HomeMy WebLinkAboutENERGY EFFICIENCY CODEI
S -ANNED
BY
FORM R405-2017 St Lucie County
FLORIDA ENERGY EFFICIENCY CODE
FOR BUILDING CONSTRUCTION
Florida Department of Business and Professional Regulation - Residential Performance Method
Project Name: Lot 070 F1452 A RHG - W
Builder Name: Ryan Homes
Street: 5345 Oakland Lake Cir I
Permit Office: St. Lucie
City, State, Zip: Ft. Pierce, FL, !
Permit Number:
Owner:
Jurisdiction: 661000
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 (1516.7 sqft.)
Insulation Area
2. Single family or multiple family Single-family
a. Concrete Block - Int Insul, Exterior
R=4.1 1265.30 ft2
b. Frame - Wood, Adjacent
R=11.0 251.33 ft2
3. Number of units, if multiple family 1
c. N/A
R= ft2
4. Number of Bedrooms 3 I
d. N/A
R= ft2
10. Ceiling Types (1452.0 sqft.)
Insulation Area
5. Is this a worst case? No !
a. Under Attic (Vented)
R=30.0 1452.00 ft2
6. Conditioned floor area above grade (ftz) 1452 I
b. N/A
R= ft2
I
c.
R= ft2
Conditioned floor area below grade (ftz) 0
11. Duuctct s
R ft2
7. Windows(132.0 sqft.) Description Area
a. Sup: Attic, Ret: Main, AH: Main
6 290.4
a. U-Factor: Dbl, U=0.54 98.67 f t2
SHGC: SHGC=0.31
12. Cooling systems
kBtu/hr Efficiency
b. U-Factor: Dbl, U=0.63 33.33 ft2
a. Central Unit
23.2 SEER:14.00
SHGC: SHGC=0.32
c. U-Factor: N/A ft2
SHGC:
13. Heating systems
kBtu/hr Efficiency
d. U-Factor: N/A ft2
a. Electric Heat Pump
23.2 HSPF:8.20
SHGC:
Area Weighted Average Overhang Depth: 1.000 ft.
Area Weighted Average SHGC: 0.313
14. Hot water systems
a. Electric
Cap: 50 gallons
8. Floor Types (1452.0 sqft.) Insulation Area
EF: 0.900
a. Slab -On -Grade Edge Insulation R=0.0 1452.00 ft2
b. Conservation features
b. N/A R= ! ft2
None
c. N/A R= ft2
15. Credits
Pstat
Glass/Floor Area: 0.091 Total Proposed Modified Loads: 51.07
PASS
Total Baseline Loads: 50.90
i
1 hereby certify that the plans and specifications covered by
Review of the plans and
O�'T Sr
AT�
this calculation are in compliance with the Florida Energy
specifications covered by this
Code.
calculation indicates compliance
with the Florida Energy Code.
'yG
PREPARED BY:
Before construction is completed
DATE:
this building will be inspected for
compliance with Section 553.908
I hereby certify that this building, as designed, is in compliance
Florida Statutes.
5�
cOb �
with the Florida Energy Code.
yvE
OWNER/AGENT/�--&
BUILDING OFFICIAL:
DATE: l�a'�0
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.
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i
G
Cnonn MAnC nn47
PROJECT
Title:
Building Type:
Owner Name:
# of Units:
Builder Name:
Permit Office:
Jurisdiction:
Family Type:
New/Exisfing:
Comment:
Lot 070 F1452 A RHG - W Bedrooms: I 3
User Conditioned Area: 1452
Total Stories: 1
1 Worst Case: No
Ryan Homes Rotate Angle: 0
St. Lucie Cross Ventilation: No
661000 Whole House Fan: No
Single-family
New (From Plans)
I
Address Type: Street Address
Lot # 070
Block/Subdivision: Oakland Lake
PlatBook:
Street: 5345 Oakland Lake Cir
County: St. Lucie
City, State, Zip: Ft. Pierce ,
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 I 39 90
70
75 299 58 Medium
I BLOCKS
Number
Name
Area Volume l
1
Blocki
1452 126321:4
SPACES
Number
Name
Area Volume ICtchen Occupants
Bedrooms
Infil ID Finished Cooled Heated
1
Main
1452 12632.4 I Yes 4
3
1 Yes Yes Yes
FLOORS
#
Floor Type
Space Perimeter R-Value
Area
Tile Wood Carpet
1 Slab -On -Grade Edge Insulatio Main 1i46 ft 0
1452 ftz
_--- 0 0 1
ROOF
/
V #
Type
Roof Gable Roof
Materials Area Area Color
Solar
Absor.
SA Emitt Emitt Deck Pitch
Tested Tested Insul. (deg)
1
I
Hip Composition shingles 1573 ftz 0 ftz Dark
0.6
N 0.6 No 0 22.6
ATTIC
V #
Type
Ventilation Vent Ratio (1 in)
Area
RBS IRCC
1
Full attic
Vented 300
1452 ftz
N N
CEILING
#
Ceiling Type
Space R-Value Ins Type Area Framing Frac Truss Type
1
Under Attic (Vented)
Main 30 Blown 1452 ftz 0.1 Wood
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v
EYlORA 13AAM_7n17
WALLS
Adjacent
Cavity Width Height
Sheathing Framing Solar
Below
Space
1
N
Exterior Concrete Block - Int Insul Main
4.1 47 6 8
8 411.7 ft2
0
0 0.6
0
_ 2
E
Exterior Concrete Block - Int Insul Main
4.1 40 0 8
8 346.7 ft2
0
0 0.6
0
3
S
Exterior Concrete Block - Int Insul Main
4.1 37 6 8
8 325.0 ft2
0
0 0.6
0
4
W
Exterior Concrete Block - Int Insul Main
4:1 21 0 8
8 182.0 ft2
0
0 0.6
0
5
-
Garage Frame - Wood Main
11 29 0 8
8 251.3 ft2
0
0.25 0.6
0
DOORS
#
Omt Door Type Space
Storms
U-Value
eightln
Area
Ft
In
In
Ft
1
W Insulated Main
None
.39 3
6 8
20 ft2
2
- Wood Main
None
.39 2
8
16 ft2
1WINDOWS
Orientation shown is the entered, Proposed orientation.
