal envelope of existing
buildings in which the new construction is less than 85 percent of the building thermal envelope.
During testing:
1. Exterior windows and doors, fireplace and stove doors shall be closed, but not sealed, beyond the intended weatherstripping or
other infiltration control measures.
2. Dampers including exhaust, intake, makeup air, backdraft and flue dampers shall be closed, but not sealed beyond intended
infiltration control measures.
3. Interior doors, if installed at the time of the test, shall be open.
4. Exterior doors for continuous ventilation systems and heat recovery ventilators shall be closed and sealed.
S. Heating and cooling systems, if installed at the time of the test, shall be turned off.
6. Supply and return registers, if installed at the time of the test, shall be fully open.
❑R402.4.2 Fireplaces. New wood -burning fireplaces shall have tight -fitting flue dampers or doors, and outdoor combustion air. Where
using tight -fitting doors on factory -built fireplaces listed and labeled in accordance with UL 127, the doors shall be tested and listed for the
fireplace. Where using tight -fitting doors on masonry fireplaces, the doors shall be listed and labeled in accordance with UL 907.
❑ R402.4.3 Fenestration air Ieakage.Windows, skylights and sliding glass doors shall have an air infiltration rate of no more than 0.3 cfm per
square foot (1.5 Us/m2), and swinging doors no more than 0.5 clan per square foot (2.6 Us/m2), when tested according to NFRC 400 or
AAMAr WDMA/CSA 101/I.S.2/A440 by an accredited, independent laboratory and listed and labeled by the manufacturer.
Exception: Site -built windows, skylights and doors.
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MANDATORY REQUIREMENTS - (Continued)
❑ R402.4.4 Rooms containing fuel -burning appliances. In Climate Zones 3 through 8, where open combustion air ducts provide combustion air to
open combustion fuel burning appliances, the appliances and combustion air -opening shall be located outside the building thermal envelope or
enclosed in a room, isolated from inside the thermal envelope. Such rooms shall be sealed and insulated in accordance with the envelope requirements
of Table R402.1.2, where the walls, floors and ceilings shall meet not less than the basement wall R-value requirement. The door into the room shall be
fully gasketed and any water lines and ducts in the room insulated in accordance with Section R403. The combustion air duct shall be insulated where it -
passes through conditioned space to a minimum of R-8.
Exceptions:
1. Direct vent appliances with both intake and exhaust pipes installed continuous to the outside.
2. Fireplaces and stoves complying with Section R402.4.2 and Section R1006 of the Florida Building Code, Residential.
❑ R402.4.5 Recessed lighting. Recessed luminaires Installed in the building thermal envelope shall be sealed to limit air leakage
between conditioned and unconditioned spaces. All recessed luminaires shall be IC -rated and labeled as having an air leakage rate not
more than 2.0 cfm (0.944 Vs) when tested in accordance with ASTM E283 at a 1.57 psi (75 Pa) pressure differential. All recessed
luminaires shall be sealed with a gasket or caulk between the housing and the interior wall or ceiling covering.
R403.7 Controls. SECTION R403 SYSTEMS
❑ R403.1.1 Thermostat provision (Mandatory). At least one thermostat shall be provided for each separate heating and cooling system.
❑ R403.1.3 Heat pump supplementary heat (Mandatory). Heat pumps having supplementary electric -resistance heat shall have controls
that, except during defrost, prevent supplemental heat operation when the heat pump compressor can meet the heating load.
❑ R403.3.2 Sealing (Mandatory) All ducts, air handlers, filter boxes and building cavities that form the primary air containment passageways
for air distribution systems shall be considered ducts or plenum chambers, shall be constructed and sealed in accordance with Section
C403.2.9.2 of the Commercial Provisions of this code and shall be shown to meet duct tightness criteria below.
Duct tightness shall be verified by testing in accordance with ANSI/RESNET/ICC 380 by either individuals as defined In Section 553.993(5) or
(7), Florida Statutes, or Individuals licensed as set forth in Section 489.105(3)(f), (g) or (1). Florida Statutes, to be 'substantially leak free" in
accordance with Section R403.3.3.
❑ R403.3.2.1 Sealed air handler. Air handlers shall have a manufacturer's designation for an air leakage of no more than 2 percent
of the design aidlow, rate when tested in accordance with ASHRAE 193.
❑ R403.3.3 Duct testing (Mandatory). Ducts shall be pressure tested to determine air leakage by one of the following methods:
1, Rough -in test: Total leakage shall be measured with a pressure differential of 0.1 inch w.g. (25 Pa) across the system, Including the
manufacturer's air handler enclosure if installed at the time of the test. All registers shall be taped or otherwise sealed during the test.
2. Postconstruction test: Total leakage shall be measured with a pressure differential of 0.1 inch w.g. (25 Pa) across the
entire system, Including the manufacturers air handler enclosure. Registers shall be taped or otherwise sealed during the
test.
Exceptions:
1. A duct air leakage test shall not be required where the ducts and air handlers are located entirely within the building
thermal envelope.
2. Duct testing is not mandatory for buildings complying by Section 405 of this code.
A written report of the results of the test shall be signed by the party conducting the test and provided to the code official.
❑ R403.3.5 Building cavities (Mandatory). Building framing cavities shall not be used as ducts or plenums.
❑R403.4 Mechanical system piping insulation (Mandatory). Mechanical system piping capable of carrying fluids above 105°F (41°C)
or below 55°F (13°C) shall be insulated to a minimum of R-3.
❑ R403.4.1 .Protection of piping insulation. Piping Insulation exposed to weather shall be protected from damage, including that
caused by sunlight, moisture, equipment maintenance and wind,. and shall provide shielding from solar radiation that can cause
degradation of the material. Adhesive tape shall not be permitted.
❑ R403.5.1 Heated water circulation and temperature maintenance systems (Mandatory). Heated water circulation systems shall be in
accordance with Section R403.5.1.1. Heat trace temperature maintenance systems shall be in accordance with Section R403.5.1.2.
Automatic controls, temperature sensors and pumps shall be accessible. Manual controls shall be readily accessible.
R403.5.1.1 Circulation systems. Heated water circulationsystems shall be provided with a circulation pump. The system return
❑ pipe shall be a dedicated return pipe or a cold water supply pipe. Gravity and thermosiphon circulation systems shall be prohibited.
Controls for circulating hot water system pumps shall start the pump based on the identification of a demand for hot water within the
occupancy. The controls shall automatically turn off the pump when the water in the circulation loop is at the desired temperature and
when there is no demand for hot water.
❑ R403.5.1.2 Heat trace systems. Electric heat trace systems shall comply with IEEE 515.1 or UL 515. Controls for such systems
shall automatically adjust the energy input to the heat tracing to maintain the desired water temperature in the piping in accordance
with the times when heated water is used in the occupancy.
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MANDATORY REQUIREMENTS - (Continued)
R403.5.5 Heat traps (Mandatory). Storage water heaters not equipped with integral heat traps and having vertical pipe risers shall have
heat traps installed on both the inlets and outlets. External heat traps shall consist of either a commercially available heat trap or a
downward and upward bend of at least 3 Yx inches (89 mm) in the hot water distribution line and cold water line located as close as possible
to the storage tank.
R403.5.6 Water heater efficiencies (Mandatory).
R403.5.6.1.1 Automatic controls. Service water -heating systems shall be equipped with automatic temperature controls capable
of adjustment from the lowest to the highest acceptable temperature settings for the intended use. The minimum temperature
setting range shall be from 100°F to 140-F (38°C to 60°0).
R403.5.6.1.2 Shut down. A separate switch or a clearly marked circuit breaker shall be provided to permit the power supplied to
electric service systems to be turned off. A separate valve shall be provided to permit the energy supplied to the main burner(s) of
combustion types of service water -heating systems to be turned off.
