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Technical description
28
BEKOBLIZZ® LC 12-355
11.5 Refrigerating
compressor
The employed refrigerating compressors are constructed by leading manufacturers. The hermetically sealed
construction is absolutely gastight. The integrated safeguard protects the compressor against overheating and excess
current. The protection is automatically reset as soon as the nominal conditions are reached again.
11.6 Condenser
(air-cooled)
The condenser is the component in which the gas coming from the compressor is cooled down, condensed and
liquefied. Under no circumstances must the temperature of the ambient air exceed the nominal values. It is also
important that the condenser unit is kept free from dust and other impurities.
11.7 Condenser
(water-cooled)
The condenser is the component in which the gas coming from the compressor is cooled-down, condensed and
liquefied. The water inlet temperature must not exceed the nominal values. Likewise, a correct flow must be ensured.
The water entering the condenser must be free from impurities.
11.8 Cooling-water
regulating
valve
The cooling-water regulating valve serves to keep the condensation pressure or the condensation temperature
constant during water cooling. When the chiller is switched off, the valve automatically blocks the cooling-water flow.
11.9 Filter
dryer
Despite controlled vacuuming, traces of moisture can accumulate in the refrigeration cycle. The filter dryer serves to
absorb this moisture and to bond it.
11.10 Capillary tube
The capillary tube is a copper tube with a reduced diameter which is located between the condenser and the
evaporator, serving as a restrictor to reduce the pressure of the refrigerant. The pressure reduction serves to reach an
optimum temperature inside of the evaporator. The lower the outlet pressure at the capillary tube, the lower the
evaporation temperature.
The length and the inner diameter of the capillary tube are exactly dimensioned to ensure the performance of the
chiller. Settings or maintenance works are not required.
11.11 Air-to-refrigerant heat exchanger
Also called evaporator. The liquid formed in the condenser is evaporated in this part of the circuit. In the evaporation
phase the refrigerant tends to absorb the heat from the compressed air present in the other side of the exchanger.
Refrigerant and air are in counter flow, thus contributing to limit pressure drop and to provide efficient thermal
exchange.
11.12 Condensate separator
The cold air exiting the evaporator goes through the hi-efficiency condensate separator featuring a stainless steel
mesh. As the condensate transported by the air gets in contact with the mesh net it is separated and expelled by
means of the draining device. The resulting cold and dry air is then conveyed into chiller outlet.
The mesh type mist separator offers the benefit to be highly efficient even with variable flow rates.
11.13 Hot-gas bypass valve
At partial load, the valve directly returns a part of the hot gas to the suction line of the refrigerating compressor. The
evaporation temperature and the evaporation pressure remain constant.
Summary of Contents for Bekoblizz LC 12-355
Page 23: ...Technical data BEKOBLIZZ LC 12 355 23 10 2 Technical data BEKOBLIZZ LC 55 355 1 230 50 ...
Page 24: ...Technical data 24 BEKOBLIZZ LC 12 355 10 3 Technical data BEKOBLIZZ LC 12 150 1 115 60 ...
Page 25: ...Technical data BEKOBLIZZ LC 12 355 25 10 4 Technical data BEKOBLIZZ LC 55 355 1 230 60 ...
Page 40: ...Maintenance troubleshooting spare parts and dismantling 40 BEKOBLIZZ LC 12 355 ...
Page 41: ...Maintenance troubleshooting spare parts and dismantling BEKOBLIZZ LC 12 355 41 ...
Page 44: ...Appendices 44 BEKOBLIZZ LC 12 355 13 1 2 Chiller dimensions BEKOBLIZZ LC 55 ...
Page 45: ...Appendices BEKOBLIZZ LC 12 355 45 13 1 3 Chiller dimensions BEKOBLIZZ LC 90 115 ...
Page 46: ...Appendices 46 BEKOBLIZZ LC 12 355 13 1 4 Chiller dimensions BEKOBLIZZ LC 150 240 ...
Page 47: ...Appendices BEKOBLIZZ LC 12 355 47 13 1 5 Chiller dimensions BEKOBLIZZ LC 355 ...
Page 49: ...Appendices BEKOBLIZZ LC 12 355 49 13 2 2 Exploded diagram BEKOBLIZZ LC 12 35 ...
Page 50: ...Appendices 50 BEKOBLIZZ LC 12 355 13 2 3 Exploded diagram BEKOBLIZZ LC 55 ...
Page 51: ...Appendices BEKOBLIZZ LC 12 355 51 13 2 4 Exploded diagram BEKOBLIZZ LC 90 115 ...
Page 52: ...Appendices 52 BEKOBLIZZ LC 12 355 13 2 5 Exploded diagram BEKOBLIZZ LC 150 240 ...
Page 53: ...Appendices BEKOBLIZZ LC 12 355 53 13 2 6 Exploded diagram BEKOBLIZZ LC 355 ...
Page 60: ...Appendices 60 BEKOBLIZZ LC 12 355 ...
Page 61: ...EC Declaration of Conformity BEKOBLIZZ LC 12 355 61 14 EC Declaration of Conformity ...
Page 62: ...EC Declaration of Conformity 62 BEKOBLIZZ LC 12 355 ...