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SYSINPUT.FRM
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1991-05-10
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ASEAM2 SYSTEMS INPUT FORM (ABBREVIATED)
Total number of systems __
System # System Label System Type
1 ________________________________________ __
2 ________________________________________ __
3 ________________________________________ __
4 ________________________________________ __
5 ________________________________________ __
6 ________________________________________ __
7 ________________________________________ __
8 ________________________________________ __
9 ________________________________________ __
10 ________________________________________ __
System Types
1=DDMZ 2=CVRH 3=VAVR 4=CBVAV 5=SZRH 6=FCU 7=WSHP 8=AAHP
9=BB 10=FURN 11=UH 12=HV 13=WAC
Zone Zone Heating Heating Cooling
Number Label Cooling ONLY ONLY
System # System # System #
┌──────────────────────────────────┐ __ __ __
│NOTE - THE ZONE NUMBERS AND LABELS│ __ __ __
│ (AS DEFINED IN LOADS INPUT)│ __ __ __
│ WILL BE PRINTED HERE │ __ __ __
└──────────────────────────────────┘ __ __ __
__ __ __
__ __ __
__ __ __
__ __ __
__ __ __
ASEAM2 SYSTEMS INPUT FORM (ABBREVIATED) System # ____
Heating coil plant type (Use Codes Below) _
0=None 1=Boiler 2=Elect Resist 3=Dist Heat 4=DB Chiller 5=Furn
Outside temperature above which heating is off ___ °F
Heating available beginning month # __
Heating available ending month # __
Design heating coil discharge temperature ___ °F
Discriminator Control (Y/N) (DDMZ ONLY) _
Outside temperature at maximum hot deck temperature (DDMZ ONLY) ___ °F
Maximum hot deck temperature (DDMZ ONLY) ___ °F
Outside temperature at minimum hot deck temperature (DDMZ ONLY) ___ °F
Minimum hot deck temperature (DDMZ ONLY) ___ °F
Cooling coil plant type (see codes below) _
0=None 1=DX 2=Centrifugal 3=Absorption 4=District Cooling
5=Double Bundle 6=Cooling Tower (WSHP only) 7=Reciprocating
Outside temperature below which cooling is off ___ °F
Cooling available beginning month # __
Cooling available ending month # __
Design cooling coil discharge temperature ___ °F
Discriminator control (Y/N) _
Maximum cooling coil discharge temperature ___ °F
Preheat coil plant type (Use Heating Codes 0 - 3) _
Outside temperature above which preheat is off ___ °F
Preheat available beginning month # __
Preheat available ending month # __
Design preheat coil discharge temperature ___ °F
Humidification plant type (Use Heating Codes 0 - 3) _
Outside temperature above which humidification is off ___ °F
Humidification available beginning month # __
Humidification available ending month # __
Humidification available during unoccupied cycle (Y/N) _
Minimum relative humidity maintained __ % RH
Baseboard plant type (Use Heating Codes 0 - 3) _
Outside temperature above which baseboard is off ___ °F
Baseboard available beginning month # __
Baseboard available ending month # __
Baseboard control type (1=thermostatic 2=OA reset) _
Percent of design heating load satisfied at design winter ___ %
Percent of design heating load satisfied at balance temp ___ %
Total supply fan power required (blank=default) ___ KW
(or) Supply fan power per 1000 CFM ____ KW/KCFM
Supply fan temperature rise (blank=default) ____ °F
Total return fan power required (blank=default) ___ KW
(or) Return fan power per 1000 CFM ____ KW/KCFM
Return fan temperature rise (blank=default) ____ °F
(VAV) Minimum percent of design air volume when heating ___ %
(VAV) Air volume control method (1=Speed 2=Discharge 3=Inlet) _
Occupied cycle fan control method (1=On Continuously 2=Cycles) _
Unoccupied cycle fan control method (1=On Continuously 2=Cycles) _
Occup Unocc
Outside air damper control method (see codes below) _ _
1=No Outside Air 2=Fixed Dampers 3=Dry Bulb 4=Enthalpy
Minimum percent outside air intake ___ % ___ %
Dry bulb switchover temperature ___ °F ___ °F
ASEAM2 SYSTEMS INPUT FORM (ABBREVIATED) System # ____
(Heat Pump and Window Air Conditioner only)
Zonal total cooling capacity method (1=User Entered 2=Autosized) _
(if autosized) Percent of design total load satisfied ___ %
Zonal sensible cooling capacity method (1=User Entered 2=Autosized) _
(if autosized) Percent of design sensible load satisfied ___ %
Design coefficient of performance ____
Outside temperature at minimum fluid loop temperature ___ °F
Minimum fluid loop temperature ___ °F
Outside temperature at maximum fluid loop temperature ___ °F
Maximum fluid loop temperature ___ °F
Zonal heating capacity method (1=User Entered 2=Autosized) _
(if autosized) Percent of max heat pump load satisfied ___ %
AAHP backup heating source (1=Furnace 2=Electric Resistance) _
Outside temperature below which backup heating is on ___ °F
Zonal electric resistance backup heating capacity method _
(1=Capacities Entered by Zone 2=Autosized)
(if autosized) Percent of design heating load satisfied ___ %
Design heating coefficient of performance ____
Furnace fuel source (see codes below) _
1=Electric 2=Natural Gas 3=#2 Oil 4=#4 Oil 5=#6 Oil
Furnace capacity (blank=autosize) _____ KBTUH
(if autosized) Percent of design load satisfied ___ %
Furnace efficiency at design load ___ %
Losses as percent of design load (at design load) ___ %
Losses as percent of design load (at no load) ___ %
Pilot gas annual consumption ___ therms
Zonal air volume method (1=User Entered 2=Autosized) _
(if autosized) Percent of design default air flow ___ %
Zonal fan power method (1=User Entered 2=Autosized) _
(if autosized) Percent of design default fan KW ___ %
DX total cooling capacity (blank=autosized) ______ tons
(if autosized) Percent of design total load satisfied ___ %
Design coefficient of performance ____
Minimum unloading ratio (% of capacity) ___ %
Minimum hot gas bypass ratio (% of capacity) ___ %
Condenser fan KW (blank=default) ___ KW
Outside temperature below which condenser fan is off ___ °F
Zone Tot Zone Sen Zone HP Zone HP
Loads Zone Name Zone Zone Clg Cap Clg Cap Htg Cap Bkup Htg
Zone # or Label CFM Fan KW (Tons) (Tons) (Tons) Cap (KW)
┌─────────────────────────┐ ______ _______ _______ _______ ______ ________
│ NOTE - THE ZONE NUMBER │ ______ _______ _______ _______ ______ ________
│ AND LABEL FOR EACH ZONE │ ______ _______ _______ _______ ______ ________
│ ASSIGNED TO THIS SYSTEM │ ______ _______ _______ _______ ______ ________
│ IS PRINTED HERE │ ______ _______ _______ _______ ______ ________
└─────────────────────────┘ ______ _______ _______ _______ ______ ________
______ _______ _______ _______ ______ ________
______ _______ _______ _______ ______ ________
______ _______ _______ _______ ______ ________
______ _______ _______ _______ ______ ________