R403.5.6.2 Water -heating equipment. Water -heating equipment installed in residential units shall meet the minimum efficiencies of
Table C404.2 in Chapter 4 of the Florida Building Code, Energy Conservation, Commercial Provisions, for the type of equipment installed.
Equipment used to provide heating functions as part of a combination system shall satisfy all stated requirements for the appropriate
water -heating category. Solar water heaters shall meet the criteria of Section R403.5.6.2.1.
R403.5.6.2.1 Solar water -heating systems. Solar systems for domestic hot water production are rated by the annual solar energy
factor of the system. The solar energy factor of a system shall be determined from the Florida Solar Energy Center Directory of
Certified Solar Systems. Solar collectors shall be tested in accordance with ISO Standard 9806, Test Methods for Solar Collectors,
and SRCC Standard TM-1, Solar Domestic Hot Water System and Component Test Protocol. Collectors in installed solar
water -heating systems should meet the following criteria:
1. Be installed with a tilt angle between 10 degrees and 40 degrees of the horizontal; and
2. Be installed at an orientation within 45 degrees of true south.
R403.6 Mechanical ventilation (Mandatory). The building shall be provided with ventilation that meets the requirements of the
Florida Building Code, Residential, or Florida Building Code, Mechanical, as applicable, or with other approved means of ventilation
including: Natural, Infiltration or Mechanical means. Outdoor air intakes and exhausts shall have automatic or gravity dampers that
close when the ventilation system is not operating.
R403.6.1 Whole -house mechanical ventilation system fan efficacy. When installed to function as a whole -house mechanical
ventilation system, fans shall meet the efficacy requirements of Table R403.6.1.
Exception: Where whole -house mechanical ventilation fans are integral to tested and listed HVAC equipment, they shall be
powered by an electronically commutated motor.
❑ R403.6.2 Ventilation air. Residential buildings designed to be operated at a positive indoor pressure or for mechanical ventilation
shall meet the following criteria:
1. The design air change per hour minimums for residential buildings in ASHRAE 62.2, Ventilation for Acceptable
Indoor Air Quality, shall be the maximum rates allowed for residential applications.
2. No ventilation or air-conditioning system make-up air shall be provided to conditioned space from attics,
crawlspaces, attached enclosed garages or outdoor spaces adjacent to swimming pools or spas.
3. If ventilation air is drawn from enclosed space(s), then the walls of the space(s) from which air is drawn shall be
insulated to a minimum of R-11 and the ceiling shall be insulated to minimum of R-19, space permitting, or R-10
otherwise.
R403.7 Heating and cooling equipment (Mandatory).
El
R403.7.1 Equipment sizing. Heating and cooling equipment shall be sized in accordance with ACCA Manual S based on the
equipment loads calculated in accordance with ACCA Manual J or other approved heating and cooling calculation methodologies,
based on building loads for the directional orientation of the building. The manufacturer and model number of the outdoor and
indoor units (if split system) shall be submitted along with the sensible and total cooling capacities at the design conditions
described in Section R302.1. This Code does not allow designer safety factors, provisions for future expansion or other factors that
affect equipment sizing. System sizing calculations shall not include loads created by local intermittent mechanical ventilation such
as standard kitchen and bathroom exhaust systems. New or replacement heating and cooling equipment shall have an efficiency
rating equal to or greater than the minimum required by federal law for the geographic location where the equipment is installed.
TABLE R403.6.1
WHOLE -HOUSE MECHANICAL VENTILATION SYSTEM FAN EFFICACY
FAN LOCATION
AIRFLOW RATE MINIMUM
(CFM)
MINIMUM EFFICACY a
(CFM/WATT)
AIRFLOW RATE MAXIMU
(CFM)
Range hoods
Any
2.8 cfm/watt
Any
In -line fan
Any
2.8 cfm/watt
Any
Bathroom, utility room
10
1.4 cfm/watt
<90
Bathroom, utility room
90
2.8 cfm/watt
Any
For SI: 1 cfm = 28.3 Umin. a. When tested in accordance with HVI Standard 916
3/1/2019 4:25 PM EnergyGauge® USA -. FBC 6th Edition (2017) Compliant Software Page 3 of 5
MANDATORY REQUIREMENTS - (Continued)
❑R403.7.1.1 Cooling equipment capacity. Cooling only equipment shall be selected so that its total capacity is not less
than the calculated total load but not more than 1.15 times greater than the total load calculated according to the procedure selected in
Section 403.7, or the closest available size provided by the manufacturer's product lines. The corresponding latent capacity of the
equipment shall not be less than the calculated latent load.
The published value for AHRI total capacity is a nominal, rating -test value and shall not be used for equipment sizing. Manufacturer's
expanded performance data shall be used to select cooling -only equipment. This selection shall be based on the outdoor design dry-bulb
temperature for the load calculation (or entering water temperature for water -source equipment), the blower CFM provided by the expanded
performance data, the design value for entering wet -bulb temperature and the design value for entering dry-bulb temperature.
Design values for entering wet -bulb and dry-bulb temperatures shall be for the indoor dry bulb and relative humidity used for the load
calculation and shall be adjusted for return side gains if the return duct(s) is Installed in an unconditioned space.
Exceptions:
1. Attached single- and multiple -family residential equipment sizing may be selected so that its cooling capacity is less than the
calculated total sensible load but not less than 80 percent of that load.
2.
When signed and sealed by a Florida -registered engineer, in attached single- and multiple -family units, the capacity of
equipment may be sized in accordance with good design practice.
R403.7.1.2 Heating equipment capacity.
❑ R403.7.1.2.1 Heat pumps. Heat pump sizing shall be based on the cooling requirements as calculated according to Section
R403.7.1.1, and the heat pump total cooling capacity shall not be more than 1.15 times greater than the design cooling load even if
the design heating load is 1.15 times greater than the design cooling load.
❑ R403.7.1.2.2 Electric resistance furnaces. Electric resistance furnaces shall be sized within 4 kW of the design
requirements calculated according to the procedure selected in Section R403.7.1.
❑ R403.7.1.2.3 Fossil fuel heating equipment. The capacity of fossil fuel heating equipment with natural draft atmospheric burners
shall not be less than the design load calculated in accordance with Section R403.7.1.
❑ R403.7.1.3 Extra capacity required for special occasions. Residences requiring excess cooling or heating equipment capacity on an
intermittent basis, such as anticipated additional loads caused by major entertainment events, shall have equipment sized or controlled to
prevent continuous space cooling or heating within that space by one or more of the following options:
1. A separate cooling or heating system is utilized to provide cooling or heating to the major entertainment areas.
2. A variable capacity system sized for optimum performance during base load periods is utilized.
R403.8 Systems serving multiple dwelling units (Mandatory). Systems serving multiple dwelling units shall comply with Sections
❑ C403 and C404 of the IECC—Commercial Provisions in lieu of Section R403.
❑ R403.9 Snow melt and Ice system controls (Mandatory) Snow- and ice -melting systems, supplied through energy service to the building,
shall include automatic controls capable of shutting off the system when the pavement temperature is above 50°F (10°0), and no
precipitation is falling and an automatic or manual control that will allow shutoff when the outdoor temperature is above 40°F (4.80C).
❑ R403.10 Pools and permanent spa energy consumption (Mandatory). The energy consumption of pools and permanent spas
shall be in accordance with Sections R403.10.1 through R403.10.5.
❑ R403.10.1 Heaters. The electric power to heaters shall be controlled by a readily accessible on -off switch that is an
Integral part of the heater mounted on the exterior of the heater, or external to and within 3 feet (914 mm) of the heater. Operation
of such switch shall not change the setting of the heater thermostat. Such switches shall be in addition to a circuit breaker for the
power to the heater. Gas -fired heaters shall not be equipped with continuously burning Ignition pilots.
