HomeMy WebLinkAboutENERGY CONSERVATION - CHECK LISTCheck List
Applications for compliance with the Florida Building Code, Energy Conservation shall
include:
L This Checklist
[\ The full compliance report generated by the software that contains the project
summary, compliance summary, certifications and detailed component compliance
reports:
The compliance report must include the full input report generated by the software as
contigous part of the compliance report.
Boxes'a ro iiatel checked in n' the`Mandato` Sectton`ofthe'lai com nce reort: "`
PP P Y P ..._... P
WARNING: INPUT REPORT NOT GENERATED.
To include input report in final submission, go to the Project Form, Settings Tab and check
the box - "Append Input Report to Compliance Output Report'
Then rerun your calculation
.::5-A.m 1:tw ALF A `. o
5!Z eta
EnergyGauge'Summit®Fla/Com-2017. TAM 2017-1.0 Compliant Software. Effective Date:, Dec 31, 2017 '
Florida Building Code, Sixth Edition (2017) - Energy Conservation ASHRAE 90.1-2013 - Eneigy Cost Budget Option
3/4/2020 Page 1 of 16
PROJECT SUMMARY
Short Desc:
RESERVE R.O.
Description:
2019-0183
Owner:
-
Addressl:
8401 COMMERCIAL CENTER DR.
City:
Port St Lucie
Address2:
-
State:
Florida
Zip:
34986
Type:
Office
Class:
New Finished building
Jurisdiction:
PORT ST LUCIE, ST LUCIE COUNTY, FL (661200)
Conditioned Area:
3076 SF Conditioned & UnConditionedArea:
3076 SF
No of Stories:
I
Area entered from Plans
0 SF
Permit No:
0
Max Tonnage
3A
If different, write in:
..� 14z>
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Florida Building Code, Sixth Edition (2017) -.Energy Conservation ASHRAE g0.1-201.3 - Energy Cost Budget Option
3/4l2020 Page 2 of 16
Component
Gross Energy Cost
LIGHTING CONTROLS
EXTERNAL LIGHTING
HVAC SYSTEM
PLANT
WATER BEATING SYSTEMS
PIPING SYSTEMS
Met all required compliance from Check List?
Design Criteria Result
1,623.0 1,925.0 PASSED
PASSES
No Entry
PASSES
No Entry
PASSES
No Entry
Yes/No/NA
IMPORTANT MESSAGE
Info 5009 — — — An input report of this design building must be submitted along with this
CERTIFICATIONS
l AtNFe�''�.
I hereby certify that the plans Ord s s coyyere� by this calculation are in compliance with the
Florida Energy Code a Y����
Prepare" �� Building Official:
D4- • Date:
p�NAL�,G!"'
I certify that this building is in come FLodda Energy Efficiency Code
Owner Agent: Date:
If Required by Florida law, I hereby certify (') that the system design is in compliance with the Florida
Energy Efficiency Code
Architect: Reg No:
Electrical Designer: BRAD BROWN Reg No: 58323
Lighting Designer: BRAD BRO WN Reg No: 58323
Mechanical Designer' BRAD BROWN " "_' RegNo:' S8323
Plumbing Designer: BRAD BROWN Reg No: 58323
(') Signature is required where Florida Law requires design to be performed by registered design
professionals. Typed names and registration numbers may be used where all relevant information is
contained on signed/sealed plans.
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Florida Building Cade, S xth Edition (2017) - Energy Conservation ASHRAE 90.1-2013 -:Energy Cost Budget Option
3/4/2020 Page 4 of 16
Project: RESERVE R.O.
Title: 2019-0183
Type: Office
Building End Uses
1) Proposed 2) Baseline
Total 104.30 123.50
$1,623 $1,925
ELECTRICITY(MBtulkWhl$) 10430 12350
30559 36193
$1,623 $1,925
AREA LIGHTS 27.90 3150
8186 .... 9232
$435 $491
MISC EQUIPMT 3130 3130
9182 9182
PUMPS & MISC 030 030
77 74
$4 $4
SPACE COOL 22.50 27.10
6603 7953
$351 $423
SPACE HEAT 1.90 3.60
546 1063
$29 $57
VENT FANS 20.40 29.70
5965 8689
S317 $462
Credits Applied: None
Passing Criteria =1925 ,
Design .(including any credits) =1623
Passing requiresProposed Buiding cost to be at most 100.% of
Baseline cost. iiis Proposed Building is at 84.3"/0,
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Florida Building Code, Sixth Edition (2017) - Energy Conservation ASHRAE 90.1-20i3; Energy Cost Budget Option
3/4/2020 _ . , _ _ -; Page 5 of 16
External Lighting Compliance
Description
Category Tradable? Allowance Area or Length ELPA CLP
(W/Unit) or No. of Units (W) (w)
(Sgft or ft)
None
Project: RESERVE R.O.
Title: 2019-0183
Type: Office
(WEAFile: FL_ST_LUCIE_CO_INTL.tm3)
Lighting Controls Compliance
Acronym
Ashrae Description Area Design Min Compli-
ID (sq.ft) CP CP ance
ZONE 1
16 Office - Open Plan 979 13 1 PASSES
..ZONE 2
16 Office - Open Plan 959 _ . .. .. _ .. 9 .. ._. 1. _PASSES
ZONE 3
6 Toilet and Washroom 1.139 8 1 PASSES
PASSES
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Florida Building Code, Sixth Edition (2017) -Energy Conservation ASHRAE 90.1-2013 - Energy Cost Budget Option
3MM20 Page 6 of 16
Project: RESERVE R.O.
Title: 2019-0183
Type: Office
(WEA File: FL ST LUCIE CO INMtm3)
System Report Compliance
AIIU I ZONE 1
Constant Volume Air Cooled No. of Units
Split System <65000 Btu/hr
I
Component
Category
Capacity Design Eff Design IPLV
Comp-
Eff Criteria IPLV Criteria
Iiance
Cooling System
Air Conditioners Air Cooled
34100 16.00 13.00 8.00
PASSES
Split System <65000 Bm/h
Cooling Capacity
Heating System
Electric Furnace
27296 1.00 1.00
PASSES
Air Handling
Air Handler (Supply) -
1200 0.80 0.82
PASSES
System -Supply
Constant Volume
AHU 2 ZONE 2
Constant Volume Air Cooled No. of Units
Split System <65000 Btu/hr
I
Component
Category
Capacity Design Eff Design IPLV
Comp-
Eff Criteria IPLV Criteria
Iiance
Cooling System
Air Conditioners Air Cooled
41100 16.00 13.00 8.00
PASSES
Split System <610011 Btu/h
Cdoling'Capacity
`
Heating System
Electric Furnace
27296 1.00 1.00
PASSES
Air handling
Air Handler (Supply) -
1400 0.80 0.82
PASSES
System -Supply
Constant Volume
ABU 3 ZONE 3
Constant Volume Air Cooled No. of Units
Split
System <65000 Btu/br
1
Component
Category
Capacity Design
Eff Design IPLV
Comp-
Eff
Criteria IPLV Criteria
Iiance
Cooling System
Air Conditioners Air Cooled
41100 16.00
13.00 8.00
PASSES
Split System <65000 Btu/h
Cooling Capacity
Heating System
Electric Furnace
27296 1.00
1.00 '..PASSES
Air Handling
Air Handler (Supply) -
1400 0.80
0.82
PASSES
System -Supply
Constant Volume
f I PA$$E$
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Florida Building Code, Si)dh Edition (2017) - Energy Consgvation ASHRAE 90.1-2013 - Energy Cost Budget Option
3/4/2020 - : Page 7 of 16
IDescription Installed Size Design Min Design Nfin Category Comp
No Eff Eff IPLV IPLV Hence
Project: RESERVE R.O.
