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EFFECTS OF REAL GAS MODEL ACCURACY AND OPERATING CONDITIONS ON SUPERCRITICAL CO2 COMPRESSOR PERFORMANCE AND FLOW FIELD

机译:真实气体模型精度和工作条件对超临界CO2压缩机性能和流场的影响

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摘要

Rankine and Brayton cycles are common energy conversion cycles and constitute the basis of a significant proportion of global electricity production. Even a seemingly marginal improvement in the efficiency of these cycles can considerably decrease the annual use of primary energy sources and bring a significant gain in power plant output. Recently, supercritical Brayton cycles using CO_2 as the working fluid have attracted much attention, chiefly due to their high efficiency. As with conventional cycles, improving the compressor performance in supercritical cycles is major route to increasing the efficiency of the whole process. This paper numerically investigates the flow field and performance of a supercritical CO_2 centrifugal compressor. A thermodynamic look-up table is coupled with the flow solver and the look-up table is systematically refined to take into account the large variation of thermodynamic properties in the vicinity of the critical point. Effects of different boundary and operating conditions are also discussed. It is shown that the compressor performance is highly sensitive to the look-up table resolution as well as the operating and boundary conditions near the critical point. Additionally, a method to overcome the difficulties of simulation close to the critical point is explained.
机译:兰诗和布雷顿周期是常见的能量转换循环,构成了全球电力生产大部分的基础。即使是这些循环效率的看似边缘改善也可以大大降低主要能源的年度使用,并在发电厂输出中提高显着收益。最近,使用CO_2作为工作流体的超临界布雷顿周期引起了很多关注,主要是由于它们的高效率。与传统循环一样,提高超临界周期中的压缩机性能是提高整个过程效率的主要途径。本文数值研究了超临界CO_2离心式压缩机的流场和性能。热力学查找表与流动求解器联接,并系统地精制查找表以考虑临界点附近的热力学性质的大变化。还讨论了不同边界和操作条件的影响。结果表明,压缩机性能对查找表分辨率非常敏感,以及关键点附近的操作和边界条件。另外,解释了一种克服靠近临界点的模拟困难的方法。

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