❑ R403.10.2 Time switches. Time switches or other control methods that can automatically turn off and on according to a preset schedule
shall be installed for heaters and pump motors. Heaters and pump motors that have built-in time switches shall be in compliance with this
section.
Exceptions:
1. Where public health standards require 24-hour pump operation.
2. Pumps that operate solar- and waste -heat -recovery pool heating systems.
3. Where pumps are powered exclusively from on -site renewable generation.
R403.10.3 Covers. Outdoor heated swimming pools and outdoor permanent spas shall be equipped with a vapor -retardant cover on or at
❑ the water surface or a liquid cover or other means proven to reduce heat loss.
Exception: Where more than 70 percent of the energy for heating, computed over an operation season, is from site -recovered
energy, such as from a heat pump or solar energy source, covers or other vapor -retardant means shall not be required.
R403.10.4 Gas- and oil4lred pool and spa heaters. All gas- and oil -fired pool and spa heaters shall have a minimum thermal
❑ efficiency of 82 percent for heaters manufactured on or after April 16, 2013, when tested in accordance with ANSI Z 21.56. Pool
heaters fired by natural or LP gas shall not have continuously burning pilot lights.
3/1/2019 4:25 PM EnergyGauge® USA - FBC 6Ih Edition (2017) Compliant Software Page 4 of 5
R403.10.5 Heat pump pool heaters. Heat pump pool heaters shall have a minimum COP of 4.0 when tested in accordance
with AHRI 1160, Table 2, Standard Rating Conditions -Low Air Temperature. A test report from an independent laboratory is
required to verify procedure compliance. Geothermal swimming pool heat pumps are not required to meet this standard.
R403.11 Portable spas (MandatorSDhe energy consumption of electric -powered portable spas shall be controlled by the
requirements of APSP-14.
SECTION R404
ELECTRICAL POWER AND LIGHTING SYSTEMS
R404.1 Lighting equipment (Mandatary). Not less than 75 percent of the lamps in permanently Installed lighting fixtures shall be
high -efficacy lamps or not less than 75 percent of the permanently Installed lighting fixtures shall contain only high -efficacy lamps.
Exception: Low -voltage lighting.
R404.1.1 Lighting equipment (Mandatory). Fuel gas lighting systems shall not have continuously burning pilot lights.
3/1/2019 4:25 PM EnergyGauge® USA - FBC 6th Edition (2017) Compliant Software Page 5 of 5
2017 EPL DISPLAY CARD
ENERGY PERFORMANCE LEVEL (EPL) DISPLAY CARD
ESTIMATED ENERGY PERFORMANCE INDEX' = 99
The lower the Energy Performance Index, the more efficient the home.
1. New home or, addition
1. New (From Plans)
12. Ducts, location & insulation level
a) Supply ducts R
6.0
2. Single-family or multiple -family
2. Single-family
b) Return ducts FL_
6.0
c) AHU location Attic/Main
3. No. of units (if multiple -family)
3.
1
4. Number of bedrooms
4.
4
13. Cooling system: Capacity
22.2
a) Split system SEER
14.0
5. Is this a worst case? (yes/no)
5.
No
b) Single package SEER
c) Ground/water source SEER/COP
6. Conditioned floor area (sq. ft.)
6.
1603
d) Room uniUPTAC EER
e) Other
7. Windows, type and area
a) U-factor:(weighted average)
7a.
0.320
b) Solar Heat Gain Coefficient (SHGC)
7b.
0.220
14. Heating system: Capacity
22.2
c) Area
7c.
121.8
a) Split system heat pump HSPF
8.2
b) Single package heat pump HSPF
8. Skylights
c) Electric resistance COP
a) U-factor:(weighted average)
8a.
NA
d) Gas furnace, natural gas AFUE
b) Solar Heat Gain Coefficient (SHGC)
8b.
NA
e) Gas furnace, LPG AFUE
f) Other
9. Floor type, insulation level:
a) Slab -on -grade (R-value)
9a.
0.0
b) Wood, raised (R-value)
9b.
15. Water heating system
c) Concrete, raised (R-value)
9c.
a) Electric resistance EF
0.92
b) Gas fired, natural gas EF
10. Wall type and insulation:
c) Gas fired, LPG EF
A. Exterior:
d) Solar system with tank EF
1. Wood frame (Insulation R-value)
10A1.
13.0
e) Dedicated heat pump with tank EF
2. Masonry (Insulation R-value)
10A2.
f) Heat recovery unit HeatReC%
B. Adjacent:
g) Other
1. Wood frame (Insulation R-value)
tOB1.
13.0
2. Masonry (Insulation R-value)
IOB2.
16. HVAC credits claimed (Performance Method)
11. Ceiling type and insulation level
a) Ceiling fans
a) Under attic
11a.
30.0
b) Cross ventilation
No
b) Single assembly
11b.
c) Whole house fan
No
c) Knee walls/skylight walls
11c.
d) Multizone cooling credit
d) Radiant barrier installed
11d.
No
e) Multizone heating credit
I) Programmable thermostat
Yes
'Label required by Section R303.1.3 of the Florida Building Code, Energy Conservation, if not DEFAULT.
1 certify that this home has complied with the Florida Building Code, Energy Conservation, through the above energy
saving features which will be installed (or exceeded) in this home before final inspection. Otherwise, a new EPL
display card will be completed based m-,,installed code compliant features.
Builder
Address of New
Date:
City/FL Zip: . FL
3/1/2019 4:25:18 PM EnergyGauge® USA 6.0.02 - FlaRes2017 FBC 6th Edition (2017) Compliant Software Page 1 of 1
. 2017 - AIR BARRIER AND INSULATION INSPECTION COMPONENT CRITERIA
TABLE 402.4.1.1
AIR BARRIER AND INSULATION INSPECTION COMPONENT CRITERIA
Project Name: Lot 06 1612 B LHG - N Builder Name:
Street: Permit Office: Port St. Lucie
City, State, Zip: , FL, Permit Number:
v
Owner: WADE JOURNEY Jurisdiction: 661000
w
x
Design Location: FL, ST_LUCIE_CO_INTL
�
COMPONENT
AIR BARRIER CRITERIA
INSULATION INSTALLATION CRITERIA
General
A continuous air barrier shall be installed in the building envelope.
Air -permeable insulation shall
requirements
The exterior thermal envelope contains a continuous air barrier.
not be used as a sealing material.
Breaks or joints in the air barrier shall be sealed.
Ceiling/attic
The air barrier In any dropped ceiling/soffit shall be aligned with
The insulation in any dropped ceiling/soffit
the Insulation and any gaps in the air barrier shall be sealed.
shall be aligned with the air barrier.
Access openings, drop down stairs or knee wall doors to
unconditioned attic spaces shall be sealed.
Walls
The junction of the foundation and sill plate shall be sealed.
Cavities within corners and headers of frame walls
The junction of the top plate and the top of exterior walls shall be
shall be insulated by completely filling the cavity
sealed.
with a material having a thermal resistance of R-3
Knee walls shall be sealed.
per inch minimum.
Exterior thermal envelope insulation for framed
walls shall be installed in substantial contact and
continuous alignment with the air barrier.
Windows, skylights
The space between window/doorjambs and framing, and
and doors
skylights and framing shall be sealed.
Rim joists
Rim joists shall include the air barrier.
Rim joists shall be insulated.
Floors
The air barrier shall be Installed at any exposed edge of
Floor framing cavity insulation shall be Installed to
(including
insulation.
maintain permanent contact with the underside of
above -garage
subfloor decking, or floor framing cavity insulation
and cantilevered
shall be permitted to be in contact with the top side
floors)
of sheathing, or continuous insulation installed on
the underside of floor framing and extends from the
bottom to the top of all perimeter floor framing
members.