Title: 2019-0183
Type: Office
(WEA File, FL ST LUCEE CO
INTI-tm3)
Water Heater Compliance
Description Type
Category Design Min Design Max Comp
Eff Eff Loss Loss Hance
Water Heater I Electric water heater -c— 12 [kW] 0.97 0.96
PASSES
PASSES
Piping System Compliance
Category
Pipe Dia Is Operating Ins Cond
Ins Req Ins Compliance
[inches] Runout9 Temp [Btu-in/hr Thick
[in] Thick [in)
[F] SF.FI
None
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Florida Building Code, Sixth Edition (2017) - Energy Conservation ASHRAE 90.1-2013 - Energy Cost Budget Option
3/4/2020 Page 8 of 16
Mandatory Requirements (as applicable) Mandatory requirements compiled by US Department
of Energy and Pacific Northwest National Laboratory.
Adopted with permission
Topic Section
Component
Description Yes
N/A Exempt
ramp—%R'—=sRF"�.
7II b"o; etl U•e56Is1S i�8 '
Insulation 5 81 2
Envelope
Below -grade wall Insulation installed per
manufacturerMUAs instructions.
Insulation 5.8.1.2
Envelope
Stab edge insulation installed per manufadurer5
®
E-
e-s Instructions.
Insulation 5.5.3.5
Envelope
Slab edge insulation deptMength.
®
if
13
Insulation 6.4.4.1.5
Envelope
Bottom surface of floor structures incorporating
®
of
13
radiant heating insulated to >=R-3.5.
Fenestration 5.5.3.6
Envelope
U-fader of opaque doors associated with the
®
�I
E
building thermal envelope meets requirements.
SYSTEM_SPECIFIC 6.5.1, 6.5.1.1,
Mechanical
Air economizers provided where required (and not
6.5.1.3.6.5.1.4
exempted), meet the requirements for design
capacity, control signal, ventilation controls,
h1litHimit shutoff, integrated economizer control,
and provide a means to relieve excess outside air
'
during operation.
SYSTEM_SPECIFIC 6.5.1, 6.5.12,
Mechanical
Water economizers provided where required,
®
BY
❑
6.5.1.3
meet the requirements for design capacity,
maximum pressure drop and integrated
SYSTEM —SPECIFIC 6.5.1.5
Mechanical
economizer control.
Economizer operation will not increase heating
®
EY
energy use during normal operation.
SYSTEM —SPECIFIC 6.5.2.2.1
Mechanical
Three -pipe hydronic systems using a common
®
BY
13
return for hot and drilled water are not used.
':SYSTEM_BPECIFIC"':65223•"`'- '-'Mechanical
•'"HyEronictieafpump
systems ednneded'toa°'
�
��
'
common water loop meet heat rejection and heal
additionrequirements.
SYSTEM —SPECIFIC 6.5.1.E
Mechanical
re
Water economizer specified on hydronfe ceo8ng
and humidification systems designed to maintain
Inside humidity at>35 A°F dewpoint it an
economizer is required.
SYSTEM —SPECIFIC 6.5.3.1.1
Mechanical
HVAC fan systems at design conditions do not
exceed allowable fan system motor nameplate hp
SYSTEM_SPECIFIC 6.5.3.1.2
Mechanical
or fan system bhp.
HVAC fan motors not larger than the first available
motor size grealerthan the bhp.
HVAC 6.5.6.1
Mechanical
Exhaust air energy recovery on systems meeting
Tables 6.5.6.1-1. and 6.5.6.1-2.
SYSTEM SPECIFIC 7.4.2
Mechanical
Service water heating equipment meets efficiency
ElL�
,�,/
requirements.
SYSTE161_SPECIFIC 7.5.2
Mechanical
, Service water heating equipment used for space
heating complies with the service water heating
equipment
Insulation 5.8.12
Envelope
bove-g ode warequirements.
sulat
Above -grade wall insulation Installed per
manufacturerat-s instructions.
.
Insulation 5.8.1.2
Envelope
Floor insulation installed per manufadurerfiETMs
®
0
.. .:
Instructions:
Controls'10.4.3
Mechanical
.Elevators are_ designed with the proper lighting,
.,[3
-
-
ventilation power, and standby mode.
.�
,®
SYSTEM SPECIFIC 6.4.1.1. 6.8.1-7a
Mechanical
Heat Rejection Equipment. Minimum Efficiency0
�®
Requirement Table 6.8.1-7
p.
SYSTEM SPECIFIC 6A.1.1. 6.8.1-7b
Mechanical
Heat Rejection Equipment: Minimum Efficiency
Requirement Table.6.8.1-7 •".; "'
_.O
"
:0
SYSTEM SPECIFIC 6.4.1.1, 6.8.1 7e
Mechanical :
.Heat Rejection Equipment; Minimum EiBdency ..fQ:,®
....
RegmremenlTabie a 8 l 7
SYSTEM SPECIFIC • 641 1, 6.8.1-7d
Mechanical
Heat Rejection Equipment Minimum Ef idenq
:®
Requirement Table ll8.1,7 . .
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Florida Building Code, Sixth Edition (2017) - Energy Consery on ASHRAE 90.1-2013 -;Energy Cost Budget Option
3/4/2020 Page 9 of 16
SYSTEM SPECIFIC 6.5.5.3
Mechanical Centrifugal fan open-cirru8 cooling towers having
u LV
combined rated capacity >=1100 gpm meets
minimum efficiency requirement: Table 6.8.1-7
SYSTEM —SPECIFIC 6.4.1.1, 6.8.1-7e
Mechanical Heat Rejection Equipment Minimum Efficiency
❑ 5
Requirement Table 6.8.1-7
SYSTEM SPECIFIC 6A.1.1, 6.8.1-7f
Mechanical Heat Rejection Equipment: Minimum Efficiency
�/
❑ 1.Y 13
Requirement Table 6.8.1-7
SYSTEM SPECIFIC 6A.1.1, 6.8.1-79
Mechanical Heat Rejection Equipment, Minimum Efficiency
® Ed ❑
Requirement Table 6.8.1-7.
SYSTEM SPECIFIC 6A.1.1, 6.8.1-7h
Mechanical Heat Rejection Equipment: Minimum Efficiency
® L9 13
Requirement Table 6.8.1-7
SYSTEMSPECIFIC 6A.1.1, 6.8.1-Ti
Mechanical Heat Rejection Equipment: Minimum Efficiency
�..�/
® LY
Requirement Table 6.8.1-7
SYSTEM 7.5.3
Mechanical Gasfired water -heating equipment installed in
❑ ❑
—SPECIFIC
new buildings: where a singular piece of
water -heating equipment >= 1.000 kBhdlt serves
the entire building, thermal efficiency must be >_
90 Et
Where multiple pieces of water -heating equipment
serve the building with combined rating is >=
1,000 kBtulh, the combined
InpuFrapacity-weighted-average thermal
efficiency , thermal efficiency must be >= 90 EL
Exclude input rating of equipment in individual
dwelling units and equipment m 100 kBtwb.
Plan Review 42.2, 5A.3.1.1, 5.7
Emrelope Plans and/or spadfica6ona pro6ide 11 all irrformIalion
®- ® ® - -
- -
with which compliance can be determined for the
building envelope and document where
exceptions to the standard are claimed.
Plan Review 42.2, SAA.2.1,
Mechanical Plans, specifications, and/or calculations provide
6.72
all information with which compliance can be
determined for the mechanical systems and,
:,:
-"equip"air rd'dacurierdwhere exix'ptiona to the
`.•. '.
