首页> 外文会议>2006 International Compressor Engineering Conference at Purdue vol.2 >NUMERICAL SIMULATION ON SCROLL EXPANDER-COMPRESSOR UNIT FOR CO_2 TRANS-CRITICAL CYCLES
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NUMERICAL SIMULATION ON SCROLL EXPANDER-COMPRESSOR UNIT FOR CO_2 TRANS-CRITICAL CYCLES

机译:CO_2跨临界循环的涡旋膨胀机-压缩​​机组的数值模拟

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In a two-stage compression CO_2 trans-critical cycle, application of a combined scroll expander-compressor unit has been considered in order to improve the cycle COP. For the combined scroll expander-compressor unit, power was recovered from a scroll expander which replaced the expansion valve and transmitted to the first stage auxiliary compressor which was directly coupled to the expander through a common crankshaft. Numerical simulation on its performance showed that for the suction pressure of 3.5MPa, discharge pressure of 10MPa with expander inlet temperature of 35℃, the main compressor input could be reduced by 12.1% by the expander output. Increase in the cooling capacity by the expander was 8.6%. As a consequence, COP improvement of the cycle was estimated to be 23.5% by the application of this expander-compressor unit. COP improvement increased with lowering the expander inlet temperature, but decreased with increasing the suction pressure. Performance of the scroll expander was relatively insensitive to changes of operating pressure ratio, whereas that of the scroll compressor decreased rapidly as the operating pressure ratio became far from the design pressure ratio.
机译:在两级压缩CO_2跨临界循环中,已考虑使用组合涡旋膨胀机-压缩​​器单元以改善循环COP。对于组合式涡旋膨胀机-压缩​​机单元,从涡旋膨胀机回收动力,该涡旋膨胀机取代了膨胀阀并传输到第一级辅助压缩机,该一级辅助压缩机通过一个共同的曲轴直接连接到膨胀机。其性能的数值模拟表明,在吸入压力为3.5MPa,排气压力为10MPa,膨胀机入口温度为35℃的情况下,膨胀机输出可将主压缩机输入降低12.1%。膨胀机的冷却能力提高了8.6%。结果,通过使用该膨胀机-压缩​​机单元,估计循环的COP改善为23.5%。 COP的提高随膨胀机入口温度的降低而增加,但随吸入压力的增加而降低。涡旋膨胀机的性能对工作压力比的变化相对不敏感,而涡旋压缩机的性能随着工作压力比远离设计压力比而迅速下降。

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