Crawl space walls
Exposed earth in unvented crawl spaces shall be covered with
Where provided instead of floor insulation, insulation
a Class I vapor retarder with overlapping joints taped.
shall be permanently attached to the crawlspace
Shafts, penetrations
Duct shafts, utility penetrations, and flue shafts opening to
exterior or unconditioned space shall be sealed.
Batts in narrow cavities shall be cut to fit, or narrow
Narrow cavities
cavities shall be filled by Insulation that on
installation readily conforms to the available cavity
spaces.
Garage separation
Air sealing shall be provided between the garage and conditioned Spec
3s.
Recessed lighting
Recessed light fixtures installed in the building thermal envelope
Recessed light fixtures installed in the building
shall be sealed to the drywall.
thermal envelope shall be air tight and IC rated.
Plumbing and wiring
Batt insulation shall be cut neatly to fit around wiring
and plumbing in exterior walls, or insulation that on
installation readily conforms to available space shall
extend behind n n no and widrin
Shower/tub
The air barrier Installed at exterior walls adjacent to showers and
Exterior walls adjacent to showers and tubs shall
on exterior wall
tubs shall separate them from the showers and tubs.
be insulated.
Electrical/phone box or
The air barrier shall be installed behind electrical or communication
exterior walls
boxes or air -sealed boxes shall be installed.
HVAC register boots
HVAC register boots that penetrate building thermal envelope shall
be sealed to the sub -floor or drywall.
Concealed
When required to be sealed, concealed fire sprinklers shall only be
sprinklers
sealed in a manner that is recommended by the manufacturer.
Caulking or other adhesive sealants shall not be used to fill voids
a. In addition, inspection of log walls shall be in accordance with the provisions of ICC-400.
3/1/2019 4:25 PM EnergyGauge® USA FBC 6th Edition (2017) Compliant Software Page 1 of 1
wrightsoft® Project Summary
House
One Stop Cooling and Heating
7226 Samiscove UA Wirier Park FL 32792 Plum:(407) 629-6920 F=(407)629-9307 Web:v OmStopCoolirg=mLimrs :CAC032444
Proiect Information
For: WADEJOURNEY
FL
Notes:
Job: 1612
Date: 1130119
By. DS
Design•
•
Weather: St Lucie Co Intl, FL, US
Winter Design Conditions
Summer Design Conditions
Outsidedb 41
OF
Outsidedb
90
OF
Insidedb 68
OF
Insidedb
72
OF
Design TD 27
OF
Design TD
18
OF
Dalyrange
L
Relative humidity
50
%
Moisture difference
63
grAb
Heating Summary
Sensible Cooling Equipment Load Sizing
Structure 13271
Btuh
Structure
12382
Btuh
Ducts 1474
Btuh
Ducts
2869
Btuh
Central vent (0 cfm) 0
Btuh
Central vent (0 cfm)
0
Btuh
(none)
(none)
Humidification 0
Btuh
Blower
0
Btuh
Piping 0
Btuh
Equipment load 14745
Btuh
Use manufacturer's data
n
Rate/swingg multipplier
0.95
Infiltration
Equipmenisensibleload
14550
Btuh
Method Simplified
Latent Cooling Equipment Load Sizing
Construction quality
Average
Fireplaces
0
Structure
2905
Btuh
Ducts
680
Btuh
Central vent (0 elm)
0
Btuh
Heatingg
Cooltn
(none)
Area (ft2) 1662
166l
Equipment latent load
3585
Btuh
Volume (ft3) 13292
13292
Airchanges/hour 0.38
020
Equipment Total Load (Sen+Lat)
18135
Btuh
Equiv. AVF (cfm) 84
44
Req. total capacity at 0.75 SHR
1.6
ton
Heating Equipment Summary
Cooling Equipment Summary
Make Cartier
Make Carrier
Trade CARRIER
Trade CARRIER
Model CH14NBO2400GOA0
Cord CH14NBO2400GOA0
AHRI ref 9162148
Coil FB4CNP030L
AHRI ref 9162148
Efficiency 8.2
HSPF
Efficilcyco11.5 EER,14
SEER
Heatinginput
Sensibleoling
16650
Btuh
Heating output 22200
Btuh47°F
Co
Latent cooling
5550
Btuh
Temperature rise 0
OF
Total cooling
22200
Btuh
Aclualair flow 0
cfm
Actual air flow
740
cfm
Airflowfactor 0
cfm/Btuh
Airflowfactor
0.049
dnVBluh
Static pressure 0
in H2O
Staticpressure
0.50
in H2O
Space thermostat
Load sensible heat ratio
0.81
Capacity balance point=31 OF
Backup:
Input=13 kW, Output=43537 Btuh,100 AFUE
Bofdfta0c vahss have ve been manua0y overtltlden
Calculations approved byACCAto meet all requirements of Manual J 8th Ed
wrigM1tsoft` 2019-10ar-01 16:1826
•'�- ^^^ Rigtt-SJte9Uriverw1201818.0.32RSU16877 Pagel
rM .-aesldap\TEMPPRINT\Lot061612BLHG-Nnp Cale=MB FrortDoorlams:N
wrightsoft Right-J® WOrksheet Job: 1612
Date: 1/30/19
House By: Ds
One Stop Cooling and Heating
7225Sard=m Caut,Wirter Park FL32792Ptore:(407)629-6920 F=(407)629-9307 Web:w OmStopCoolirgcom Uceree:CAC032444
1
2
3
4
5
Room name
Egosedywall
Room height
R0omolmensons
Room area
House
1465
8.0 it d
16615 IF
KIT
95 ft
8A it heaf/c0ol
1.0 x 155.6 it
155.6 ftr
Ty
Construdon
number
U-value
(Bhrh4F-°F)
G
HTM
(BWhA�
Area
or perimeter (it)
Load
(Btuh)
oreaperimeter (it)
(BNh)
Heat
Coot
Gross
N/PS
Heat
Cool
Goss
MRS
Heat
Coot
6
11
W
L _^-
12(]4
_4A5-2ov-
12C-Osv
4A5-20v
11DO
12C-0sw _
4A5-2ov
12C-Ow
4A5.2ov
4A5-20v _
12C-6 v
11D0 _
16B-30ad
22A-p1m_____
0.091
ne
_ne-
sou
se
se
sv
_sw-
nw
nw
nw
_n_
-
246
—8.64
2.46
8.64
_1_053
246
_884
2.46
8.64
8.64
—2i16
—1053
086
_31.86
-` 2A6
_17.96
2.48
17.13
_ 12.60
9A
__17.13
2A8
17.96
17.96
158
_ 12.60
1.79
=0.00
424
—_.28
148
28
20
—292
_29
308
6
__ 30
292
�1919
1662
�1662
396
0
972
_ _245
244
245
215
6 6
_252
668
52
__ 259
670
__203
1436
=4667
983
0
�0
0
0
0
__0
0
0
_ 0
`0
_O
174
108
0
0
--0
278
= 0
—0.320
0.091
0220
0.390
_ 0.091
_0220
0.091
0320
_ 0320
0.091
99
4
20
_8 263
--A
272
0
_ 0
273
.._.