'.:.:,
standard are claimed. Load calculations per
acceptable engineering standards and
handbooks.
Plan Review 42.2. 7.7.1,10.42
Mechanical Plans, specifications, and/or calculations provide
all information with which compliance can be
determined for the service water heating systems
_ and equipment and documentwhere exceptions
to the standard are claimed. Hotwatersystem
sized per manufacturer's sing guide.
Plan Review 4.2.2. 8.4.1.1.
Project Plans, specifications, and/or calculations provide
8.4.1.2. 8.7
all Information with which compliance can be
determined for the electrical systems and
equipment and document where exceptions are
claimed. Feeder connectors sized in accordance
with approved plans and branch circuits sized for
maximum drop of 3%.
Plan Review 42.2, 9A.3, 9.7
Interior Lighting Plans, specifications, and/or calculations provide
all Information with which compliance can be
determined for the interior lighting and electrical
'systems and equipment and documentwhere
-
- exceptions to the standard are claimed.
.Information provided should include interior
Plan Review 9.7 Exterior Lighting Plans specifications, and/or calculations provide ® ® ® ,
- all information with which cmmpliance can be
idetermined for the. exterior lighting and electrical
. systems and equipment and document where - -
exceptions to the standard are claimed.. -
_ :Infomabon provided should indpde eztedor
'.lighting power calculations, wattage of bulbs and
- ballasts, transformers and control devices.
Insulation 6.8.1.7.3 Envelope Insulation in contaii with the ground has <-0.3%
water absorption rate, perASTM 0272.
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3/42020 Page 10 of 16
Atr LeaKage 5.4.3A
Envelope Vestibules are installed where buhlding entrances
U u
U
separate conditioned space from the exterior, and
meet exterior envelope requirements. Doors have
self -dosing devices, and are >=7 0 apart (>=16 fit
apart for adjoinging floor area >= 40000 sq.11.).
Vestibule floor area <=7 50 sq.8. or 2 percent of
the adjoining conditioned floor area.
HVAC 6.4.3.4A
Mechanical Ventilation fans>0.75 hp have automatic controls
to shut off fan when not required.
HVAC 6.4.3.8
Mechanical Demand control ventilation provided for spews
>500 fl2 and >25 people/1000 ire occupant
density and served by systems with air side
economizer, auto modulating outside air damper
control, or design airflow>3,000 crm.
HVAC SAA.1.4
Mechanical Thermally ineffective panel surfaces of sensible
® ®
❑
healing panels have insulation >= R-3.5.
HVAC 6.5.2.3
Mechanical Dehumidification controls provided to prevent
reheating, recooling, mixing of hot and cold
airstreams or concurrent heating and cooling of
the same airstream.
SYSTEM SPECIFIC 6.5.3.1.3
Mechanical Fans have efficiency grade (FEG)>= 67. The total
13
efficiency of the fan at the design point of
operation <=15% of maximum total efficiency of
the fan.
SYSTEM_SPECIFIC 6.5.3.5
Mechanical Motors for fans r--1112 hp and <1 hp are
electronically -commutated motors or have a
minimum motor efficiency of 70%. These motors
are also speed adjustable for either balancing or
remote central.
- ---"
SYSTEM -SPECIFIC 6.4.3.10 -. -- -
-Mechanical - -- "DDC system installed and capable of providing-
control logic including monitoring zone and system
demand for fan pressure, pump pressure, heating,
and cooling; transferring zone and system
demand information from zones to air distribution
system controllers and from air distribution
systems to heating and cooling plant controllers;
automatically detecting andalerbng system:•re;.
::::.%.
opemtorwhen zones and systems excessively
drive the reset logic allow operator removal of
zone(s) from the reset algorithm; AND capable of
trending and graphically displaying Input and
output points.
SYSTEM -SPECIFIC 6.5.32.3
Mechanics[ Reset static pressure setpoint for DDC controlled
VAV boxes reporting to central controller based on
the zones requiring the most pressure. Controls
provide: zone damper monitoring or indicator of
static pressure need; autodetection, a[ann, and
operator override of zones excessively triggering
reset login.
SYSTEM -SPECIFIC 6.5.3.3
Mechanical Multiple zone VAV systems with DDC of Individual
❑ ®
❑
zone boxes have static pressure setpoint reset
controls.
SYSTEM -SPECIFIC 6.5.3A
Mechanics[ Multiple zone HVAC systems have supply air
temperature reset controls.
SYSTEM -SPECIFIC 6.5A.1
Mechanical System tumdown requirement met through
. ' ;multiple single -input boilers, one or more
"
"
modulating boilers, or a combination o1
..single
-input and modulating boilers. -
Boiler Input between 1.0 MBtulh and 5 MBhuh has
'3:1 tumdown ratio, broiler input between 5.0
"
MBtWh.and 10 MBturyh has,4:1 turndown ratio,
boiler input? 10.0 MBtu/h has 5:1 turndown ratio.
HVAC 6.5A.2
Mechanical HVAC pumping systems>10 hp designed. for
0 0
variable fluid flow.
"
^.
SYSTEM_SPECIFIC 8.5.4.3, 6.5A.3.1,
Mechanical _. Fluid flow shutdown in pumping systems to
.
0.5.4.32
'mu Up chillers or boilers when systems eve shut
Up
•
El...
..
SYSTEM_ SPECIFIC 6.SA.4.
Mechanical Temperature reset by representative building
-0 ,®
"
`<)oads'in:pumping systems>10 hp for chiller and
-.
boiler systems >300,000 Btulh.
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" " .' " 'Page 11 of 16
SYSTEM SPECIFIC 6.5.45.2
Mechanical
Hydronic heat pumps and water-cooled unitary air
conditioners with pump systems>5 hp have
controls or devices to reduce pump motor
demand.
SYSTEM 6.6.4.6
Mechanical
Chilled -water and condenserwater piping sized
❑
®
❑
—SPECIFIC
according to design flow rate and total annual
hours of operation (Table 6.5.4.6).
SYSTEM 6.5.5.2.1
Mechanical
Fan systems with motors>=7.5 hp associated
13
13
❑
—SPECIFIC
with heat rejection equipment to have capability to
operate at 2/3 of full -speed and auto speed
controls to control the leaving fluid temperature or
condensing temp/pressure of heat rejection
device.
SYSTEM 6.5.52.2
Mechanical
Multicell heat rejection equipment with
❑
—SPECIFIC
vadable,speed fan drives installed that operate
the maximum number of fans aimed that comply
with manufacturers spece and control all fans to
the same fan speed required for the instantaneous
cooling duty.
SYSTEM_SPECIFIC 6.5.5.2.3
Mechanical
HA
❑
HVAC 6.5.7.1.1
Mechanical Kitchen hoods>5,000 cfrn have make up air
>=50%of exhaust air volume.
HVAC 6.5.7.1.1
Mechanical Kitchen hoods>5,000 cim have make up air
>=50%of exhaust air volume.
SYSTEM_SPECIFIC 6.5.7.1.2
Mechanical Conditioned supply air to space with a kitchen
❑
13
El
hood shall not exceed the greater of a) supply flow
required to meet space heaflng or cooling, or b)
hood exhaust flow minus the available air transfer
.. ._. _... .. .._
.,, ._ _... .. from available spaces:_.....__, .. ....... .. ..
..
._. __....
....
SYSTEM_SPECIFIC 6.6.7.1.3
Mechanical Ktchen hoods with a total exhaust airflow rate
>5000 rim meet replacement air, ventilation
system, or energy recovery requirements shown in
Table 6.5.7.1.3.
