Airwell CWP-RC 04 [13/42] Installation
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Page 12
The capacity of the expansion vessel must
allow for an expansion of at least 2% of the
volume of the fluid in the circuit (evapora-
tor, piping, user circuit and standby tank, if
any). The expansion vessel needs not be
isolated, because no water can circulate in-
side it.
h
A flow meter, to disable the appliance when the
water is not circulating.
The flow meter shall be connected (termi-
nals 7-8).
To install the flow meter, conform to the manufactur-
er’s instructions.
As a general rule, the flow meter must be mounted
on a horizontal pipe, and its distance from the
curves must be 10 times the diameter of the pipe, far
from valves or other components that may hinder the
water flow upstream of or downstream from the flow
meter.
h
The air exhaust valves must be mounted in the
highest point of the piping.
h
The stop valves must be mounted on the water in-
let/outlet piping of the evaporator and the heat re-
covery condenser.
h
The drain points (provided with plugs, cocks etc.)
must be positioned in the lowest point of the pip-
ing.
Furthermore:
h
Provide the evaporator with a by-pass circuit
equipped with valve, to wash the plant.
h
Insulate the piping, to prevent the risk of heat loss.
h
Install a filter on the suction side of the evaporator
or the heat recovery condenser.
Before filling the circuit, it is important to
check that it is free from any foreign matter,
sand, gravels, rust, welding deposits, waste
and other materials that may damage the
evaporator.
When cleaning the lines, it is recommended to cre-
ate a circuit by-pass. It is important to mount a filter-
ing medium (30 mesh) upstream of the chiller.
If necessary, the water required to fill the
circuit must be treated to obtain the request-
ed PH.
Installation
4.4 Hydraulic connection
of the condenser
The external hydraulic circuit must ensure
the water flow to the condenser under any
working or adjustment conditions.
The cooling of the units is generally ensured by con-
necting the condenser to a cooling tower, though the
units can be cooled also with well water.
In the presence of a water-cooled condenser, it is
necessary to check the flow rate and/or the tempera-
ture of the cooling fluid that flows through the con-
denser, so as to maintain the refrigerant pressure at
values that can ensure a satisfactory operation.
When a cooling tower is used, the simplest regula-
tion methods consist of checking the operation or the
speed of the fan or the air volume, by means of a
damper, once the pilot thermostat has been installed
in the basin of the tower.
Alternatively, or if no water from a cooling tower is
used, you can adopt a recirculaton system provided
with a 3-way valve.
This circuit shall consist of:
h
A circulation pump that can ensure the necessary
capacity and discharge head.
h
A flow meter to turn off the appliance when no wa-
ter is circulating.
The flow meter must be connected in series,
as shown in the wiring diagram of the con-
trol panel.
To install the flow meter, follow the manufacturer’s
instructions.
As a general rule, the flow meter shall be mounted
on a horizontal pipe, at a distance from the curves
equal to 10 times the diameter of the pipe and far
from valves or other components that are likely to
hinder the water flow upstream of or downstream
from the flow meter.
h
The bleed valves must be mounted on the highest
point of the piping.
h
The stop valves must be mounted on the piping of
the water entering/leaving the condenser.
h
The discharge points (provided with plugs, cocks
etc.) must be arranged in the lowest point of the
piping.