1662
_—_147
___509
247
485
__257
653
__500
676
108
539
-- 432
_243
2.967
0
0
0
�0
0
0
0
—0
0
0
0
0
_O
76
6
0
—7.0
0
__..0
70
0
_0
—0
0---0
0
__O
172
52
0
ly
II---GG
—
-It---D
—0
C
F—
—0390
_0.032
�__1.180
—0
__156
__756
_
156
134
=303
0
__—__10
61
c) AED e=rsim
39
-61
Enselopeloss/9ain
110774
8636
661
499
12
a) Infiltraton
b) RoomvarNlaton
2498
0
B96
0
162
0
58
0
13
1llemagafns: Oooiwb(9) 230
Appliancesother
5
1
1150
17001
0
0
1200
Sbbtal (lirres6b M)
13271
12382
823
1757
14
15
Lessextemalload
Lesstransfer
Redstributm
Stbbtal
Dudloads
11%
23%
0
0
0
13271
1474
0
0
0
12382
28W
11%
23%
0
0
0
823
91
0
0
0
1757
407
Tots room load
Air required (dm)
14745
0
15251
740
914
0
2164
105
Calculafions approved byACCAto meet all requirements of Manual J Sth Ed.
-ri- wrrgF�yso•-Te� 2019-Mar-0116:1836
A Riglt-StiLBUdversal201818.032 RSU16877 Page 1
...arWesi OP%TEMPPRIM1LotO61612BLHG-NAp Calc=MI8 FrortDoorfaoes: N
+ wrightsofr Right-JO Worksheet
House
One Stop Cooling and Heating
7226 Sard=w Cain, Wirier Park FL 32792 P1oro:(407)629-6920 F=(407)629-9307 Web:w OmStopCoolirgmmL!me :CA0032444
:lob: 1612
Date: 1/30/19
By: DS
1
2
3
4
5
Room rlame
6yoseduwll
Room height
Room dmensons
Room area
FOY
45 ft
8D ft hedbool
1.0 x 91,5 ft
915 fF
LIRA
0 ft
8D ft heatrmd
6.0 x 115 ft
69.0 1f
Ty
Conshdon
number
U-value
(f3WhRF-°Fj
Cr
HTM
Area (fF)
or perimeter (ft)
Load
(BWh)
Area
or perimeter (it)
(BNh)
Heat
Cool
Gros I
WP/S
Heat
Cool
Gros
WPiS
Heat
Cool
6
11
yyII
LC
-XC
4A5.2av
123-Ow
4A5-20v
11DO
12C-0ew
4A5-2av
12C-Ow
4A5-2ov
_4A5-2ov
12C-0sv
11DO
0.091
ne
_ne_
se
W
se
2A 6
_8b4
246
8.64
1053
2.46
_8.64
246
8.64
_8.64
2.46
_1053
2.48
`17.96
2A8
17.13
12.60
2A3
0
__,.0
36
0
20
0
0
0
0
0
0
0
0
—0
_0.320
0.091
0320
0390
_0
16
0
20
_0
38
0
215
_.0
39
0
257
0
0
0
0
0
0
—0
0
0
0
_0
0
0
0
44yy
�--C
0.091757
—02M
0.091
0.320
0220
i0.001
�0390
_w-
nw
nw
nw
-,
_n_
0
- 0
0
_
0'
—0
0
0
0
�0
—0
0
0
Y�
I--G
III------GGG'
_17.13
2.48
17.96
17.96
1 58
1260
______0
0
0
0
120
_0
0
0
0
120
e0
__0
0
0
0
295
_0
__0
0
0
0
'190
_O
0
0
0
-'i0
w 0
0
0
0
0
0
0
_0
0
0
0
pp
�D
0
_0
0
_,0
0
0
C
F
16B-30ad
0.032
=.180
-
=
086
_31.86
1.79
92
—92
92
79
�143
163
69
--7---69
69
60
123
0
3211-fpm
5
0
=-0
=0
_OAO
6
c)AED e=irslm
-42
•S
Envelope loss/gain
770
607
60
116
12
a) Infiltration
b) Room %critlation
77
0
28
0
0
0
0
0
13
Mmal gains: OmWnts@ 230
Applianwsbther
0
0
0
0
0
0
Stilabal(lines6b13)
847
635
60
116
14
15
Lesextamal load
Lestransfer
Redshibutm
Subtotal
Dudloads
11 %
23%
0
0
-S47
0
0
0
0
-635
0
0
11 %
23%
0
0
90
150
17
0
0
131
247
57
Total room load
Air required(dm)
0
0
0
0
166
0
304
15
Calculations approved bYACCAto meet all requirements of Manual J 8th Ed.
-rw 2019-Mar-0116:1836
RlgltSdte®Udversa1201818.032 RSU16877 Page 2
...artDesMop\TEWPRINT\Lot061612BLHG-Mn43 Cale -MI6 Fror[Doorfaces:N
• i f- wrightsofr Right-M Worksheet Job: 1612
• Data: 1130119
House
ey: Ds
One Stop Cooling and Heating
7225 Sard%eo Cout Wider Park FL32792 Ptore:(407)629- 6920 Fac(407) 629-9307 Web:w OreStopCoolirgmmUmm:CAC032444
1
2
3
4
5
Room name
yell
Romme
Rocmdmensans
Room area
NBED
113ft
8A tbo ft heaol
14A x 11.5 ft
161.0 8°
LAUN
Oft
8.0 ft heaVmol
7A x 4.0 ft
28.0 fP
Ty
Cons"on
number
U-value
(BWhRN-°Fj
Or
HTM
(BWt"
Area (fF)
ft
or perimeter ()
Load
(BWh)
Area
or perimeter (fl)
(BWh)
Heat
Cool
Gross
NtP5
Heat
Cool
Cross
MAPS
Heat
Cool
6
iI
VVyy
L--G
12C-0sw
4A5-2ov _
12G-Ow
4A5-20v
11DO
12G:C --
4AS-2ov
12C-Ow
4AS-20V
4A5-2ov
12Cbsw
_, _
16B-30ad
22A-p�m_-
—246
- 8.64
&61
1053
216
____8.64
2.46
8.64
8.64
_ —248
_1053
OB6
_31B6
2.48
_1726
248
17.13
_ 12.60
248
_17.13
2.48
17.96
17.96
158
12.60
1.79
— 0.00
�0
__-0
0
0
0
�— 62
„_.__15
0
0
_0
0
-----0
161
---.161
0
__0
0
0
0
—77
_ _2
0
0
0
6
_ _--._0
0
0
0
- -- 0
______0
0
0
_ 0
`^0
----0
50
=_0
---0.691
_0.320
0.091
0.320
0390
---0.091
—0320
0.091
0320
_ _0.320
— _ 0.091
r
-ne-
se2.46
se
se
9w
_ew-
nw
nw
nw
='
_n_
-_
=_
0,
—0
0
0
0
190
_.__126
0
0
0
0
—_0
0
0
_ 0
192
—_-_ 250
0
0
__ 0
_ —.__0
_ 287
----0
0---0
—__0
0
0
0
--0
__ _0
0
0
0
_-0
0
0
0
— 0
--0
,_0
0
0
0
4y
I�DC
yyyy
1 =r
0
---0
0
0
0
4y
L�CG
,0
0
0
0
—0
28
p
—D..11DO
_
0
_ _0
161
— 12
_
—0---0
—0--0-0
___0
28
=28
__0
24
_0
C
F=-
_0390
_ 0.032
_ _7.180
—0
139
=366
_0
6
c)AED exalrsim
30
-34
Er lopelossrgain
822
760
24
16
12
a) Infiftfion
b) Room%edlafion
196
0
70
0
0
0
0
0
13
h!emal gains Ompan5@ 230
Applianoesbther
2
460
0
0
0
500
StdNotal(lines6b13)
1018
1290
24
516
14
15
LesseMemal load
Le transfer
RedisInbuuon
Subtotal
Dudloads
11%
23%
0
0
18
1036
115
0
0
26
1316
305
11%
231/.