SYSTEM_SPECIFIC 6.5.7.1.4
Mechanical Kitchen hoods with a total exhaust airflow rate
>5000 trim meet replacement air, ventilation
sy'stein. ' or energy mcovery_regairements:"
HVAC• 6.5.7.2
Mechanics[ Fume hoods exhaust systems >=6 000 rim have
VAV hood exhaust and supply systems, direct
make-up air or heat recovery.
HVAC 6.5.8.1
Mechanical Unendosed spaces that are heated use only
radiant heat.
SYSTEM SPECIFIC 7.5.1
Mechanical Combined space and water heating system not
allowed unless standby loss less than calculated
maximum. AHJ has approved or combined
connected load <150 k6tuAh.
Controls 8.4.2
Project At least 50% of all 125 volt 15- and 20-Amp
receptacles are controlled by an automate control
device.
Other Equipment 10.4.1
Mechanical Electric motors meet requirements where
applicable.
HVAC 6A.3.32
Mechanical Setback controls allow automate restart and
temporary operation as required for maintenance.
SYSTEM_SPECIFIC 6.4.3.3.3
Mechanical Systems with setback controls and DOC include
❑
❑
13
opOmum start controls. Optimum start algorithm
considers mass radiant slab floortemperature.
SYSTEM SPECIFIC 6.4.3.3.4
Mechanical Zone Isolation devices and controls.
13
®
Q
Wattage 9.4.2
Exterior Lighting Exterior lighting power Is consistent with what Is
13
13
❑
' shown on the approved lighting plans,
..
demonstrating proposed watts are less than or
equal to allowed wags.
•"'�. �.
-
,
.�-
Insulation5.6.1.7
Envelope :Exterior insulation protected agatnstdamage,:�
sunlight, moisture, wind, landscaping and
•.
egdipmenl maintenance BetivNes
'
HVAC 6.4.3.7
McUlant I Freeze pmteGipn and snowNce melting system
❑
Q
sensors fort re connection to controls.. .
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caulked, gasketed, and/or taped in an approved
manner, except in semihealed spaces In dimale
zones 1-6.
Air Leakage 5.4.3.2
Envelope Factory -built and site -assembled fenestration and
®
❑
❑
doors are labeled or certified as meeting air
leakage requirements.
Fenestration 5.8.2.1. 5.8.2.3,
Envelope Fenestration products rated (U-factor, SHGC, and
❑
5.8.2.4, 5.8.25
VT) in accordance with NFRC or energy code
defaults are used.
Fenestration 5.8.2.2
Envelope Fenestration and door products are labeled, or a
signed and dated certificate gating the U-factor,
SHGC, VT, and air leakage rate has been
provided by the manufacturer.
SYSTEM_SPECIFIC 7.4.4.1
Mechanical Temperature controls installed on service water
❑
®
❑
heating systems (<=120A°F to maximum
temperature for intended use).
SYSTEM_SPECIFIC 7AA.2
Mechanical Automatic time switches Installed to automatically
®
®
❑
switch off the recirculating hot-water system or
heat trace.
SYSTEM SPECIFIC 7.4.6
Mechanical Heat traps installed on non -circulating storage
watertanks.
HVAC 6.4.1 A. 6.4.1.5
Mechanical HVAC equipment efficiency verified.Non-NAECA
HVAC equipment labeled as meeting 90.1.
SYSTEM SPECIFIC 6.4.1.62
Mechanical PrAC and FTHP with sleeves 161n. by 42 in.
labeled for replacement only.
HVAC 6.4.3.4.1
Mechanical Stair and elevator shaft vents have motorized
❑
❑
dampers that automatically dose.
WAD - - - - - 6.4.3.42, 6A.3.4.3.
Mechanical . Outdoor air and exhaust systems have motorized
..�.
dampers that automatically shut when not in use
and meet maximum leakage rates. Check gravity
dampers where allowed.
HVAC 6.4.3.4.5
Mechanical Enclosed parking garage ventilation has automafic
❑
❑
❑
contaminant detection and rapacity to stage or
modulate fans to 50% or less of design capacity.
HVAC:.,..".., .,. �.6.6.32.1
Mechanical.s.,,:AXcOolirg systems?e75-kBt0,(>=:65kBtu/h
®
;
. _0 ..,,; ,
effective 1/2016) and chilled -water and
evaporative cooling fan motor hp>=AV, designed
to vary indoor fan allow as a function of load and
comply with operational requirements.
HVAC 6.4.4.1.1
Mechanical Insulation exposed to weather protected from
damage. Insulation outside of the conditioned
space and associated with cooling systems is
vapor retardant
HVAC SAA.12
Mechanical HVAC ducts and plenums insulated. Where duds
or plenums are installed in or under a slab,
verification may need to occur during Foundation
Inspection.
HVAC 6.4.4.1.3
Mechanical HVAC piping insulation thickness. Where piping rs
Installed in or under a slab, verification may need
to occur during Foundation Inspection.
HVAC 6.4.4.2.1
Mechanical Duds and plenums sealed based on static
❑
❑
❑
pressure and location.
SYSTEM SPECIFIC 6.4.4.2.2
Mechanical Ductwork operating >3In. water column requires
air leakage testing.
SYSTEM —SPECIFIC 6.5.2.1
Mechanical Zone controls can limit simultaneous heating and
cooling and sequence heating and moling to each
SYSTEM SPECIFIC 6.52.22
zone.
Medhanical .Two -pipe hydrodc systems using a common
distribution system have controls to allow a
"
Aeadband >=15 A°F., allow operation in one mode
:for at least 4 bra before changeover, and have
rest controls to limit healing and, cooling supply
temperature to <=30 AT. '
WAD 6.5.2A.1
Mechanical Humidifiers. with airstream mounted preheating
❑
❑
.®
jackets have preheat auto -shutoff value set to
activate%When. humidification is not required.
HVAC 6.5.2.4.2
Mechanical .IHumidlficapon system dispersion tubehat
❑
.:®
:� .
'
`surfaces in the airstreams of duos orair-handling
'
units insulated >= R-0.5.
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SYSTEM SPECIFIC 6.5.3.2.2
Mechanical
VAV fans have static pressure Sensors positioned
so selpoinl <-1.2 in. w.c. design pressure.
SYSTEM -SPECIFIC 6.5.4.5.1
Mechanical
Two-posi0on automatic wive Interlocked to shut
off water Dow when hydronlc heat pump with
pumping system >10 hp is off.
SYSTEM SPECIFIC 6.5.6.2
Mechanical
Condenser heat recovery system that can heat
❑
water to 85 A°F or provide 60% of peak heal
rejection Is installed for preheating of service hot
water.
HVAC 6.5.7.1.5
Mechanical
Approved field test used to evaluate design air
flow rates and demonstrate proper capture and
containment of kitchen exhaust systems.
SYSTEM SPECIFIC 6.5.9
Mechanical
Hot gas bypass limited to:
<=240 kBturh 8015°%
>240 kBtulh W 10%
HVAC 6.4.3.9
Mechanical
Heating for vestibules and air curtains include
13
13
automatic controls that shut off the heating system
'
when outdoor air temperatures > 45F. Vestibule
healing systems controlled by a thermostat in the
vestibule with setpoint <= 60F.
Controls 6.5.10
Mechanical
Doors separating conditioned space from the
outdoors have controls that disablalreset heating
and cooling system when open.
Controls 9.4.1.1
Interior Lighting
Automatic control requirements prescribed in
Table 9.6.1, for the appropriate space type, are
Installed. Mandatory lighting controls (labeled as
'REQ) and optional choice controls (labeled as
'ADDV and'ADD2) are Implemented.
