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R e s i d e n t i a l D i g i t a l H & V - Tr a n q u i l i t y
®
2 2 D i g i t a l ( T Z ) S e r i e s - 6 0 H z H F C - 4 1 0 A
C r e a t e d : 2 6 O c t . , 2 0 1 1 B
62
G e o t h e r m a l H e a t P u m p S y s t e m s
Troubleshooting Form
Packaged Unit Refrigeration Schematic
Rev. 08/11
Customer: _____________________________________ Antifreeze: ________________________
Model#: ________________________ Serial#: ________________ Loop type: _______________
Complaint: ________________________________________________________________________
COAX
COMPRESSOR
DISCHARGE
SUCTION
HWG
COOLING CYCLE ANALYSIS -
COAX
COMPRESSOR
DISCHARGE
SUCTION
HWG
HEATING CYCLE ANALYSIS -
PSI
SAT
PSI
SAT
$
F
$
F
AIR
COIL
$
F
$
F
LT 2: HEATING
LIQUID LINE
$
F
EXPANSION
VALVE
AIR
COIL
$
F
$
F
PSI
SAT
PSI
SAT
$
F
$
F
$
F
$
F
WATER IN
WATER OUT
PSI
PSI
$
F
$
F
WATER IN
WATER OUT
PSI
PSI
†
Use 500 for water, 485 for antifreeze.
FILTER
DRIER*
FLASH
GAS LINE
$
F
LT 1
SENSOR
$
F
EXPANSION
VALVE
FILTER
DRIER*
LT 2: FLASH
GAS LINE
$
F
OTHER SIDE
OF FILTR DR
$
F
LT1 : CLG
LIQ LINE
$
F
Refrigerant Type:
HFC-410A
Heat of Extraction (Absorption) or Heat of Rejection =
________
flow rate (
diff. (
factor = _____________
(Btu/hr)
Superheat
Subcooling
Suction temperature - suction saturation temp.
Discharge saturation temp. - liquid line temp.
=
=
=
=
(deg F)
(deg F)
gpm) x ________ temp.
deg. F) x ________ fluid
†
Date: ________________________
Voltage: ________
Comp Amps: _______
Total Amps: ________
Look up pressure drop in
I.O.M. or spec. catalog to
determine flow rate.
Look up pressure drop in
I.O.M. or spec. catalog to
determine flow rate.
Note: Never connect refrigerant gauges during startup procedures. Conduct water-side analysis using P/T ports to determine
water
fl
ow and temperature difference. If water-side analysis shows poor performance, refrigerant troubleshooting may be
required. Connect refrigerant gauges as a last resort.
Refrigerant Circuit Diagram
Содержание Tranquility 97B0072N01
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