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Optimum thermodynamic conditions for upper pressure limits of transcritical carbon dioxide refrigeration cycle

机译:跨临界二氧化碳制冷循环压力上限的最佳热力学条件

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摘要

It is well known that the choice of upper pressure limit in a transcritical CO_2 refrigeration cycle is independent of the gas cooler approach temperature. This is in contrast to sub-critical cycles, where the condensing pressure is invariably governed by the ambient conditions. The criteria used for limiting the upper pressure limit in a transcritical cycle are the state of maximum COP for a given set of evaporating and gas cooler exit temperatures. The latter is governed by the local ambient conditions and the possible approach. This paper provides a thermodynamic basis for the evaluation of this pressure for the case of ideal compression and with some compressors available in the market. In addition, it also provides an additional criterion that minimizes the cycle irreversibility which is predominantly due to gas throttling. This paper evaluates the pressure limits for these two criteria for some typical evaporating temperatures and ambient conditions. The possible compressor discharge temperatures in each case are calculated and criteria for two-stage compression are identified.
机译:众所周知,跨临界CO 2制冷循环中压力上限的选择与气体冷却器的接近温度无关。这与亚临界循环相反,在亚临界循环中,冷凝压力始终由环境条件控制。用于限制跨临界循环中压力上限的标准是给定的一组蒸发和气体冷却器出口温度的最大COP状态。后者受当地环境条件和可能的方法控制。本文为理想压缩情况下以及市场上出售的某些压缩机的压力评估提供了热力学基础。此外,它还提供了一个附加准则,该准则可将主要由于气体节流而导致的循环不可逆性降至最低。本文针对一些典型的蒸发温度和环境条件,评估了这两个标准的压力极限。计算每种情况下可能的压缩机排气温度,并确定两级压缩的标准。

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