Manuale CWP 4.11.2005 11:56 Pagina 12
Содержание
- Cwp co cwp rc cwp hp 1
- Control system 2
- Dismantling demolition and scrapping 2
- English 2
- Foreword 2
- General description 2
- Installation 2
- Maintenance 2
- Safety 2
- Spare parts 2
- Start up 2
- Table of contents 2
- Technical data 2
- Transport lifting and positioning 2
- Troubleshooting 2
- An introduction to the manual 3
- Emergency stop normal stop 3
- Foreword 3
- Introduction 3
- Warranty 3
- Definitions 4
- English 4
- Foreword 4
- Safety 4
- Access to the unit 5
- General precautions 5
- Precautions against residual risks 5
- Safety 5
- English 6
- Precautions during maintenance operations 6
- Safety 6
- Aus outlet 7
- Ein inlet 7
- Entrée entrata 7
- Safety 7
- Safety labels 7
- Sortie uscita 7
- English 8
- Safety 8
- Safety regulations 8
- Safety 9
- English 10
- Safety 10
- Anchoring 11
- Inspection 11
- Storage 11
- Transport lifting and positioning 11
- Unit handling 11
- Connection diagram 12
- English 12
- External hydraulic circuit 12
- Flow meter installation 12
- Installation 12
- Positioning of the unit 12
- Vibration isolators 12
- Hydraulic connection of the condenser 13
- Installation 13
- Electrical connections 14
- English 14
- Hydraulic connection 14
- Installation 14
- Power supply 14
- Preliminary check 15
- Start up 15
- Checking the operation 16
- Delivery to the customer 16
- English 16
- Start up 16
- Antifreeze function 17
- Control system 17
- Cwp control system 17
- Temperature controller 17
- Μchiller 17
- Control system 18
- English 18
- Summary of the key functions 18
- The meaning of each key in the different modes is summed up in the table below 18
- Control system 19
- Heat exchanger heater thermostat 19
- High pressure control 19
- Low pressure control 19
- Pressostatic valve kit optional 19
- Compressors 20
- Condenser except for cwp rc 20
- English 20
- Evaporator 20
- General description 20
- General specifications 20
- Introduction 20
- Refrigeration circuits 20
- Switchboard 20
- Cwp hp refrigeration circuit 02 to 05 21
- Cwp rc refrigeration circuit 02 to 05 21
- Cwp refrigeration circuit 02 to 05 21
- General description 21
- Page 20 21
- Cwp hp refrigeration circuit 06 to 21 22
- Cwp rc refrigeration circuit 06 to 21 22
- Cwp refrigeration circuit 06 to 21 22
- English 22
- General description 22
- Page 21 22
- Cwp hp refrigeration circuit 25 to 35 23
- Cwp rc refrigeration circuit 25 to 35 23
- Cwp refrigeration circuit 25 to 35 23
- General description 23
- Page 22 23
- English 24
- Page 23 24
- Pressure drops 24
- Technical data 24
- Page 24 25
- Technical data 25
- English 26
- Page 25 26
- Technical data 26
- Page 26 27
- Technical data 27
- English 28
- Page 27 28
- Technical data 28
- Page 28 29
- Technical data 29
- Electrical data 30
- English 30
- Page 29 30
- Technical data 30
- Condenser inlet 1 1 4 female sizes 02 to 09 1 1 2 female sizes 15 31
- Condenser outlet 1 1 4 female sizes 02 to 09 1 1 2 female sizes 15 31
- Cwp cwp hp cwp rc 02 to 15 31
- Evaporator inlet 1 1 4 female sizes 02 to 09 1 1 2 female sizes 15 31
- Evaporator outlet 1 1 4 female sizes 02 to 09 1 1 2 female sizes 15 31
- External source water inlet 31
- External source water outlet 31
- Overall dimensions 31
- Page 30 31
- Technical data 31
- Water leaving to installation 31
- Water return from installation 31
- Condenser inlet 1 1 4 female 32
- Condenser outlet 1 1 4 female 32
- Cwp cwp hp cwp rc 18 21 32
- Discharge line 1 1 8 32
- English 32
- Evaporator inlet 1 1 4 female 32
- Evaporator outlet 1 1 4 female 32
- For cwp cwp hp 32
- For cwp rc 32
- Liquid line 7 8 32
- Page 31 32
- Technical data 32
- Condenser inlet 2 female 33
- Condenser outlet 2 female 33
- Cwp cwp hp cwp rc 25 to 35 33
- Discharge line 1 5 8 33
- Evaporator inlet 2 female 33
- Evaporator outlet 2 female 33
- For cwp cwp hp 33
- For cwp rc 33
- Liquid line 1 1 8 33
- Page 32 33
- Technical data 33
- English 34
- Page 33 34
- Service spaces 34
- Technical data 34
- General requirements 35
- Maintenance 35
- Planned maintenance 35
- Compressor 36
- Condenser 36
- Dehydrating filter 36
- English 36
- Maintenance 36
- Refrigerant charge 36
- Sight glass 36
- Evaporator 37
- Maintenance 37
- Thermostatic expansion valve 37
- English 38
- Troubleshooting 38
- Troubleshooting 39
- English 40
- Oil for compressors 40
- Spare part list 40
- Spare parts 40
- Wiring diagrams 40
- Dismantling demolition and scrapping 41
- Generalities 41
- Itelco industry 42
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