0
0
-24
0
0
0
0
-516
0
0
Total room load
Airrequired(dm)
1151
0
1621
79
0
0
0
0
Calculations approved byACCAto meet all requirements of Manual J 8th Ed.
y}a- wrLww -^R- 2019-Mar-0116:1826
A& Rig1t-Shce®Unwml201818.032 R8U16877 Page 3
..ar,Deslcep\TEMPPRIN0LotO61612BLHG.Nnp Cale=" FrortDoor Faces:N
1 wrightsoft Right-J® Worksheet Job: 1612
House Date: 1/30/19
ay: DS
One Stop Cooling and Heating
7225 Sardscove Coin, Wider Park, FL32792 Now: (407) 629 - 6920 F=(407)629-9307 Web:w OwSmpOootirt7mmLiww:CA0032444
1
2
3
4
5
Roomname •
5posedvall
Roomheight
Roomdmensions
Roomarea
PAN
45 It
8D ft heaVmol
18 x 19A It
19.4 fF
BA2
6.0 It
8.0 ft heattool
10.0 x 6.0 a
60D fF
Ty
Construction
number
U-value
(BIUWT)
Or
HTM
(Bbh4F)
Area '
or perimeter (f)
Load
(Bbh)
Area (fF)
or perimeter (ft)
Load
(Bbh)
Heat
Cool
Gross
N/RS
Heat
Cool
Gross
N/PS
Heat
Cool
6
11
WW
LG
1sv 2C-O
AA5-21v'
ne
2:46
_854
2.46
1053
2.46
_884
2.46
8.64
8.64
2A6
_1053
2.48
17.96
---0
0
0
_0
- 0
0
0
48
—0
48
0
1 18
0
—119
—0
0
0
0
6- 91
Vy
�C
ADD
12C-OW
4A5.2ov
11DO
4A5-2ov
12"M
4A5-2ov
4A5-2ov
12C-06
11D0
_0.320
0.091
0.3M
0.390
0.091
_`0.320
0.091
0220
0220
—6091
_0290
_ne-
se
so8.64
se
av
_sx-
"
m
M
_n._
2A8
17.13
12.60
`--2.48
_17.13
2.48
17.96
17.96
—158
12.60
0
0
0
0
0
0
—0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
t12"w
G
W
G
�6
0
0-
0
—0
0
0
0
—0
0
_0
0
0
0
_-0
0
0
_0
36
0
0
—0
36
0
0
88
0
0
89
0
0
0
0
0
0
0
0
0
0
0
pp
�D
0
—0
0
0
0
—0
0
0
—0-0
—0
—0
0
0
__0
0
_0
C
IF
0.032
_1.1(10
-
;
086
=31.08
1.79
=0.00
19
19
17
7
35
60
60
52
_ 191
107
�0
_16B-30ad
22A-¢gym
=5
_�143 =0
=760
6
_79
6
c)AED e=rsim
-9
-16
Em,elops loss/gain
249
115
361
210
12
a) Infillrafion
b) RoomvarNlafion
77
0
28
0
102
0
37
0
13
Imemal gains: Ocapanls@ 230
Appliancesb8:er
0
0
0
0
0
1 0
Subbtal (linesft 13)
325
142
463
247
14
15
Lese#emal load
Lesiransfer
Redshibudon
SWbfal
Dudicads
11%
23%
0
0
0
325
36
0
0
0
142
33
11%
23%
0
0
221
684
76
0
0
166
412
96
Total room load
Airrequired(dm)
361
0
176
8
760
0
508
25
Calculations approved byACCAto meet all requirements of Manual J 8th Ed.
#F 2019-Mar-0116:1896
A Wgtt-SdteDUriwml201818.0.32 RSU16877 Page 4
.-adDesWop\TEMPPRINT1Lot061612BLHG-Nnp Cale=KW Frort DoorfacowN
fb wrightsoft° Right-J® Worksheet Job: 1612
Date: 1/30119
House By: Ds
One Stop Cooling and Heating
7225 Sard=w Coat, Wirier Park FL32792 P1ore:(407)629-6920 Pm (407) 629 - 9307 Web:w 0mStopCoolirg.00m Umme: CAC032444
1
2
3
4
5
Roomrwe
6powdaall
Room height
Roomdmensom
Room area
BED2
27.0 ft
8A ft heaftol
14.0 x 11.0 ft
154.0 fR
BED
105 ft
8.0 ft heaftol
14D x 105 ft
147.0 IF
Ty
Construdon
number
U-value
(BUMPF7
Or
HTM
(Bbih4M
Area (fF)
or perimeter (ft)
Load
(BUh)
Area (W)
or perimeter (ft)
Loaf
(BNh)
Heat
Cod
Cross
N/RS
Heat
Cool
Gross
N/ S
Heat
Cool
6
11
yy/I
0
12C-05v
4A5-2ov- ---
12C-O
av 11DO _
4A5-2ov
12C-0) --
4A5-2ov— _
12C-09v
4A5-2av
4A5-2ov
12C-0sv---
11DO— —
16B-30ad_ _
22A-tpM
0.001
-ne
Za
—BB4
2A6
8.64
1053
2.46
i 8S4
246
8.64
_8.64
248
.1053
OB6
=3188
2A8
_17.96
2.48
17.13
12.60
2.48
17.130
1
248
1796
1T96
_-138
_12.60
1.79
�0.00
—88
---0
112
28
0
16
0
0
0
--0
_— 0
154
=154
88
__0
84
4
0
M
_-_-!-14
0
0
0
0
--0
0
0
_0
0
—70
—_0
0
0
0
172
,_.122
0
0
0
173
__..254
0
0
0
---0
__0.
0
0
_0
^ 0
_0
262
_0
W216
0
206
245
0
i39
P 279
- —0
208
485
__ 0
40
0
_�—
_0320
0.091
0320
0.390
—0.091
0320
_m.
so
se
w
sx
_sw,
m
m
m
_n-
-
=
y/
16
0
0
0
`0
0
0
0
ti
0.091
0320
0.320
--0.091
_.0390
__0.032
_1.180
0
0
0
---0
`0
0
0
0_
--0
0
133
--`860
0
0
0
!0
0
—0
0
0
0
-Fi
�_—DD
0
0
0
C __
F.__ _
.-0
154
-� 27
275
__0
147
=�147
—0
147
_ 127
_335
- ,0
_ 11
6
a)AED exmrsion
130
-03
FJnelope lostgain
1699
1356
756
657
12
a) Inlltrafion
b) ROomverrfilabm
460
0
165
0
179
0
64
0
13
htemal gains Orxepari6@ 230
Appliarxesbther
1
230
0
1
230
0
SrbttoW(lines6to13)
2160
1751
935
952
14
15
Lesextemal load
Lestransfer
Redistribution
SrbtDW
Dudloals
11%
230/.
0
0
479
263E
293
0
0
359
2110
489
11%
23%
0
0
210
1145
127
0
0
202
1154
267
Total room load
Airrequired (rim)
2931
0
2599
126
1272
0
1421
69
Calculations approved byACCAto meet all requirements of Manual J 8th Fri.
-ri- wrlgbtsoR' 2019-Mar-01 16:1836
Ask Nglt-Suteftriverwl 2018 18-032 SSUI6877 Page 5
..arWesldlp\TEMPPRINT%LotO61612BLHG-Nmp Calc=MI6 Frori Doorfaws:N
wrightsoft• Right-JO Worksheet
House
One Stop Cooling and Heating
7225 Sardsmve CoAWirter Park R. 32792 P1om:(407) 629-6920 F=(407)629-9307 Web:w OmStopCoolirg.mmLimm:CA0032444
Job: 1612
Date: 1130119
By: DS
1
2
3
4
5
Roomname
Fposedvell
Room heigM
Room dmensons
Roomarea
mmc
185 ft
8.0 a hedbDOI
6.0 x 125 ft
75.0 1F
BED
105 ft
8.0 ft heaVmol
1.0 x 1385 ft
13851E
Ty
Congrudon
number
U-value
(BWhAF-F)
Cr
HTM
(Bwh"
Area
or perimeter (ft)
Load
(Buh)
oorperimeler (t)
(BWh)
Heat I
Cool
G.