Wall
Overhang
V
#
Omt ID Frame Panes NFRC
U,Factor SHGC Imp
Area Depth
Separation
Int Shade
Screening
1
N 1 Metal Low-E Double Yes
�0.54 0.31 N
16.4 ft2 1 ft 0 in
2 ft 0 in
Drapes/blinds
None
2
E 2 Metal Low-E Double Yes
i 0.54 0.31 N
49.3 ft2 1 ft 0 in
2 ft 0 in
Drapes/blinds
None
3
E 2 Metal Low-E Double Yes
0.63 0.32 N
33.3 ft2 1 ft 0 in
2 ft 0 in
None
None
4
S 3 Metal Low-E Double Yes
10.54 0.31 N
16.4 ft2 1 ft 0 in
2 ft 0 in
Drapes/blinds
None
5
W 4 Metal Low-E Double Yes
i 0.54 0.31 N
16.4 ft2 1 ft 0 in
2 ft 0 in
Drapes/blinds
None
GARAGE
#
Floor Area Ceiling Area
Exposed Wall Perimeter
Avg. Wall Height
Exposed Wall Insulation
1
393 ft2 393 ft2
I 51 ft
8.7 ft
1
INFILTRATION
i
#
Scope
Method SLA
GFM 50 ELA EgLA ACH
ACH 50
1 Wholehouse Proposed ACH(50) .000387
11473.8 80.91 152.16 .2902
7
I HEATING SYSTEM
#
System Type Subtype
j Efficiency
Capacity
Block
Ducts
1
Electric Heat Pump/ Split
i
HSPF:8.2
23.2 kBtu/hr
1
sys#1
COOLING SYSTEM
#
System Type Subtype
Efficiency
Capacity Air Flow
SHR Block
Ducts
1
Central Unit/ Split
SEER: 14 23.2 kBtu/hr 696 cfm
0.75 1
sys#1
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FORM R405-2017
HOT WATER SYSTEM
i
# System Type
SubType
Location
EF Cap
Use
SetPnt
Conservation
1 Electric
None
Garage
0.9 50 gal
60 gal
120 deg
None
SOLAR HOT WATER SYSTEM
FSEC
Collector
Storage
Cert # Company Name
System Model # Collector Model # Area
Volume
FEF
None None
ftz
DUCTS
/ ---- Supply — -
-- Return ---
Air
CFM 25
CFM25
HVAC #
V # Location R-Value Area
Location
Area Leakage Type
Handler
TOT
OUT
QN RLF
Heat Cool
1 Attic
6 290.4 ft
Main
72.6 ftz Proposed Qn
Main
-- cfm
43.6 cfm
0.03
0.50
1 1
TEMPERATURES
Programable Thermostat: Y
Ceiling Fans:
CoolingJan Feb
HeatinJan Feb
Mar
Mar
Apr
Apr
Ma Jun Jul
May, Jun Jul
Auge
E AuSep
Oct r l
E Oct [X]
Nov
Nov
Dec
Dec
VentingJan Feb
Mar
Apr
[ May, [[[ 111 Jun Jul
l
L Aug
Se
lX� Oct
[[[XXX]]]
Nov
Dec
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
I78 78 78
78
78
78
78
78
78
Cooling (WEH) AM
78
78
78
178 78 78
78
78
78
78
78
78
PM
78
78
78
178 78 78
78
78
78
78
78
78
Heating (WD) AM
66
66
66
1 66 66 68
68
68
68
68
68
68
PM
68
68
68
i 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
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Florida Building Code, Eni
atory Reauirements for Reside
Conservation, 6th Edition (2017)
Performance. Prescriotive and ERI Methods
I ADDRESS: 5345 Oakland Lake Cir Permit Number: I
Ft. Pierce , 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 verify that the EPL display card completed and signed by the builder accurately 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 Occupancies and multiple attached single family dwellings shall be permitted to
comply with Section C402.5.
R402.4.1 Building thermal envelope. The building thermal Lvelope shall comply with Sections R402.4.1.1 and R402.4.1.2. The sealing
methods between dissimilar materials shall allow for diffi rential expansion and contraction.
R402.4.1.1 Instal lation.The components of the building theaial.envelope as listed in Table R402.4.1.1 shall be installed in accordance
with the manufacturer's 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/RESNET/ICC 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)(1), (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.
i
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. 11
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.
5. Heating and cooling systems, if installed at the time of the test, shall be tumed off.
6. Supply and return registers, if installed at the time of the test, shall be fully open.
R402.4.2 Fireplaces. New wood-buming 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 cfm per square foot (2.6 Us/m2), when tested according to NFRC 400 or
AAMA/ W DMA/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 Us) when tested in accordance with ASTM E283 at a 1.57 psf (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.
SECTION R403 SYSTEMS
R403.1 Controls.
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). neat 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, filtl r 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 acid 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 forthlin Section 489.105(3)(% (g) or (i), 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 airflow 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:
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.
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 manufacturer's 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 (131C) 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 circulation systems 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 31/2 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°C).
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 bumer(s) of
combustion types of service water -heating systems to be turned off.
R403.5.6.2 Water -heating equipment. Water-heatirig 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 TMA, 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 atilt 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. Outdo or 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. When installed to function as a whole -house mechanical
ventilation system, fans shall meet the efficacy requirements of Table R403.6.1.
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.
i
2. No ventilation or air-conditioning system make-up air shall be provided to conditioned space from attics,
crawispaces, 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 a minimum of R-19, space permitting, or R-10
otherwise.
R403.7 Heating and cooling equipment (Mandatory).
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
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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
2. calculated total sensible load but not less than 80 percent of that load.
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 i 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 si lected in Section R403.7.1.
I
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.
I
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 loadslcaused 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 isliutilized 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 (101C), and no
precipitation is falling and an automatic or manual control that will allow shutoff when the outdoor temperature is above 40IF (4.8CC).
R403.10 Pools and permanent spa energy consumption't(Mandatory). The energy consumption of pools and permanent spas
shall be in accordance with Sections R403.10.1 thro i h 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 oil! -fired 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.
4/13/2018 11:19 AM EnergyGauge® USA - FlaRes2017 - FBC 6th Edition (2017) Complia 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 (Mandator90he 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 (Mandatory). 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.