Controls 9AJA Interior Ughting Independent lighting controls installed per
.._ ........ ...... _ .. ....... _approved lighting plans and all manual_ controls „
readily accessible and visible to oaupams.
Controls 9.4.12 Interior Lighting Parking garage lighting is equipped with required ® 0
ighfino controls and daylight transition zone
Controls
9.4.1.11 Interior Lighting
Daylight areas under skylights and mof monitors
that have more than 150 W combined input power
• �
.;for9enerallghgn9,are controlled,by
- - -
photownUols.. -
_
Controls
9.4.1A Exterior Lighting
Automatic lighting controls for exterior lighting
installed.
Controls
9.4.1.3 Interior Lighting
Separate lighting control devices for specific uses
installed per approved lighting plans.
Wattage
9.62 Interior lighting
Additional interior lighting power allowed for
special functions per the approved lighting plans
and is automatically controlled and separated from
general lighting.
Wattage
9.6.4 Interior Lighting
Where space LPD requirements an; adjusted
❑
based on room cavity mdos, dimensions are
consistent with approved plans.
Insulation
5.5.3.1 Envelope
Roof R-value. For some ceiling systems,
verification may need to occerduring Framing
Inspection.
Insulation
5.8.12, 5.8.1.3 Envelope
Roof Insulation Installed per manufacturerAHTMs
Instructions. Blown or poured loose -fill insulation
is installed only where the roof slope is <=3 in 12.
Insulation
5.8.1.1 Envelope
Building envelope insulation is labeled with
R-value or Insulation certificate has been provided
listing R-value and other relevant data.
Insulation
5.8.1.9 Envelope
Building envelope. insulation extends over the fug
❑
El
0
area of the component at the proposed rated R or
.
.
U value -. ..
.
Insulation
5.8.1.4 Envelope
;Eaves are baffled to deflect air to above the .13
:®
❑
-
insulation.
Insulation
5.6.1.5 Envelope
Insulation is installed in substantial contact with
❑
1:1
.13
the inside surface separating conditioned space
-
from unconditional space
Insulation
5.8.1.6 Envelope
'Recessed equipment Installed in building
Eln
envelope assemblies does not compress the:
: Insulation
� 5.611.7.1 Envelope
Attics and mechanical moms have Insulation
Vale: wham adjacent to attic or equipment
h
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3/4/2020 Page 14 of 16
Insulation 5.8.1.7.2 Envelope Foundation vents do not interfere with insulation.
Insulation 5.8.1.8
SYSTEM_SPECIFIC
6.4.3.1.1
HVAC
6.4.3.1.2
HVAC
6.4.3.2
HVAC
6.4.3.3.1
SYSTEM SPECIFIC
6.4.3.5
HVAC
6.4.3.6
Envelope
Mechanical
Mechanical
Mechanical
Mechanical
Mechanical
Mechanical
HVAC
6.4.3.6
Mechanical
- -
SYSTEM —SPECIFIC
-7.4.4.3 -
Mechanical
SYSTEM —SPECIFIC
7.4.4.4
Mechanical
SYSTEM —SPECIFIC 7A.5.1 Mechanical
Insulation intended to meet the roof Insulation
❑ ❑
requirements cannot be Installed on top of a
suspended ceiling. Mark this requirement
compliant if insulation is Installed accordingly.
Healing and cooling to each zone is controlled by
a thermostat control.
Thermostatic controls have a 5 A°F deadband.
Temperature controls have setpoint overlap
® ® '®
restrictions.
HVAC systems equipped with at least one
automatic shutdown control.
Heat pump controls prevent supplemental electric
resistance heat from coming on when not needed.
When humidification and dehumidification are
❑ ❑
provided to a zone, simultaneous operation is
prohibited. Humidity control prohibits the use of
fossil fuel or electricity to produce RH > 30% In the
warmest zone humidified and RH < 60% in the
coldest zone dehumidified.
When humidification and dehumidification are
❑ ❑
provided to a zone, simultaneous operation is
prohibhed. Humidity control prohibits the use of
fossil fuel or electricity to produce RH > 300A in the
wannest zone humidified and RH < 60% in the
coldest zone dehumidified.
Public lavatory faucet water temperature <=110A
®- -® ®
'F.
Controls are installed that limit the operation of a
recirculation pump installed to maintain
temperature of a storage tank.
Pool healers are equipped with onloff switch and
SYSTEM —SPECIFIC
7.4.52
Mechanical
Pool covers are provided for heated pools and
pools healed to>90A`F have a cover>=R-12.
SYSTEM SPECIFIC
7.4.5.3
Mechanical
Time switches are installed on all pool heaters and
pumps.
Wattage
9.2.2.3
Interior lighting
Interior installed lamp and fixture lighting power Is
consistent with what is shown on the approved
'
lighting plans, demonstrating proposed watts are
less than or equal to allowed watts.
SYSTEM_SPECIFIC
7.4.3
Mechanical
All piping in circulating system Insulated
0
0
SYSTEM SPECIFIC
7.4.3
Mechanical
First 8 it of outlet piping is insulated
❑
❑
SYSTEM —SPECIFIC
7.4.3
Mechanical
All heal traced or externally heated piping
insulated
corn fastening included on the plans or
specifications for projects >=50,0011III
'
Plan Review .,
6.72.4
:Mechanical
.: Detailed instmdions for HVAC systems
, 0
13
El
.
�commissionin9 included on the plans or
specifications for proje6ts>?50,000 U.
Post Construction
6.7.2.1
>Furnished HVAC as-buift drawings submitted:.®
®
❑
'
.Mechanical
within 90 days of system acceptance..
Post Construction
6.7.2.2
Wachanicai
:Furnished O&M manuals for HVAC systems within
13
®
.,13
90 days of system acceptance.
Post Construction
,61.2.3
� :Mechanical
.,Fin air and/or hydronie system balancing report is
�
:�
•
provided forNVAC systems serving zones >5,000
1 11:2 of conditioned area.
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3/4/2020 "..Page 15 of 16
HVAC 6.7.2.4 Mechanical FIVAC control systems have been tested to ensureEJ
0
0
proper operation, calibration and adjustment of
controls.
Post Construction 8.7.1 Interior Ughfing Furnished as -built drawings for electric power El
El
13
. systems within 30 days of system acceptance.
Post Construction 8.7.2 Interior Ughting Furnished O&M Instructions for systems and 1:1
El
1:1
equipment to the building owner or designated
representative.
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3/4/2020 ''Page 16 of 16
EnergyGauge Summit@ v6.00
INPUT DATA REPORT
Project Information
Project Namc RESERVE R.O.
Orientation:
0 Deg Clockwise. Walls &Windows i
Project Title: 2019-0183
Building Type:
be rotated accordingly
Office
Addrm: 8401 COMMRCIAL CENTER DR. Building ClassiBralion:
New Finished building
_
State: Florida
No.of Stoner:
I
Zip: 34986
GronArea:
3076 SF
Owner: -
Zones
No Acronym Description
Type Area
Multiplier Total Area
Ir0
Ir0
1 ZONE 1 Zone 1
CONDITIONED 978.0
1 978.0
❑
2 ZONE2 Zone2
CONDITIONED 959.0
1 959.0
❑
3 ZONE Zone3
CONDITIONED 1139.0
1 1139.0
❑
Spaces
No Acronym
Description
Type
Depth
Width
Height
Multi Total Area TobdVolume
[it]
[it]
[ftj
plier IS11 fell
In Zone: ZONE I
I ZONE I
ZONE I
Office-Opeoplan
10.00
97.90
9.00
1 978.0
8902.0
❑
In Zone: ZONE 2
1 ZONE2
ZONE 2
Office-Opeaplan
10.00
95.9D
9.00
1 959.0
8631.0
❑
In Zone.... ZONE 3.