NAPS
Heat
Cool
Cross
WPS
Heat
Cool
6
11
yVy/
�—C
12C-0sv
4A5i2ov.--
12C-0sv
4P5-2Dv
11DO
12C-0sv
4A5:2ov
12C-ow
4A52ov
4AS-2ov
120-13
11D0
16B-30ad
22A-ym
—0.091
77F
2A6
— 2.48
—17.96--0
2A8
17.13
12.60
248
_.17.13
2.48
17.96
17.96
158
12.60
0'
0
0
0
100
0
0
—0
0
0
0_
100
0
0
0
0
_"-0
0
—0
0
0
0
172
250
0
0
0
T203
—A
247
v6
I--G
LL--DD
_0320
0.091
0.320
0290
—y0.091
_0320
0.091
0220
_0320
0.091
,0390
0.032
_7.180
_ne-
se
se
se
sw
_sv-
nw
mx
nw
_8.64
2.46
8.64
1053
2A6
-_8.64
246
8.64
_8.64
2.48
—0-0-0-0-0
0
0
0
246
�0
0
0
0
248
0
0
0
0
— 84
52
0
0
0
128
,v0
139
=139
0
0
0
—69
0
0
0
171
26
0
0
0
314
llyy
—,C
4y
II--GG
48
0
0
,0
48
0
0
118
0
0
119
0
0
0
0
0
—12B
qq
`D
0
—0
0
0
0
C
.F�
_R_
=
_1053
0.86
_31.86
1.79
=0.00
`0
75
`75
—0
75
—0
65
_589
134
,0
139
,11
,0
120
=335
79
=0
_6
6
o)AED e=rson
38
36
Emelope lostgain
1018
464
1065
906
12
a) InfilMon
b) Roomvenbladon
315
0
113
0
179
0
64
0
13
hfterrld gains 0021panS@ 230
Appliancesiether
0
0
0
1
230
0
Subtotal(lines6to13)
1333
577
1244
1202
14
1151
Lesex!emal load
Lestrmsfer
RedshibLAm
Subtotal
Dudloads
11%
23%
0
0
0
1333
148
0
0
0
577
134
11%
23%
0
0
146
1390
154
0
0
632
1834
425
Total room load
Airn�uired(dm)
1481
0
"0
34
1545
0
22.59
110
Calallatons approved byACCAto meet all requirements of Manual J 8th Ed.
.rk- wrlgFalsoi!- 2019-Mar-0116:1836
Ask Fiigtt-Sute®Udveml201818.0.32 RSU16877 Page 6
...arWeslaop\TEMP PRIN111.ot061612 B LHG-Nnp Cale=M79 From Ooerfaces:N
i t wrightsofC Right-J® Worksheet Job: 1612
House Date: 1/30119
By. Ds
One Stop Cooling and Heating
7225 Sardsm>e Court, Winter Park FL 32792 Pture:(407)629- 6920 Fax(407)629-9307'Web:w OmStopCoolirgmmUmrse:CACA32444
1
2
3
4
5
Room name
wall
Room height
Roomdimensions
Roomarea
AM
0 ft
8.0 ft heal/mol
4A x 3.0 ft
12.0 IIF
RID(
105 ft
8.0 ft heaf/md
14.0 x 105 It
147.0 fP
Ty
Construmon
number
U-value
(BWh4ti'F)
Or
HTM
(BbInIn
Area (IF)
or pedmeer (ft)
Load
(BWh)
Area (
or perimeter (f)
Load
(BWh)
Heat
Cool
Grass
N/P/9
Heat
Cool
Gros
N/PS
Heat
Cool
6
11
4Wy
�--=^-
12C0sv --
4AS2ov _--
12C-Ow
4A5-2ov
11DO _ __
12C-0sv V
4A5-2w_
12G-Ow
4A5-2w
4A5-2ov
12C41ai - —
11D0--__
1613-30ad
22A;tpM --
— 0.091
--_0320
0.091
0320
_0390
'— 0.091
_0320
0.091
0.320
0.320
--0.091
_ _0.390
0.032
_ 1.1&1=
ne
_ne-
re
se
re
sw
6 -
mx
nw
nw
--
- n_
_ -
2A6
__8.64
2.46
854
1053
--2.46
-_8.64
246
8.64
884
—2A6
�1053
_ 026
_31.86
2-48
_17.96
2.48
17.13
12.60
2.48
_17.13
248
17.96
17.96
- 158
--_12.60
1.79
,_0.00
0
_._0
0
0
0
0
___0
0
0
0
0
---0
-- 84
70
172
_ 122
0
0
0
173
_254
0
0
0
_0
0
0
0
_0
0
0
0
.A:-_14
0
0
0
0
_O
0
0
0
yyy�I
C
0
—0-0-0
—_0
0
0
0
-`"-32
0
0
0
0-0
0
0
0
__0
0
0
0
0
_
W,
I�-----GG
—0
0
0
0
32
---0
12
0
0
0
— -`79
__0
10
—_0
0
0
0
—51
0
0
0
—0
0
0
__ 0
0
__ _ 0
147
=1
0
0
_ 0
—0
..__,.A
262
_-0---0
R
�D
0
_.__0
147
=47
—0
0
C
F_
12
_ _ _O
_0
21
_ _0
—.o
127
_=335
_. _72
0
6
a) AEC excursion
-4
-19
Envelope low/gain
89
68
756
672
12
a) Infiltr9an
b) Roommmflation
0
0
0
0
179
0
64
0
13
htemal gains Coopants@ 230
Appliarxe b#w
0
0
0
0
0
0
Subotal (lhn to 13)
89
68
935
736
14
15
Lese)demal load
Lestransfer
Redstritxtion
Subtotal
Dudloads
11%
23%
0
0
-89
0
0
0
0
{,g
0
0
11%
23%
0
0
63
998
111
0
0
92
827
192
Total room load
Alrrequlred(dm)
0
0
0
0
1108
0
1019
49
Calculafions approved byACCAto meet all requirements of Manual J 8th Ed.
-fi- 2019-Mar-01 16:1826
A&K Riga-SUto9UdversW 201818.032 RSU16877 Page 7
...adDesMop\TEWPRINI\Lo1061612BLHG-Nnp Cala=MI6 FrortOoorfams:N
wrightsotr Right-M Worksheet
House
One Stop Cooling and Heating
722SSard=m OouLWimrPark FL32792PtoM:(407)629-6920 Fax(407)629-9307 Web:v OmStopCaoliig.00m Lfeeree:CAC032444
Job: 1612
Date: 1/30119
By: DS
1
2
3
4
5
Roomneme
6posedxall
Room height
Roomdmensions _
Roomarea
GREAT
335 ft
8D ft heatlmol
185 x 15.0 ft
2775 fP
0 ft
8A ft heaVbod
1A x 126.0 ft
126.0 fF
Ty
Consbudon
number
U-value
(BbihAl-*q
Cr
HTM
Area (fF)
or perimeter (ft)
Load
(BWh)
Area (fF)
or perimeter (ft)
Load
(BAIh)
Heat
Caol
Gross
WP/S
Heat
Cool
Gross
N/P/S
Heat
Cool
6
11
Vy
O091
ne
_ne-
se
se
se
SU
_av_
m246
m
m
—
_n_
'-2.46
=8.64
2A6
8.64
1053
—946
_844
8.64
8.64
—2i16
_.1053
2.48
_17.96
2.48
17.13
12.60
—8
24
_17.13
248
17.96
17.96
— 1S8
—1260
—120
0
0
0
0
120
12C-0Av
-4A5-2ov
12C-09N
4AS2ov
11Do
12(305W
_4A5:2ov
12C-Ow
4A5-20v
4A5-2ov
12C41ed
.11130_
295
298
0
0
0
0
0
—0
;0
V�'
I—G
II----DD
—0320
0.091
0320
0390
—0091
—0320
0.091
0320
0320
0.091
—0390
_0
0
0
0
_0
0
0
0
_0
0
0
0
—0.