4/13/2018 11:19 AM EnergyGauge® USA - FlaRes2017 - FBC 6th Edition (2017) Complia Page 5 of 5
FORM R405-2017
ENERGY PERFORMANCE LEVEL (EPL)
DISPLAY CARD
ESTIMATED ENERGY PERFORMANCE INDEX* = 100
The lower the EnergyPerformance Index, the more efficient the home.
5345 Oakland Lake Cir, Ft. Pierce, FL,
1. New construction or existing
2. Single family or multiple family
3. Number of units, if multiple family
4. Number of Bedrooms
5. Is this a worst case?
6. Conditioned floor area (ftz)
7. Windows" Description
a. U-Factor: Dbl, U=0.54
SHGC: SHGC=0.31
b. U-Factor: Dbl, U=0.63
SHGC: SHGC=0.32
c. U-Factor: N/A
SHGC:
d. U-Factor: WA
SHGC:
Area Weighted Average Overhang Depth:
Area Weighted Average SHGC:
8. Floor Types
a. Slab -On -Grade Edge Insulation
b. N/A
c. N/A
New (From Plans)
Single-family
3
No
1452
Insulation
R=0.0
R=
R=
Area
98.67 ft2
33.33 ft2 I
ftz
ft2
i
1.000 ft.[,
0.313
Area i
1452.00 ft2
ft2
ft2
9. Wall Types
a. Concrete Block - Int Insul, Exterior
b. Frame - Wood, Adjacent
c. N/A
d. N/A
10. Ceiling Types
a. Under Attic (Vented)
b. N/A
c. N/A
11. Ducts
a. Sup: Attic, Ret: Main, AH: Main
12. Cooling systems
a. Central Unit
13. Heating systems
a. Electric Heat Pump
14. Hot water systems
a. Electric
b. Conservation features
None
15. Credits
I certify that this home has complied with the Florida Energy Efficiency Code for Building
Construction 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 on installed Code compliant features. I
Builder Signature: l !� ,�(j i Date: 4-jct-Q,
Address of New Home: 5145006b" IdIW Cat, City/FL Zip:
3qQ5►
Insulation Area
R=4.1 1265.30 ft2
R=11.0 251.33 ftz
R=
ft2
R=
ft2
Insulation
Area
R=30.0
1452.00 ft2
R=
ftz
R=
ftz
R ft2
6 290.4
kBtu/hr
Efficiency
23.2 SEER:14.00
kBtu/hr Efficiency
23.2 HSPF:8.20
Cap: 50 gallons
EF: 0.9
Pstat
*Note: This is not a Building Energy Rating. If your Index is below 70, your home may qualify for energy efficient
mortgage (EEM) incentives if you obtain a Florida EnergyGauge Rating. Email EnergyGauge tech support at
techsupport@energygauge.com or see the EnergyGauge web site at energygauge.com for information and a list of
certified Raters. For information about the Florida Building Code, Energy Conservation, contact the Florida Building
Commission's support staff.
**Label required by Section R303.1.3 of the Florida Building Code, Energy Conservation, if not DEFAULT.
4/13/2018 11:19 AM EnergyGauge@) USA - FlaRes2017 - Section R405.4.1 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
i
Project Name: Lot 070 F1452 A RHG - W Builder Name: Ryan Homes
Street: 5345 Oakland Lake Cir Permit Office: St. Lucie
City, State, Zip: Ft. Pierce , FL, Permit Number:
Owner: Jurisdiction: 661000
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
The exterior thermal envelope contains a continuous air barrier.
not be used as a sealing material.
requirements
Breaks or joints in the air barrier shall be sealed.
The air barrier in any dropped ceiling/soffit shall be aligned with
The insulation in any dropped ceiling/soffit
Ceiling/attic
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!
The junction of the foundation and sill plate shall be sealed.
Cavities within comers and headers of frame walls
Walls
The junction of the top plate and the tap of exterior walls shall be
shall be insulated by completely filling the cavity with
sealed.
a material having a thermal resistance of R-3 per inch
Knee walls shall be sealed.
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 crawispace walls
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
cavities shall be filled by insulation that on
Narrow cavities
installation readily conforms to the available cavity
spaces.
Garage separation
Air sealing shall be provided between the garage and conditioned spac
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
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 ibehind 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
between fire sprinkler cover pl�tes and walls or ceffing-g.
a. In addition, inspection of log walls snail oe in accoraance wim the provisions or iuu-400.
4/13/2018 11:19 AM EnergyGauge® USA - FlaRes2017 FBC 6th Edition (2017) Compliant Software Page 1 of 1
+ wrightsoft Project Summary
Entire House
One Stop Cooling and Heating
7225 Sardsmve Court, W irter Park, FL 32792 Phone: (407) 629 - 6920 Fax: (407) 629 - 9307 Web: wwwOreStopCoolirg.com Ucerse: CAC032444
Pr
• • •
For: Ryan Homes
Notes:
Job: F1452 ARHG
Data: 04/12/2018
By. RI/LF
Design Infotmation
Weather: Fort Pierce, FL, US
Winter Design Conditions
Summer Design Conditions
Outside db 42 `F
Outside db
90
`F
Inside db 68 `F
Inside db
72
cF
Design TD 26 cF I
Design TD
18
cF
Daily range
M
Relative humidity
50
%
Moisture difference
68
grAb
Heating Summary I
Sensible Cooling Equipment Load Sizing
Structure 15431 Btuh I
Structure
14832
Btuh
Ducts 2627 Btuh
Ducts
2813
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 18058 Btuh
Use manufacturers data
n
Rate/swing multiplier
Equipme g load
0.95
16763
Bluh
Infiltration
senile
Method Simplified
Latent Cooling Equipment Load Sizing
Construction quality Average
Fireplaces 0
Structure -
3035
Btuh
Ducts
699
Btuh
Central vent (0 cim)
0
Btuh
Area Healting Co 14 g
(ft� 453 53
(none)
Equipment latent load
3734
Btuh
Volume (ft3) 12639 i12639
Airchangeslhour 0.45 0.23
Equipment Total Load (Sen+Lat)
20496
Btuh
Equiv. AVF (cfm) 95 I 48
Req. total capacity at 0.75 SHR
1.9
bon
Heating Equipment Summary'
Cooling Equipment Summary
Make Goodman Mfq
Make Goodman Mfg.
Trade GOODMAN; JANITROL; AMANA DISTI...
Trade GOODMAN;JANITROL;AMANADISTI...