-
-i
I ZONES
ZONES
TafletandWashroom
10.00
113.90
9.06
1130.6
10251.6
Lighting
lgp
TYR
tconrY ,'. .....
. lqo.of
Wattsper .
.Pomr...
Noof .
.... ..
Luminaires
tutaba re
Ctri—
PU
In Zone: ZONE I
In Spam: ZONE I
I
LED
General Lighting
16
49
794
Occupancy sensor without
10
0
Daylighting
2
LED
General Lighting
3
31
93
Occupancy sensor without
3
13
Dayliglaing
InZonm ZONE
IDSpace: ZONE 2
I
LED
General Lighting
4
49
196
Occupancy sensor without
2
13
Daylighting
2
LED
General Lighting
6
31
196
Occupancy senior without
3
0
Daylighting
3
LED
General Lighting
25
25
625
Occupancy censor without
4
11
DayUgWug
In Zone: ZONE
In Spam ZONE 3
1
LED
General Lighting
3
49
147
Occupancy sensur without
1
11
Daylighdog
2
LED
General Lighting
12
31
372
Occupancy sensor without
4
11
Daylighting
3 LED General Lighting 8
25 200 Occupancy sensor without 2
❑
Daylighting
4 LED General Lighting 1
70 70 Occupancy sensor without 1
❑
Daylighting
Walls (Walls will be rotated clockwise by building rotation value)
No
Description Type Width BE(Effm) Multi
Area Orientation Conductance Heat
Dem. R-Value
IR] IB] plier
Ian IBtuthr. sf. FI Capacity
Iihfdj Ihsf.FBtuj
IBtufsLF]
In Zone:
ZONE 1
"I"zone
1'"
"" 4"Btiek'2a4Q16' 65.00 "'10.00 1 "'65D.0
"'North '0.1043 8.982 `--'67.36""'
9.6- ❑
oc+Rl lBatV05"
Gyp
2
Zone 1
4" Brick /2x4Q16" 25.30 10.00 1
253.0 North 0.1043 8.982
6736
9.6 ❑
oc+RIIBa0/0.5"
Gyp
3
Zone I
4" Brick2x4®16" 37.70 10.00 1
377.0 North 0.1043 8.982
6736
9.6 ❑
,
Gyp
In Zone:
ZONE 2
1
Zone2
4"Brick 2x4Q16" 28.90 10.00 1
289.0 North 0.1043 8.982
67.36
9.6 ❑
octRllBaV105'
Gyp
2
Zone
4- Brick 2x4Q16" 65.00 10.00 1
650.0 North 0.1043 8.992
6736
9.6 ❑
oc*RllBatV0.5'
Gyp
3
Zone
4- Brick /2x4Q16' 16.60 10.00 1
166.0 North 0.1043 9.982
67.36
9.6 ❑
o *RllBa0/0.5'
Gyp
Windows (Windows will be rotated clockwise by building rotation value)
No Description Orientation Shaded D
SHGC Vis.Tra W H(Eifm) Multi
Total Area
Intolhr atF]
I(fl III] plier
IS9
3=020
3
Io Zone: ZONE I
In Wall: East Wall
1 Zone IN
o0h
No
0.1000 0.25
0.76
2.80 5.00 3
42.0
❑
In Wall: North Wall I
1 Zone IN
orth
No
0.1000 0.25
0.76
2.80 5.00 1
14.0
❑
Inwall: West Wa111
I Zone IN
orth
No
0.1000 0.25
0.76
2.80 5.00 1
14.0
❑
In Zone: ZONE 2
In Wall: East Wa112
1 Zone 2N
orth
No
0.1000 0.25
0.76.
2.80 5.00 1
14.0
❑
In Wat: South Wall 2
1 Zone 2N
orth
No
0.1000 0.25
0.76.
2.80 5.00 1 _14.0
In Wall: West WaD 2
1 Zone 2N
orth
No
0.1000 0.25
0.76
2.80 5.00 1
14.0
Doors
No Description.. ..,,
,. Shzded7 Width .H(EHce) Multi
Area
Cond. „ Dem. Beat Cop.
,_.R Value
,type„_..
pHer- (sQ
[Dtohr. sL FJ pti/e1J @to)iL F]__jhsf.FBttt]°;'...
In Zone: ZONE 1
In Wall: North Wall 1
1 Zone 1
Solid core flush
No
3.00 7.20
1
21.6 0.3504 0.00 0.00
795
❑
(2.25)
Roofs
No Description
Type
Width
H(Effec) Multi
Area
Tilt
Cond. Heat Cap Dens.
R-Value
ID]
[it] plier
[s9
Ideg]
]Etulhr.Sf.F] lBta/sf.FI Ilblcl] I6aLFBtul
In Zone
Skylights
No Description Type
U SHGC VmTrans
W
H(EHec) Multiplier Area
TotalAren
[stu/br slF]
. .
fit]
IH] IS11
IS11
3/4/2020
In Zoom
In Roof:
Floors
No Description
Type
Width
H(Efflec) Multi Am Cond. Beat Cap. Dens.
R-Value
Iftl
In) pffer Isq [Btuthr. st. F] [BlaAt F1 Pbfcq
jhAF/Btul
In Zone: ZONE i
"I'll . ZIONE1.1
lAwH'Poncar&..__
97,80,.__
10.00 1 978.0 0.2681 34.00 113.33
3.73
floor, carpet and
rubberpad
In Zone. ZONE2
I ZONE 2
1 B. soil, concvve
95.90
10.00 1 959.0 0.2681 34.00 113.33
3.73
❑
Boor, carpet and
ru bb"d
In Zone: ZONE 3. . .
.
con� �i 7 -
: �95.96
10.00 959.0 '6.26il;'. 34.60 163-3
3.'7%3
Boor, carpetand
rubber pad
Systems
ABU I ZONE I
Constant VolumeAir Cooled Split No. Of Units I
System < 65M Btu/hr
Component Category
Capacity Efficiency IpLV
I Cooling System
34100.00 16.00 8.00
El
2 Heating System
27296.00 1.00
E3
3 Air Handling System -supply
1200.00 0.80
❑
3/4/2020 EnergyGauge Sum mitg v6.00
AHU2 ZONE2
Constant Volume Air Cooled Split
System <6500D Btu/hr
No. Of Units 1
Component Category
Capacity Efficieney
IPLV
1 Cooling System
2 Heating System
3 AG Handling System -Supply
41100.OD 16.00
27296.OD Loo
1400.00 0.80
8.00
❑
❑
❑
AHU 3 ZONE 3
Constant VolumeAir Cooled Split
System <65M Btu/hr
No. OfUoits I
.... Component ... Category- ..... .. ..._. ... ......
.... .. ....-Capacily... .....E Ifielency......
_IPLV _...
.. _. _, ..._....
..... __
I Cooling System
2 Heating System
3 Air Handling System -Supply
41100.O1) 16.00
27296.OD 1.00
1400.00 0.80-
8.00
❑
❑
❑
Equipment Category
Sac I.LNo Ef.
IPLV
Water Heaters
W-Heater Description CapatitfCap.Unit TIP Rt. Efficieoey
Lou
1 Electric water heater 30 [Gall
S [kW] 0.9700 [Et]
[Btulh]
❑
Ext-Lighting
Description Category
No. of Watbper Areaflen/No.of units Control Type Wattage
Luminaires Luminaire ISNUN01 [W]
Piping
No
Type
Operating Insulation
Nomonal pipe
Insulation
I,Rumout7
Temperatnrc Conductivity
Diameter
Thickness
[171 1Btu-10/bJEF]
lint
[in]
_.