0
0
0
0
0
0
0
0
0
0
0
0
VVyy
:G
W,
0
0
0
0
0
0
0
0
0
—0
—0
—0
—0
148
0
30
118
0
0
_____ 290
0
259
293
0
539
0
0
0
—19
—0
0
0
0
r0
0
0
0
_0
0
0
0
qq
�D
—0
�0
0
0
0
—0
0'-12
0
7
9203
-18
—12
—243
c
'F
1613.30ad
2wfm
0.032
�_7.180
-
=
OE6
=3198
1.79
=0.00
278
_-_278
278
_34
240
_ 1067
496
126
26
- 126
109
225
=0
0
==O
_0
T
6
c)AED e=rsim
137
-28
Swelope loss/gain
2151
1762
294
428
12
a) Infiltradon
b) RoomverNlafm
I
571
1 0
205
01
0
0
0
0
13
Ntemal gains Oovpan5@ 230
Appliancesbther
0
0
0
0
1
0
0
SIffiotal(Ilnes6to 13)
2722
1967
294
428
14
1151
Lessekemalload
Lm mnsfer
Redistribution
subtotal
Ductloads
11 %
239/.
0
0
27
2749
305
0
0
39
2006
465
11 %
23%
0
0
-294
0
0
0
0
-428
0
0
Total room load
Air regtdred(dm)
3055
0
2471
120
0
0
0
0
Cdculabons approved byACCAto meet all requirements of Manual J 0 Ed.
wrlq"l .ft- 2019-Mar-01 16:1836
Rigtt-Sdta®Uriversal 201818.032 RSU16877 Page 8
..MMOshop\iEMPPRINN-ot061612BLHG.NAp Calc=MI8 FmrtDoorfams:N
Duct S stem Summa Job: 1612
i�- wrightsoft® y � Data: 1130/19
House By: Ds
One Stop Cooling and Heating
7225 Sard=o Cout, Witter Park RL32792 Ptore:(407)629- 6920 Fax:(407)629-9307 Web:w OMSWpCoolirgmmLlmr :CAC032444
External state pressure
Pressure losses
Available static pressure
Supply / return available pressure
Lowest friction rate
Actual air Bow
Total eBedve length (TEL)
Project Information
WADEJOURNEY
FL
Heating
0
in H2O
0.16
in H2O
-0.2
in H2O
-0.080/-0.080
in H2O
-0.12
in/100ft
0
cfnl
136 It
Cooling
0.50
in H2O
0.16
in H2O
0.34
in H2O
0.170/0.170
in H2O
0.250
in/100ft
740
ckn
Name
Design
(Btuh)
Htg
(cfm)
Clg
(cfm)
Design
FR
Diam
(in)
H x W
(in)
Duct
Mail
Actual
Ln (ft)
Ftg.Egv
Ln (it)
Trunk
BA2
c 508
0
25
0.287
4.0
Ox0
VIFx
18.3
100.0
sit
BED2
c 2599
0
126
0.287
6.0
Ox0
MFx
23.6
95.0
st1
BED3
c 1421
0
69
0.283
6.0
Ox0
MFx
20.1
100.0
st1
BED4
c 2259
0
110
0.283
6.0
Ox0
MFx
19.9
100.0
st1
FLEX
c 1019
0
49
0.279
5.0
a(O
MFx
21.9
100.0
st2
GREAT
c 1236
0
60
0.295
5.0
Ox 0
MFx
20.4
95.0
st2
GREAT -A
c 1236
0
60
0.273
5.0
Ox0
MFx
29.5
95.0
st2
Krr
c 2164
0
105
0.277
6.0
OxO
VIFx
28.0
95.0
st2
MBA
c 304
0
15
0.279
4.0
Ox0
MFx
22.1
100.0
st2
MBED
c 1621
0
79
0.289
6.0
Oc0
VIFx
22.7
95.0
s2
MWIC
c 710
0
34
0.254
4.0
Ox0
MFx
34.0
100.0
st2
PAN
c 175
0
8
0.250
4.0
Ox0
VIFx
362
100.0
s2
Trunk
Htg
Clg
Design
Veloc
Diam
H x W
Duct
Name
Type
Mal)
(cfm)
FR
(fpm)
(in)
(in)
Material
Trunk
sit
PeakAVF
0
329
0.283
604
10.0
0 x 0
VnlFlx
st2
PeakAVF
0
411
0.250
523
12.0
0 x 0
VinlFlx
h,c-.1 6? r
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2019-Mar-01 16:1827
Page 1
Return Branch Detail Table
Name
Grille
Size (in)
Htg
(cfm)
Clg
(cfm)
TEL
(ft)
Design
FR
Veloc
(fpm)
Diam
(in)
H x W
(in)
StucVJoist
Opening (in)
Dud
Mat
Trunk
rb1
Ox0
0
740
0
1 0
0
0
Ox 0
1
MR
4F Wrightsof , 2019-Mar-0116:1827
AW RgIFSUte®Uriw=1201818.0.32PSU16877Paget
...ardDeSMOP\TEMPPRIN11Lot061612BLHG-Nnp Cak-KM FrodWorfam:N
Static Pressure and Friction Rate Job: 1612
-! wrightsoft Data: 1/30119
House By: DS
One Stop Cooling and Heating
7225 Sardsceve CauLWirter Park FL 32792 Phore:(407)629- 6920 Fac(407)629-9307 Web:w OreSmpOoolirgmmLime :CA0032444
Project Information
• -
FIL
Available Static Pressure
Heating
Cooling
(in H2O)
(in H2O)
External static pressure
0
0.50
Pressure losses
coil
0
0
Heat exchanger
0
0
Supply diffusers
0.03
0.03
Return grilles
0.03
0.03
Filter
0.10
0.10
Humidifier
0
0
Balancing damper
0
0
Other device
0
0
Available static pressure
-0.2
0.34
Total
Supply
Return
(ft)
(ft)
Measured length of run -out
22
0
Measured length of trunk
15
0
Equivalent length of fittings
100
0
Total length
136
0
Total effective length
136
Friction
Heating
Cooling
(in/100ft)
(in/100ft)
Supply Duds
-0.118 <0.06
0.250 > 0.18
Return Duds
-0.118 <0.06
0.250 > 0.18
Fitting Equivalent LengthDetails
Supply 4X--35,11A=20,11G=5, i1G=5,1A--35:TotalEL=100
Return TotalEl=
Wrightsoft- 2019-Mar-01 16:18a7
A—:_- . ' .�._,....-, RigrtSUte®Uriwrsa1201818.0.32RSU16877 Page 1
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24Y4 // 14�,m Nt' =Uneset Chase --
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Job#:1612
One Stop Cooling and Heating
Scale:1 .80
Performed by DS for:
Page 1
WADEJOURNEY
7225 Sandscove Court
RghtSLde® LkWrsal 2018
18.0.31 RSU18908
Winter Park, PL32792
2019Uan3016115:30
OdaMo, FL
7) 629-6920 Fax:407629-9307
... Wade Jumerb\61ZI 612.rup
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