Model GSZ140241 K
Cond GSZ140241 K
AHRI ref 7995055
Coil ARUF251314A
AHRI ref 7995055
Efficiency 8.2 HSPF
Efficiency 11.5 EER,14 SEER
Heating input
Sensible cooling
17400
Btuh
Heating output 23200 Btuh @47°F
Latentcooling
5800
Btuh
Temperature rise 27 , cF
Total cooling
23200
Btuh
Actual airflow 773 cfm
Actual airflow
773
drn
Airflowfactor 0.043 cfm/Btuh
Airflowfactor
0.044
ckn/Btuh
Static pressure 0.50: in H2O
Static pressure
0.50
in H2O
Space thermostat
Load sensible heat ratio
0.83
Capacity balance point = 36 `F
Backup:
Input = 9 kW, Output = 29982 Btuh,100 AFUE
Calculations approved byACCA to meet all requirements of Manual J 8th Ed.
wrightsoft- I 2018-Apr-1310:1737
•W• w•—.�.. FGgtt-SUte6Uriversal201818.0.11 RSU23249 Pagel
ormto Desidop\IEMPU.ot0701452ARHG-WsLp CaIc=MJ8 FrortDcortaces: W
wrightsoft, Right-J® Worksheet
Entire House
One Stop Cooling and Heating
i
7225f ardsmveCourtWinterParkFL32792Phone:(407)629-6920 Fax: (407) 629 - 9307 Web: www.0reStopCoolirg.comUcerse:CAC032444
Jab: PI452 ARHG
Date: 04/12/2018
By: RULE
1
Room name
Entire House
DIN
2
FVosedwall
146.0 ft
i
205 ft
3
Room height
8.7 ft d
8.7 ft heat(mol
4
Room dimensions
11452.8
11.0 x 95 ft
1045 fF
5
Room area
fF
Ty
Construction
U-value
Or
FrrM
Area (fF)
Load
Area (fF)
Load
number
(BbhW-'n
(Bbrh4t2)
or perimeter (ft)
(Bluh)
or perimeter (ft)
(Bbh)
Heat I
Cccl
Gross
NIBS
Heat
Cool
Gross
NIPS
Heat
Cool
6
y/
13A-4as
0.143
n
332
262
326
- :310
1152
-811
0
`
. 0
0
�.
.
L—G
05-2om
0550
n
1430,
1454
16'
0
2M
'. 238`
'. "' 0.
0':"_
13AAois
0.143
a
3.72
262
183
146
544
383
0
0
0
0
05-2om
0550
a
1430
3422
16
0
234
561
0
0
0
0
11
11D0
0390
a
10.14
1150
20
20
204
231
0
0
0
0
V��ff
1,3A-4as
0:143
s
3.7.2
2.62
413
997
1476
1039'
,. 83''-
83
307
216
4A5-2om.
0550
s
1430
1454
16
�16
, 231.
2384.
0':
.0
` `0
0
;.t_G
13AAocs
0.143
w
3.72
262
348
265
987
695
96
62
231
163
05-2om
0550
w
1420
3432j
49
0
701
1682
0
0
0
0
4A5-2omd
0.630
w
1638
42-091
34
0
549
1410
34
0
549
1410
RR
12.E-0svv
0.091
. -
237
133
252
231
' 559
314
0
0
0
0
M6.,
0390
n
10.14
11:50
16
. '16
_ 162
... 1B4
, .:. 0
:0
' . 0
:; 0
C
.
1613-30ad
0.032
0.83
1.70
1453
1453
1209
2464
105
105
87
177
F
22A pm
1.180
-
30:68
0:00
I
i i
_ .1468
1:46
c-
_ : 4479
. _ 0
; ._. = 105
_ . •__ 21
'
::. 629
_: _ - - A.
6
c) AED excursion
1005
491
Erroelopeloss(ga)n
12723
11254
1803
2457
12
a) Infiltration
2709
958
380
135
b) Room ventilation
0
0
0
0
13
internalgains: Occupants@ 230,
4
920
0
0
Appliances(other
1700
0
Subtotal (lines6to 13)
15431
14832
2183
2592
Les external load
0
0
0
0
Lesstransfer
0
0
0
0
Redistribution
0
0
0
0
14
Subtotal
15431
14832
2183
2592
15
Dud loads
1 179/6
19%1
27
2813
171/6
19%
372
492
Total room load
I
I
18058
I
17645
2555
3084
Air required (dm)
773
773
109
135
Calculations approved byACCA to meet all requirements of Manual J 8lh FBI.
=!qt tsoft" 2018-Apr-1310:1737
"' RigttSuteOUniversal 201818.0.11 RSU23249 Page 1
timator\Desidop\TEMP\Lot0701452ARHG-W.rup Calb=WB FrortDoorfaces: W
qI- wrightsoft' Right-J® Worksheet
Entire House
One Stop Cooling and Heating
7225 Sardscove Coot, Winter Park FL 32792 Phone: (407) 629 - 6920 Fax: (407) 629 - 9307 Web: wwwOreStopCoolirg com License: CAC032444
Job: F1452 ARHG
Date: 04/12/2018
By: RULE
1
Room name
GREAT
WED
2
3
Exposed wall
Room height
14.0 ft
8.7 It heaUoDol
30.0 ft
8.7 It heaUmol
4
5
Room dimensions
Roam area
1 D x 298D ft
298.0 iF
1.0 x 227.0 ft
227.0 fP
Ty
Construction
U-value
Or
HTM
Area (fF)
Load
Area (f[2)
Load
number
(Btuhfltz9
(BWw
or perimeter (ft)
(Bluh)
or perimeter (ft)
(Btuh)
—H;;7
Cool
Gross
IWPIS
Heat
Cool
Gross
PUPS
Heat
Cool
6
:;y/
f= ,G
13A-0as
.4AS2om.
13A 4ocs
0.143
0550
0.143
_n
a
3.72
1430,
3.72
1- 1454
2.62
0
0
:0
=0
0
0
0
`. 0
0
0
i; 131
: 16
0
. 114
0'
0
42-4
234
0
299
238
0
11
4A5.2om
11 DO
13A-0ocs
;4Is2om
0.550
0390
0.143
0550
a
a
_.s
s =
1430
10.14
3.72
1430
3422
11.50
•= 262
1454
0
0
,: '0
.i :0
0
0
0
0
0
0
-_0
`.; U
0
0
, 01'
0
0
0
. 0
0
0
0
0
! 0
0
0
0
0'
0
0
0
0
V1l
13A-4ocs
4A5-2om
4A5-2omd
12GOsuv.