.. _...... . ......... ...........Fenestration
Used...............__
_
Name
Glass Type No. of
Glass
SHGC VLT
Panes
Conductance
[Btu/b.sfF]
AApLbWnd13-:':ca1a1Jscr
Defined :' :. .. 1
.. .w0.1000 <:s0250D '-:-0.760D
^a.r.- -
. ,.. ay: .:,
.. >❑,.:>:a:
Materials Used
Mat No
Acronym
Description
Only RValue RValue Thickness
Conductivity
Density
Speci6eHeat
Used 11 aEF/Btu) Iftl
[Btu/b.RFI
lib/cq
[Btu/Ib.FI
o
BOARD,1/21N
178
Mat1178
CARPEDW/RUBBERPAD
Yes 1.2300
❑
265
Ma0265
Soil, 1 ft
No 2.0000 1.0000
0.5000
100.00
0.2000 '
❑
48
NM48
6 in. Heavyweight concrete
No 0.5000 0S000
1.0000
140.00
0.2000
❑
266
Mat1266
2z4Q16" oc+RI I Batt
No 8.3343 0.2917
0.0350
9.70
02000
❑
86
Matl86
BRICK, COMMON, 41N
No 0.9012 0.3333
0.4160
120.00
0.2000
❑
279
MatI279
Solid core Bush (225")
Yes 2.8537
❑
Constructs Used
No
Name
simple Mdisless ; Conductance
Ifeat Capacity . Density
RValue
Construct Comteuet Btu/hsf.Fj
tBtcJsM
pb/eq
IhefF/Btul
1012
4"Brick 2x4®16" oc+RIIBetr/0.5-Gyp No
No 0.10
3.98
67.36
9.6
❑
Layer Material
Material
Thickness
Framing
No.
IN
Fedor
1 86
BRICK, COMMON, 41N
03333
0.000
❑
2 266
2x4®16° oc+III l Batt
0.2917
0.000
❑
3 187
GYP OR PLAS BOARD,121N
0.0417
- 0.000
❑
No
Name
Simple
Messiest Conductance Hat Capacity
Density
RValac
Construct
Contract IBto/b4EF]
]Btu/sEF]
pblcll
IbsLF/Btul
1057
1 ft soil, concrete floor, carpet and rubber No
pad
No 027
34.00
113.33
3.7
❑
Layer Material
Material
Thickness;
Framing
No.
]B]
Factor
1 265
So0,1 it
1.0000
0.000
❑
:..2 - 48
Eta-Havyweigbtconcrete --
05000 —
0.000 — __
_ _
❑
3 178
CARPETW/RUBBERPAD
0.000
❑
No
Name
Simple
Mastless Conductance Heat Capacity
Density
RVelne
Construct
Contact BIR&AI l
lBtu/sLF]
Oblcq
1bsLFRital
1058
Solid care Rush (225)
No
Yes 035
2.9
❑
Layer Material
Material
Thickness
Framing
No.
1111
Factor
1 279
Solid core flush (225')
0.000
❑
c
Air System Sizing Summary for AHU 1
'roJect Name: RESERVE REALTY OFFICE 01/02/202
Impaled by: Kamm Consulting 09:47A1
Air System Information
Air System Name .... _.......... ........ .......... ...... ................ AHU 1
Equipment Class ..... .... _ ............._..._............. SPLTAHU
Air System Type ._ ......... _.._..................... _................ SZCAV
Sizing Calculation Information
Calculation Months ._..... _................ __............. ... Jan to Dee
SITJng Data ...... _... _._................................ _...... Calculated
Number of zones ... ._............... _..... ........... ......... __....... ........ ..... 1
Floor Area ...... _._...................... ......................_...._......._... 978.0 ft'
Location _ ......................................... PORT ST. LUCIE, Florida
Zone CFM Sizing _........ ...... ... Sum of space airflow rates
Space CFM Sizing ............. _. Individual peak space loads
Central Cooling Coil Sizing Data
Total coil load ...... __.._.... _._................ __........._..............
_.3.0
Tons
Load occurs al ...... ,...... ................... _....... _._....__
..... Jun 16o0
Total call load _ ........ ........._........................_..........._
_.....35.6
MBH
CA DB / WB_............................................_.._......._....
90.0 / 78.0 OF
Sensible call load ... _........... ... __....... _...........................
.._28.9
MBH
Entering IDS / WB.... ....... ..................... .... _._...........
72.6162.2 OF
Cog CFM at Jun 1500............... ..... ......... ............
..... 1528
CFM
Leaving IDS / WB... ......... _._ ................ _.... ........
.. 55.0154.1 OF
Max block CFM _..... .... ............ _._..................................
1528
CFM
Coil 'ADP......... _._......................... _ ...... ... ..... _............
__._ 63.1 OF
Sum of peak zone CFM ... ....... ........................................1528
CFM
Bypass Factor ..................................... _...... ...... ........
_..... _.0.100
Sensible heat ratio .... ....... ........... ....... ....._................
..... 0.812
Resulting RH............ ................... __......... ._ ....... ...................
..... 65 %
ft'lron..__................. ...___...._._.__._..._......_....._........
329A
Design supply temp ............ ....... ...... _...... _..............
__.._..... 55.0 OF
BTU/(hrflM....... ... _......._..__.__........ _....... .... _.........
_.. 36.4
Zone T-stat Check .......... ................. _............ _..........
_...Aot9 OK
Water flow @ 10.0 OF rise ....... _._._ ... _........... ...............
. wA
Max zone lemperatum deviation ...... _........................
_.. 0.0 OF
Central Heating Coil Sizing Data
.. Max col load ................. ............. ....... _ ..........12
8
MBH ..
_ Load occurs at...... ._
_........Dec 0500_ .
Cog CFM at Dec Will) ....... _........... ..... .........1528
_
CFM
...... ....._....
BTUf(hr fl� _ ....._....... .................. .................
.
13.1
Max cail CFM ._....... _..................... _.......... _.....................
1628
CFM
Ent DB/Lvg DB......... .......... _..... ._............................
64.91677 OF
Water flow @ 20.0 OF drop .... ................. ... .... .......
_.. NIA
Supply Fan Sizing Data
:.....:..:... . :. Actual max CFM:_::::.::::.:....c_...........::_.:a:_..-__._..
. ..
1628
:,CFM ::..:.:..:.
-_Fan motor BHR;::___;__,:_.::... .......
Standard CFM .... ............. __._....... _................................
1627
CFM
Fan motor kW.. .............. _........ _....... __.._...............
... .._..o.o0 kW
Actual max CFMfO'.... .................... _.__.......__............_.._1.66
CFMw
Fan static ............. .................................. __._...................
_.... 0.00 in wg
Outdoor Ventilation Air Data
Design airflow CFM __............... _ ................. _.....__......
log
CFM
CFM/person ._......... _.......................... ...................
_............. 10.87 CFM/person
CFM1IF_.._......... __.... _............... _... ............................
..._..._0.11
CFMll?
Hourly Analysis Program v5.01 � Page 1 of 3
Air System Sizing Summary for AHU 2
Project Name: RESERVE REALTY OFFICE 01/=020
Prepared by: Kamm Consulting 09.47AM
Air System Information
Air System Name .... .................. _....._...........................
AHU 2
Number of zones ._................_.........................
............................... 9
Equipment Class.._ .......... .............. _........
_... __.. SPLTAHU
Floor Area ..... _....... _...... _........
........ _... ............ _._........... 959.0 ft
Air System Type ....... _............... _............ _....
