102
EVO-S, EVO-H
MODULAR AIR HANDLING UNITS
OPERATION AND MAINTENANCE MANUAL
HPM.d ; CM.d
Unit size
System
symbol
Air flow rate
min. [m
3
/h]
Number of rows of exchan-
ger at the exhaust
0300
61
1200
8
0400
61
1200
8
2500
108
2000
8
3500
108
2000
8
0600
108
2000
8
0700
108
2000
8
0700
164
4000
8
5800
164
4000
8
5800
214
5000
8
8800
164
4000
8
8800
214
5000
8
0010
164
4000
8
0010
214
5000
8
5010
164
4000
8
5010
214
5000
8
5310
214
5000
8
Adjusting the unit for smaller flows will lead to the cool-
ing system being switched off by low- or high-pressure
switches. The table below shows the electrical parame-
ters of the compressors.
Table 27
Electrical parameters of the compressors
System symbol
Numberof
the compres-
sors
MCC*
LRA*
Circulation 1
25i
1
10,5
-
43i
1
-
-
71i
1
18
-
113i
1
24
-
72f
1
18
105
144f
2
18
105
140f
1
29,7
140
280f
2
29,7
140
161f
1
39
225
322f
2
39
225
30d
1
6,9
46
61d
1
12,5
74
164d
2
15,9
95
108d
1
19,6
118
214d
2
19,6
118
MCC - maximum operating current LRA - starting current
The parameters given for one compressor from a given
circuit, the other has identical parameters. For DC Inverter
compressors there is no LRA parameter because the com-
pressor is controlled by a controller that ensures smooth
start-up.
4.14.1 Cooling device description
Cooling sets are located inside the unit. The compressors
are protected by low- and high-pressure switches connect-
ed directly to the compressor contactor and causing it to
shut down. High-pressure switches are equipped with man-
ual reset, low-pressure switches with automatic reset.
Additionally, high- and low-pressure transducers are availa-
ble. Their signal reduces performance to allow the system to
operate correctly within the set pressure limits.
HPM.i and CM.i, if they consist of more than one compressor,
are multi-sectional systems, not hydraulically connected.
They consist of a section with a single DC Inverter compressor
and one or two sections with on/off compressors. Sections
with on/off compressors are designated HPM.f/CM.f
HPM.d and CM.d are single-section systems, consisting of
one Digital scroll compressor and with higher capacities of
one on/off compressor.
The cooling system is supplied with the automation. It pro-
vides full protection of its operation, maintaining the as-
sumed air parameters and maximizing the capacity factors.
In order to prevent the compressor from being flooded with
liquid cooling medium, the system works with the suction of
medium vapour at a standstill (turning the compressor off is
preceded by closing the electromagnetic valve). Suction is
carried out every time the system is switched off and when
the mode of operation is changed from heating to cooling
(switching the four-way valve).
Due to the operation in heating and cooling modes with vari-
able air parameters, the systems have wide ranges of permis-
sible operating pressures.
In winter, due to the configuration of units with heat recov-
ery and HPM.i and HPM.d systems, it is required to perform
the exchanger defrosting in the exhaust part. Defrosting is
carried out by reversing the cooling circuit, which heats the
exchanger and quickly defrosts. The process is repeated at
specific intervals, providing protection of the exchanger.
Table 28
Manometric pressure range for systems with R407c medium
Min [MPa]
Maks [MPa]
Low pressure
0,2
0,65
High pressure
1,1
2,5
Table 29
Manometric pressure range for systems with R410a medium
Min [MPa]
Maks [MPa]
Low pressure
0,3
1
High pressure
1,5
3
Summary of Contents for EVO - H
Page 60: ...SERWIS SERVICE 48 587839954 48 500087227 serwis klimor com...
Page 118: ...SERWIS SERVICE 48 587839954 48 500087227 serwis klimor com...
Page 119: ...EVO S EVO H KLIMOR...
Page 127: ...125 14 11 12 13 3 2 15 16 15 16 17 17 18 18 RR OMM KL RR ASM GUILS Klimor...
Page 130: ...128 EVO S EVO H 25 26 c 200x200 300x200 27 27 d 0230 0090 300x200 28 28 0230 0090...
Page 132: ...130 EVO S EVO H 2900 a 50 31 b 150 32 c 33 2900 b c...
Page 141: ...139 43 8 1200 600 230 50 36 310 x 230 x 125 4 3 2 E G4 ISO COARSE 60 6...
Page 142: ...140 EVO S EVO H 44 45 46 100 C 47 48 49...
Page 143: ...141 4 3 3 SR 50 230 50 60 CA 1 2 CG 3 2 CG 3 1 CA 4 3 4 52 51...
Page 144: ...142 EVO S EVO H 53 54 55 4...
Page 145: ...143 56 4 3 5 G4 ISO COARSE 60 6 57 57 58 INOX 2 3 Power supply LED C 3x2 5 2x2 5 C 2x1 5...
Page 146: ...144 EVO S EVO H 59 60 C 4 4 WH CuAl 4 8 1 4 5 EH 60 4 5 1 4...
Page 149: ...147 62 3 5 4 5 6 7 63 8 4 9 64 63 64 4 7 2 12 5 5...
Page 157: ...155 150 4 12 1 CPR PR 6 12 50 0 C 4 13 RG 55 76 Cu Al Cu Al 23 DN63 PN Klimor Klimor 230 50...
Page 167: ...165 4 14 2 3 4 14 3 Klimor 5 6 6 1 KT 8 100 C...
Page 168: ...166 EVO S EVO H 7 12 PN EN 13779 2008 12 2000 24 4000 24 4000 3 6 12 30 C 130 C 4...
Page 169: ...167 8 30 1 2 3 DX 4 5 6 7...
Page 171: ...169 10 KLIMOR EVO KLIMOR EVO a b 10 10 c IP54 d c e 83 84 f IP65 85 86 32 A 50 0 1 1...
Page 173: ...171 11 7 11 8 11 9 91 11 10 DIN 1946 4 DIN 1946 4 DIN 1946 4 DIN 1946 4 3 I 2 4 0 8 80 20 1...
Page 174: ...172 EVO S EVO H 11 11 m in HEPA...
Page 175: ...173 m in HEPA EN ISO 14644 1 3...
Page 176: ...174 EVO S EVO H 12...
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