'JdDO
166-30ad
0.143
0550
0.630
6091
0390
0.032
w
w
w
-
, - n
3.72
1420
1638
237
1014:
0.83
2.62
3432:
4209,
` 133
i> 1150
1.70
, 122
33
0
`- U
. 0
298
89
0
0
:0
0
298
331
467
0
0
_. • w0
248
233
1122
0
0
.' :: 0
505
131
16
0
0
.. A
227
114
0
0
0
. 0
227
424
234
0
0
i .0
189
299
561
0
0
0
385
R
'—D
C
F
22Apm. -
t180:..
-
3068;
,. OAO
.= •.. >298
14
_, . _ .930
_ -. 0
: ' ..;. 227'-
-30
- : 920
0
I
I
I
6
c) AED excursion
485
137
Errvelope loss/gain
1476
2345
2425
1918
12
a) Infiltration
260
92
557
197
b) Room %erfilation
0
0
0
0
13
Internal gains: Occupants@ 230
0
0
2
460
Appliances(other
0
1 0
Subtotal (Iines6to 13)
1736
2437
2982
2575
Lessextemalload
0
0
0
0
Lesstranster
0
0
0
0
Redisbibution
200
323
0
0
14
Subtotal
1935
2761
2982
2575
15
Dud loads
179/.
19%
329
524
171/6
19%
508
488
Total room load
F2265
3284
3490
3063
Air required (dm)
97
144
1491
134
Calculations approved bVACCAto meet all requirements of Manual J ft Ed.
wrigt�tsoft" i 2018-Apr-1310:1737
"""" Rigtt-Scite®Uriversal201818.0.11 RSU23249 Paget
OmatorfDesldop\TEMPIM701452ARHG-W.np Calc=M18 Frontlborfaces: W
wrightsoft Ri9 ht-J® Worksheet I Job: F1452 ARHG
, Date: 04/12/2018
Enure House W. RI/LF
One Stop Cooling and Healing
7225 Sardscove Court. Winter Park FL 32792 Phore: (407) 629 -6920 Fax: (407) 629 - 9307 Web: wwwOreStopCooling.com Ucerse: CAC032444
1
2
3
4
5
Room name
Exposed wall
Room height
Room dimensions
Room area
roT
9.0 It
8.7 ft heat/cool
1.0 x 126.1 ft
126.1 fF
PAN
4.0 ft
8.7 ft heat/cool
1.0 x 169 ft
169 T
Ty
Construdon
number
U-value
(BtruWcF)
Or
HTM
(BtuW
Area ("
or perimeter M
Load
(Bhuh)
Area (fo
or perimeter M
Load
(BWh)
Heat
Cool
Gross
N/P/S
Heat
Cool
Gross
N/P/S
Heat
Cool
6
11
I—G
13AAors:
402orfi
13A-4o s
4A5-tom
11DO
j3A 4ots
`4P5 tom
s
4A5-2om
4A5-2omd
12C.Qsu r
i. DO'-
1613-30ad
22A tprn ' .
-
-
0-143:
0550
0.143
0550
0390
.0143
'0550
0.143
0550
0.630
0191
.0390
0.032
1.180
n
: n
a
a
a
s.
> s
w
w
w
-
n
- -
3.72
1430
3.72
1420
10.14
3:72
1430
3.72
1420
1638
237
10.1.'4
0.83
30.68
2.62
1454.
2.62
3432
1150
- M
1454
Z62
3422
42.09
1.33
. 1TM
1.70
0.00
I
I
0
0
0
0
0
! 78
0'
0
0
' 0
0
f 0
126
126
0.0
0
0
0
0
78
0.
0
0
0
:.0
. 0
126
` 9
0i
0
0
0
291;
0
0
0
0
0
! 0
105
: 276
0
0
0
0
0
205
0
0
0
0
0.
! 0
214
0
0
.0
0
0
0
35
0
0
0
0
0
: 0
17
. 717
0
-- 0
0
0
0
35
.0
0
0
0
' 0
`.. 0
17
;: 4
-
0
0".
0
0
0
. 129
i z 0:
0
0
0
0
:: - 0
14
:- . 123'
0
0
0
0
0
: 91;
Q
6
0
0
: 0
0'
29
• . U'
1L--G
Ti13A-4o
GG
E}
C
F
-
6
c) AED excursion
-65
-6
Envelope loss(gain
672
354
266
114
12
a) Infiltration
167
59
74
26
b) Room ventilation
0
0
0
0
13
Internal gains: Occupants@ 230
Applianoesbiher
0
0
1200
0
0
0
Subtotal (lines 6to 13)
839
1613
340
140
Lessextemalload
0
0
0
0
14
15
Lesstarder
Redistribution
Subtotal
Duct loads
17/6
19%
0
3
842
143
0
6
1619
307
17%
190
0
0
340
5B
0
0
140
27
Total room load
Air required ((*m)
986
1 42
1926
84
398
17
167
7
_ Calculations approved byACCA to meet all requirements of Manual J 8th Ed.
wr gFrrtsAC - 2018-Apr-1310:1737
.�IGCA RigII StiteOUriversal 2018118.0.11 RSL23249 Page 3
6mator\Desidop\TEMP\Lot0701452ARHG-Wnp Calc=MJB FrorRDoor faces: W
+ wrightsoft, Right-M Worksheet
Entire House
One Stop Cooling and Heating
7225 Sandsmve Cam, Wirter Park, FL 32792 Phone: (407) 629 - 6920 Fax: (407) 629 - 9307 Web: www.OrLStc)pCoolirii.com Ucerse: CAC032444
Job: F1452ARHG
Data: 04/12/2018
By: RULE
1
'Room name
MWIC
luBTH
2
3
Exposed wall
Room height
0 ft
8.7 ft heat/cool
12.0 ft
8.7 ft heatbool
4
5
Room dimensions
Room area
8.0 x 7.0 ft
56D fl?
