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PERFORMANCE OF CO_2 CYCLES WITH A TWO-STAGE COMPRESSOR

机译:两级压缩机的CO_2循环性能

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摘要

The performance of four CO_2 cycle options was measured for three different evaporating temperatures, 7.2, -6.7, and -23.3℃ under the ARI Standard 520 for the condensing units. Four cycle options were a basic cycle, a cycle with a suction line heat exchanger, a cycle with an intercooler, and a two -stage split cycle. The compressor used in testing was a hermetic, rotary type two-stage compressor. The results show that the cycle with a suction line heat exchanger worked better when the suction temperature was higher. The cycle with a suction line heat exchanger, the cycle with an intercooler and the two-stage split cycle improved the COP by 18, 22, and 35% over the basic CO_2 cycle at 7.2℃ evaporating temperature. At -6.7℃ evaporating temperature, the cycle with intercooler and two-stage split cycle improved the COP by 10 and 40% over the basis CO_2 cycle. The cycle operation at low evaporating temperatures was limited by the excessively high discharge temperature for most cycle options except the two-stage split cycle. Measured volumetric efficiencies and compressor efficiencies were 0.80 to 0.95 and 0.55 to 0.70, respectively.
机译:根据ARI标准520的冷凝装置,在7.2,-6.7和-23.3℃三种不同的蒸发温度下测量了四个CO_2循环选项的性能。四个循环选项为基本循环,带吸水管热交换器的循环,带中冷器的循环以及两阶段分流循环。测试中使用的压缩机是密封的旋转式两级压缩机。结果表明,当吸气温度较高时,采用吸气管式热交换器的循环效果更好。在7.2℃的蒸发温度下,带有吸入管换热器的循环,带中冷器的循环和两级分流循环的COP比基本CO_2循环提高了18%,22%和35%。在-6.7℃的蒸发温度下,采用中冷器的循环和两级分流循环使COP比基础CO_2循环提高了10%和40%。除两级分流循环外,大多数循环选项在低蒸发温度下的循环操作都受到过高的排气温度的限制。测得的容积效率和压缩机效率分别为0.80至0.95和0.55至0.70。

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