.............. SZCAV
Location ..................................
_ PORT ST. LUCIE, Florida
Sizing Calculation Information
Calculation Months ........ .............................
... Jan to Dec
Zone CFM Sizing __.................
Sum of space airflow rates
Sizing Data __....... _...... _._..............................
Calculated
Space CFM Sizing ..... .........
Individual peak space loads
Central Cooling Call Sizing Data
Total coil load .... _.... _............ _................ _._
.... _...... ............ 3.3
Tons
Load occurs at ___ _...................
__..... __.... _............ ._Jun 1600
Total coil load ._.... .......... .------ ............._......._._..._..........
39.0
MBH
OA DSI WB........... __........
.... ......... _... ........... 90.0178.0 °F
Sensible coil load ........... _....... _...................
_.._.........._.... 32.3
MBH
Entering DB/WB..... ..............
........................... _.... 72.0161.7 °F
Coil CFM at Jun 1500....... ............ _...............
.... ... ...... 1734
CFM
Leaving IDS / WB_.__.............................
_......... __..... 54.7 / 53.8 'F
Max block CFM... ..... ...... __ .... __._ .... ........
...... ___ 1734
CFM
CcIIADP.... ........ ___....... ....
_............ _................. ....... _...... 62.8 °F
Sum of peak zone CFM...................................................
1734
CFM
Bypass Factor .............. _..............
_.._..... ............... ........ .... 0.100
Sensible heal ratio._............._...._..._._..........._._.__...0.828
Resulting RH.:...... _..... .................
_............ ___....... _...... _ 66 %
fl'Rbn..._.................. __...__...__........... .......................
294.8
Design supply temp ...........
........... ............. ..... __..... ...... 55.0 °F
BTU/(hrft2) ...... _..... ...................... ......._................_.........._
40.7
Zone T-sfal Check .......... ........
_......... __........ _.......... ... 1 twill OK
Water flow @ 10.0 °F rise _ .... _... _ ......... _
......... .._......... WA
Max zone temperature deviation ............ ........ ......._... _.... _ 0.0 'F
Central Heating Coil Sizing Data
... Max coil load .......... .... _.................... ........................
.......... 13.5...
MBH..
.._..,...Load occurs .at...__... ..._...._
..... ......_..._._ __..,May 0600.._.. _... ...........
Coil CFM at May 0500.... _....... _....... _..............
__........ _ 1734
CFM
BTUI(br•ft2.)... .._........ ................
.... ._........... .... .............. ...... 14.1
Max coil CFM_......... _............. _...................................
1734
CFM
Ent. DB I Lvg DB_...............
_..... _.................... _ _.64.6 / 62.0 °F
Water flow @ 20.0'F drop ....... _... ...........
................... N/A
Supply Fan Sizing Data
771cua1 max CFM _.:::i -
. :....:..1734"CFM:-.
; ^:..Fan motor BHP."...
- .. .-
Standard CFM .._......... _.................. .................
_... ........_. 1733
CFM
Fan motor kW .... ...... _..............................
........... _._....... ... ..... 0.00—kW. --
Actual max CFMla'............. __........... ............
_.... ............ 1.81
CFM/RP
Fan static _.............. .....................
_._._.._........... _..................... 0.00 in wg
Outdoor Ventilation Air Data
Design airflow CFM ..... _..... ..... _._.... _................
_............... 108
CFM
CFM/person.......... _.........
_............ _.._................. _._1036 CFM/pemon
CFM/fF.................... ................... ... _.._..............
__._._........ 0.11
CFMtt'
Hourly Analysis Program v5.01 Page 2 of 3
Air System Sizing Summary for AHU 3
4oJect Name: RESERVE REALTY OFFICE 01/02202
4epared by: Kamm Consulting 09:47At
Air System Information
Air System Name .................. ... ....... ...... _................. AHU 3
Equipment Class ............... ............. ._...... ......... SPILT AHU
Air System Type .......... ............ _.... __...... ............... .SZCAV
Sizing Calculation Information
Calculation Months .................. _..... ........ __._.._.. Jan to Doe
Sizing Data ..... _... .............................. ............... Calculated
Numberof zones .................... _............. ..... .................................. 1
Floor Area .......... __....... ......._......... ........................... _._...... 1139.0 it'
Location ..... ....... ___............ _...... PORT ST. LUCIE, Florida
Zone CFM Sizing __................. Sum of space airflow rates
Space CFM Sizing .................Individual peak space loads
Central Cooling Coil Sizing Data
Total coil load ....... __............ _.......... _......
....... ...... ........ 3.1
Tons
Load occurs at ....... _............. _............. .............
__...__..Jun 1600
Total coil load...__ ........... ............... ....._......._......._........._37.7
MBH
OADB/WB_._..... _...................... _... .._......
_._........... 89.61 T7.9
`F
Sensible coil load .._... ............................... _......._..............27.2
MBH
Entering DB/WB.......................... .............................
72.6162.2
"F
Coil CFM at Jun 1600_............... ._..............
_.... __........ 1236
CFM
Leaving DB / WB........................... _... ____............
62.1 / 61.3
'F
Max block CFM ... ___._.................... _......._.......__........._.
123S
CFM
Coil ADP .... _.._............ _...............................
_....... ........ .... 49.9
°F
Sum of peak zone CFM.......... ........... _.......................
_..1236
CFM
Bypass Factor. ........... ........ _... _........ ...............
.... ... _.......... 0.100
Sensible heat ratio.__ .. ................... _...........
_........... .... 0.721
Resulting RH..._...... _.....__.....__-._.......
.._....... _._..... ............ 65
%
iffron..... _.... _........ ..... ........................__.__........._....._.._
362.7
Design supply temp ......... _..... ...........
........... .... ........... ._ 65.0
°F
BTU!(hrlt)_._.._._.................................... _..._.._..._......._33.1
Zone T-stat Check ......... ............ _._.
..... _...... ....... ..... 1 of 1
OK
Water flow @ 10.0 °F rise .......... _._....... .......
.............. . NIA
Max zone temperature deviation .... _....
....... _............. _._.... 0.0
"F
Central Heating Coil Sizing Data
..... Max will load,__ .... _....... ........ ...... ..... ......
_.... _.............. _7.6._MBH
..
_. Load occurs at ....... _.......... ........ .............
_.BTUI(hr•ft`)...._......
_.__..... ......... Dec 0900...
__......_. ...._. ..... .
Coil CFM at Dec 0900.................. ........ ..........
_......... _. 1238
CFM
... _.............. .... _..... ..... ...................
_...__... ...... 6.7
Max coil CFM ------ _...._.__.......... .....................
........... -1236
CFM
Ent DB/Lvg IDS .....................................
........ _....... _52.6158.2
°F ..
Water flow @ 20.0 °F drop ..... _...... _..... .........
_..._..KIA
Supply Fan Sizing Data
-' •:.���AeNel max CFM,:• ::'.:.:...:.
1236•°CFM:
.=--Fan
molorBHP _::
-
Standard CFM __... ... _.............. .._..................._.._......_.
1235
CFM
Fan motor kW ... __....... _....... _............. .._
..... ........................ _0.00
kW
Actual max CFWft....... _... _.____........................
.._.1.08
CFMfft-
Fan stalls ........................ ____.....................
_............... .... 0.00
in wg
Outdoor Ventilation Air Data
Designairilm CFM ............... ............... __......... ___ 93 CFM CFM/person
CFMNN....... ...... _............... _......... ..... _............................... 0.011 CFM/ft-
..._...... _....... ..... _....... ...... __...98.87 CFWpemon
Hourly Anolysis_Prog2mv5.01 _ - Page 3 of 3