1.0 x 1075 ft
1075 fig
Ty
Construdon
number
U-value
(Btuh/ftZf)
Cr
HTM
(Ehu
Area (fF)
or perimeter (ft)
Load
(Bhrh)
Area (fF)
or perimeter (ft)
Load
(Btuh)
He;
Cool
Gross
N/P/S
Heat
Cool
Gross
N/RiS
Heat
Cool
6
y/
t— G
13A-4ors
4P&2om
13A-4ars
0-143
0550
0.143
n:
n
a
3.72
1430
3.72
2:62
; I.
2.62
-) A
0
0
U
0.
0
:0
0
0
0
0
0
," 104
0
0
, 104
0
0
. 368,
0
0
273
0
0
11
4A5-tom
11DO
13A-0ocs
4A52om
13A4ocs
4A5-2om
4A5-2omd
12C-Osw
AIDO
168-30ad
22A-pm
0550
0390
0.143
0550
0.143
0.550
0.630
0 W1
0390
0.032
1.:t80
a
a
_ s
s
w
w
w
-
n
-
14.30
10.14
3.72
1430
3.72
1430
16.38
237
1w4
0.83
30.68
3432
1150
' 210
. 1454a
262
3432
42.09
'_ 133
1t50
1.70
;- 0.00
I
0
0
0
0
0
0
0
70
. 0.
56
-56'.
0
0
0
"U
0
0
0
70
i0..
56
Q
0
0
` '0
U
0
0
0
165
;`0'
47
- 0
0
0
`' _ . -"0,
0
0
0
0
92-
- _0
95
.,- . 0.
0
0
0
0
0
0
0
- 65
0
108
- .. 108
0
0
' 0
0
0
0
0
- 65
. 0
108
'1
- 12'
0
0
0
0
0
0
0
.154
0
89
368
0
0
0
0
0
0
0
- 87
0
182
. 0
y!
1—('
R
D
C
F
6
c) AED exorrsion
-7
-24
Envelope loss(gain
211
180
1000
518
12
a) Infiltration
0
0
223
79
b) Room ventilation
0
0
0
0
13
Internal gains Occupants @ 230
0
0
0
0
Applianoes/other
0
0
Subtotal (lines 6to 13)
211
180
1223
597
Lessexlemalload
0
0
0
0
L.esstransfer
0
0
0
0,
Redistribution
62
373
0
0'
14
Subtotal
273
553
1223
597
15
Duct loads
17%
19%
46
105
17°/a
191%
208
113
Total room load
319
658
1 J
143,1
710
Air required (cfm)
14
29
61
—
31
Calculations aoaroved bvACCAtD meet all requirements of Manual J 8lh Ed.
- wrigt�tsoftA 2018-Apr-1310:1737
A&K -Fia Rigtt-SuteOUriversal20i818.0.11 RSU23249 Page
fimator\Desldop\TEMPV.ot0701452ARHG-WnQ Calc=" FrordOoorfaces: W
+ wrightsoft Right-J® Worksheet
Entire House
One Stop Cooling and Heating
7225 Sardscove Court, Wirter Park, FL 32792 Ptnne: (407) 629 - 6920 Fax: (407) 629 - 9307 Web: wwwOreStopCooling.com Ucerse: CAC032444
Jab: F1452 ARHG
Date: 04/12/2018
By- RULF
1
2
3
4
5
Room name
FVosedyell
Room height
Room dimensions
Room area
O ft
8.7 It heat/aool
55 x 4.0 It
22.0 >tz
BTH2
O ft
8.7 ft heat/cool
55 x 85 ft
46B ft2
Ty
Construdon
number
U-value
(BWhdz-17
Cr
HTM
(Btuh"
Area (fll)
or perimeter (ft)
Load
(Btuh)
Area (fF)
or perimeter (ft)
Load
(Btuh)
Heat I
Cool
Gross
N/P/S
Heat
Cool
Gross I
N/P/S
Heat
Cool
6�!
11
T—�
�1��a
13A�dcs
.4P5-2om -
13AAo
4A5-toms
11DO
13Aflocs.
13AAocs
4A5-2om
4A5-2omd
12c osvc
1613-30ad
bA43
0.550
0.143
0550
0390
0.143
-05560
0.143
0550
0.630
GUM
0390
0.032
it80
n'
n
a
a
a
' s
s
w
w
w
-
n
_-
3.72
_ - 14M
3.72
1430
10.14
i 3.72
1420
3.72
1430
1638
2a7
1014
0B3
_ :.30.68
262
1454
2.62
3432
1150
252
1454
2.62
3432
4209
.. TM:
1150
1.70
0.00
i
0
. 0
0
0
0
0
0'
0
0
0
0'
I 0
22
22
0
.0
0
0
0
0`
0
0
0
0
0I.
0:;
22
:0
0
0
0
0
0
0
0,
0
0
0
Q'
0
18
.... ••-:Q!
0
0
0
0
0
0
0'
0
0
0
0
0
37
0
0
0
0
0
0
0
0'
0
0
0
0.
0
47
47_
0
0
0
0
0
0
0.
0
0
0
W-
0:
47
0-__
:' . 0
: -0
0
0
0
0',
0
0
0
0
0
0
_39
:0
0
, 0
0
0
0
0
` 0
0
0
0
. _-0
0
79
-0
I—D
w
.;
—G;4A52gm
F�
C
F .::27Pkpm°
i
6
c) Am ex ursion
-1
3
Envelope loss(gain j
18
36
39
76
12
a) Infiltration
0
0
0
0
b) Room ventilation
0
0
0
0
13
Internal gains: Cm4nnts@ 230
0
0
0
0
Appliances(other
0
0
Subtotal (lines6to 13)
18
36
139
76
Lessex0emalload
0
0
0
0
14
15
Lesstransfer
Redistribution
Subtotal
Duct loads
179/6
19'/6
0
-18
0
0
0
-36
0
0
179/6
19%
0
511
550
94
0
398
474
90
Total room load
Air required (dm)
0
1 01
0
0
643
28
564
25
Calculations approved byACCA to meet all requirements of Manual J 8th Ed.
�.t- wrrightsoft 2018-Apr-1310:1737
RigttSrite®Uriversa12018118.0.11 RSU23249 Page
5mator\Desldop\TEMP\Lot0701452ARHG-W.nQ Calc=MA Frord Door faces: W
-F wrightsoft, Right-M Worksheet
Entire House
One Stop Cooling and Heating
7225 Sandsoove Court, Winter Park, FL 32792 Ptnre: (407) 629 - 6920 Fax: (407) 629 - 9307 Web: www0reStopCoolirg.com Ucerse: CAC032444
Job: F1452 ARHG
Date: 04/12/2018
By. RULF
1
2
3
4
5
Room name
EVosedwall
Room height
Room dimensions
Room area
LDRY
0 It
8.7 ft heat/mol
35 x 7.0 ft
245 ft2
BED3
14.0 It
8.7 ft heatbool
11.0 x 14.0 It
154.0 ftz
Ty
Construction
number
U-value
(BWWf)
Or
HTM
(BtuhlRg
Area ()
or perimeter (ft)
Load
(Btuh)
Area (fF)
or perimeter (ft)
Load
(BWh)
Heat
Cool
Gros
N/P/5
Heat
Cool
Gross
NIPiS
Heat
Cool
6
11
AU—!'
13A-4ors
4A5-tom
13AAo s
4A5-2om
11 D0
13A4o s
4A5.2om
13A-40 s
4A5-2om
4A5-2omd
12C=0sw
1613&30ad
221tpm
0.143
0.550
0.143
0550
0390
01.43
550 0
0.143
0550
0.630
0:091
0.390.
0.032
1_�BO
n
n
a
a
a
. s
s
w
w
w
-
n
-_
a72
1420
3.72
1430
10.14
3.72
1430
3.72
1430
1638
237
10.14
0.83
3068
2.62
i4--A
2.62
3432
1150
2:62
14N
2.62
3432
42.09
i33
11:501
1.701
OUO
-6
0:
0
0
0
0
0'
I 0
0
0
30
0
25
..25
0
�0
0
0
0
U
0
0
0
3Q
.'0
25
0
- - ,- 0
0
0
0
- 0
0
0
0
72
,- .. ;0;
20
`_ 0:
.:. 0
0
0
0
'_; 0'
0
0
0
0
- _ 40
0
42
_. 0:
: 0'
0
0
0
122
; 16
0
0
0
`. -
0
154
164,:.
0
0
0
0
0
' 105
.` 16
0
0
0
= '0,
,_ .. ..0'
154
14':°
U;
0
0
0
0
392
234.
0
0
0
0,
: 0
128
430',
0
0.
0
0
0
276
238
0
0
0
0
0
261
0
I-- D
y/
�-6
���------LGG'
R.
-L—D.,11'D0
C
F
6
ci AED exausion
-23
-12
Errvelopeloss(gain
92
59
1183
763
12
a) Infiltration
b) Room %enfilagon
0
0
0
0
260
0
92
0
13
Internal gains: Oowpar s @ 230
Appliancesbther
0
0
500
1
230
0
Subtotal (lines 6 to 13)
2
F-0
559
1443
1085
14
15
Less external load
Lesstransfer
Redistribution
Subtotal
Duct loads
17%
19%1
0
.2
0
0
0
0
-559
0
01
171/.
19%1
0
0
146
1589
270
0
0
114
1198
227
Total room load
Air required (cm)
0
0
0
0
1860
801
1425
62
Calculations approved by ACCA to meet all requirements of Manual J 8th Ed.
- - wr7gF�tsc Vk- 2018-Apr-1310:1737
AC�'.A Rigtt-SriteGUriversal201818.O.l1 RSU23249 Page
timatoADestdop\TEMP\Lot 0701452 ARHG - W.r p Calc= MJ8 Front Door faoes: W
+ wrightsofta Right-J® Worksheet
Entire House
One Stop Cooling and Healing
7225 Sandscove Court, Winter Park, FL 32792 Phone: (407) 629 -6920 Fax: (407) 629 - 9307 Web: www.OreStopCoolirg.com License: CAC032444
Job: F1452 A RHG
Date: 04/12/2018
By- RULF
1
2
3
4
5
Room name
EVosedvdi
Room height
Roam dimerdons
Room area
BED2
37.0 ft
8.7 ft heat/cool
155 x 11.0 ft
1705 ftz
FOY
55 ft
8.7 ft heat/cool
1.0 x 99.0 ft
99.0 ip
Ty
ConstrurliOn
number
U-value
(Btuh4tZF)
Or
HTM
(BluW
Area (fP)
or perimeter (ft)
Load
(Btuh)
Area (ft?)
or perimeter (ft)
Load
(Btuh)
Heat
Cccl
Gross
IVIPIS
Heat
Cool
Gross
N PVS
Heat
Cool
6
11
'y/
L—G
13A4ots
AA52onr
13A-4ors
4A5-2om
11DO
t3A=4as:_
r4P�2om
13A-4o s
4A5-tom
4A5-2omd
f2GOsei,
1iD0.,.
16B-30ad
22A 1pm _ .;
Oi43
05514.1i
0.143
0550
0390
o-
0550
0:143
0550
0.630
OA91
0:390
0.032
1.j80
n
n,
a
a
a
's
s
w
w
w
. rt.
_ -:
1430
3.72
1420
10.14
': 3.72'..
1430
3.72
1430
1638
237
- 1014'r.
0.83
- 3058;
2.62
' .1454
2.62
3432
1150
2:62
1;454'
2.62
3432
42.09
- 133
'11:50
1.70
<. O00
i
I'
i
- .91
01
135
16
0
` 96
0
0
0
0
: ? 0,
r d
171
{ 171
91
0
119
0
0
. 96
- 0
0
0
0
0
: p
171
', _ _ .. '.37
340:
; 0
441
234
0
, . 356
' 0
0
0
0
0
.>.0
142
,_ 135
239
` 0
310
561
0
. 25D
0
0
0
0
: 0
0;
289
,. a-
0
0
48
0
20
0
0
0
0
0
87
16
99
99
a:.
0
28
0
20
0
0"
0
0
0
7.1
'16
99
6
0
0
103
0
204
0
0'
0
0
0
168
ifa
82
169
0
0
73
0
231
0
0
0
0
0
94
184
168
0
III---DDD
yf
,L--G
R
�---D
C
IF-_
6
c) AED excurgon
63
-30
Emlope loss(gain
2647
1713
888
720
12
a) Infiltration
b) Room %entildon
686
0
243
0
102
0
36
0
13
Internal gains Occupants@ 230
Appliancestother
1
Ma
0
0
0
0
Subtotal (lines 6 to 13)
3333
2186
990
756
Lessextemalload
0
0
0
0
14
15
Lesstransfer
Redistribution
SubtotgJ
Ductloads
170/6
19%
0
180
3513
598
0
137
2323
441
171%
19'/0
0
-990
0
0
0
-756
0
0
Total room load
Air required ((*m)
4111
176
2764
121
0
0
0
0
all
-Fk- wrigF.tsoRm i 2018-Apr-1310:1737
Aft Flight-SriteOUriversal 201818'.0.11 RSU23249 Page 7
-.Gmator\Desidop\TEMP\Lot0701452ARHG-W.np Calc=MJB Front Door faces: W
Static Pressure and Friction Rate Job: F1452 ARHG
" WrlghtSOfi Date: 04/12/2018
Entire House By: RULF
One Stop Cooling and Heating
7225 Sardscove Cout, Wirter Park, FL 32792 Phore: (407) 629 - 6920 Fax: (407) 629 - 93Q7 Web: wwm0reStopCooling.com License: CAC032444
For: Ryan Homes
External static pressure
Pressure losses
Coil
Heat exchanger
Supply diffusers
Return grilles
Filter
Humidifier
Balancing damper
Other device
Available static pressure
Measured length of run -out
Measured length of trunk
Equivalent length of fittings
Total length
Total effective length
Supply Duds
Return Duds
Supply 4X--35,11 A=20,11 G=5,11 G=5,11
Return TotalF1=O
Heating
(in H2O)
0.50
0
0
0.03
0.03
0.10
0
0
0
Kq�-11!1111111
supply
(ft)
12
12
110
134
Heating
(in/100ft)
0.253 > 0.18
0.253 >0.18
1 A=35,11 Gam: Total EL=110
Cooling
(in H2O)
0.50
0
0
0.03
0.03
0.10
0
0
0
0.34
Return
(ft)
0
0
0
0
134
Cooling
(in/100ft)
0.253 > 0.18
0.253 > 0.18
- wrightsoft- 2018-Apr-1310:1738
.�e. m. wN -. •, Right-Srite®Uriversal201818.0.11 RSU23249 Page 1
AM timatoADesldop\TEMP1Lot0701452ARHG-W.nrp Caic=M,18 FrordDoor faoes: W
Job
F14
Duct System Summary Dait 04/1 2 A18
+�- RHG
wrightsoft® y ry oar: 04/12/2018
Entire House I By. RvLF
One Stop Cooling and Heating
7225 Sandscove Coot Winter Park, FL 32792 Phone: (407) 629 -6920 Fa)c (407) 629 - 9307 Web: wwOneStopCooling.rnm License: CAC032444
For: Ryan Homes
I
Heating
Cooling
External static pressure
0.50 in H2O
0.50 in H2O
Pressure losses
0.16 in H2O
0.16 in H2O
Available static pressure
0.34 in H2O
0.34 in H2O
Supply / return available pressure
0.176 / 0.170 in H2O
0.170 / 0.170 in H2O
Lowest friction rate
i 0.253 in/100ft
0253 in/100ft
Actual airflow
773 ch
773 cim
Total effective length (TEL)
,
134 ft
Name
Design
(Btuh)
Htg
(cfm)
Clg
(cfm)
Design
i FIR
Diam
(in)
H x W
(in)
Duct
Mal
Actual
Ln (ft)
Ftg.Egv
Ln (ft)
Trunk
BED2
h 4111
176
121
,
0.269
8.0
OxO
VIFx
21.5
105.0
sl2
BED3
h 1860
80
62
0.310
6.0
OxO
VIFx
14.7
95.0
s12
BTH2
h 643
28
25
0.298
4.0
Ox0
MR
14.1
100.0
s12
DM
c 3084
109
135
0.274
7.0
Ox 0
MR
29.1
95.0
st1
GREAT
c 1642
48
72
1 0.299
6.0
OxO
VIFx
18.7
95.0
st1
GREAT -A
c 1642
48
72
1 0.306
6.0
OxO
VIFx
16.3
95.0
sti
Krr
c 1926
42
84
0.271
6.0
OxO
VIFx
25.5
100.0
sti
MBED
h 3490
149
134
; 0.276
7.0
Ox0
VIFx
23.3
100.0
sti
raTH
h 1431
61
31
0.271
5.0
Ox 0
VIFx
25.7
100.0
sti
MWIC
c 658
14
29
0.253
4.0
Ox 0'
VIFx
24.3
110.0
sti
PAN
h 398
17
7
0.272
4.0
OXO
VIFx
25.0
100.0
s2
Trunk
Htg
Gg
Design
Veloc
Diam
H x W
Duct
Name
Type
(cfm)
(cfm)
FIR
(fpm)
(in)
(in)
Material
Trunk
sti
PeakAVF
473
558
;0.253
710
12.0
0 x 0
VinlFlx
s12
PeakAVF
300
216
10.269
680
9.0
0 x 0
VinIFIX
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201 B-Apr-1 3 10:1738
Page 1
Grille
Htg
Clg
TEL
Design
Ueloc
Diam
H x W
Stud/Joist
Duct
Name
Size (in)
(cfm)
(cfm)
(ft)
FR
(fpm)
(in)
(in)
Opening (in)
Mal
Trunk
rb1
Ox 0
773
773
0
10
0
0
Ox 0
Wx
wrightsoft- 2018-Apr-1310:1738
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EF2 = 80 CFM Fan
EF3 =110 CFM Fan
EFLI = 50 CFM Fan
EFL2 = 80 CFM Fan
EFL3 =110 CFM Fan
VTR = Vent to Roof
VTW = Vent to Wall
DV = Dryer Vent
RV = Range Vent
Lineset Chase
= Condensate
OT=Thermostat 11118
SRB = Small Reduction Box
LRB = Large Reduction Box
FBB = Field Bulk Box
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ENTRY
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Job M F1452 A RHG
Performed by RI/LF for: !One Stop Cooling and Heating
Ryan Homes 7225 Sandscove Court
Winter Park, FL 32792
Phone: (407) 629 - 6920 Fax (407) 629 - 9307
vwuwOneStopCoo6ng.com
ScBle:1 :79
Page 1
FlghtSuite® Universal 2018
18.0.11 RSU23249
2018-Apr-1310:16:27