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首页> 外文期刊>Energy Science & Engineering >Optimization of binary zeotropic mixture working fluids for an organic Rankine cycle for waste heat recovery between centrifugal compressor stages
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Optimization of binary zeotropic mixture working fluids for an organic Rankine cycle for waste heat recovery between centrifugal compressor stages

机译:用于在离心式压缩机阶段的废热回收中的有机朗克循环的二元横熵混合物工作流体

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The organic Rankine cycle is an effective way to recover low‐temperature waste heat, and a mixture working fluid can effectively improve the performance of the organic Rankine cycle. In order to find the best pure and mixture working fluid quickly and accurately, thirteen pure working fluids and zeotropic mixtures of two of those fluids are selected to study the performance of the organic Rankine cycle, and the net power output is selected as the objective function. Through calculation and analysis, the best pinch temperature difference and evaporation temperature are determined. By calculating the approximate net power output, we find that the parameter (k·Δs5‐1)?1, which is determined by the physical properties of a working fluid, plays an important role in the pure working fluid optimization. In addition, the condensation temperature glide and (k·Δs5‐1)?1 together determine the optimized binary zeotropic mixture. As a result, R227ea and R227ea/hexane (0.98/0.02) are shown to be the optimal pure working fluid and binary zeotropic mixture. Using this mixture resulted in a net power output of 424.63?kW, which is 29.3% higher than that of the pure working fluid R227ea.
机译:有机朗肯循环是回收低温废热的有效方法,并且混合加工流体可以有效地改善有机朗肯循环的性能。为了快速准确地找到最佳的纯净和混合物工作流体,选择三十纯的工作流体和两种这些流体的鸟类混合物来研究有机朗肯循环的性能,并选择净功率输出作为目标函数。通过计算和分析,确定最佳的捏温差和蒸发温度。通过计算近似净功率输出,我们发现由工作流体的物理性质确定的参数(k·Δs5-1)Δ1在纯工作流体优化中起重要作用。另外,冷凝温度滑动和(K·ΔS5-1)α1一起确定优化的二元胞胎混合物。结果,R227EA和R227EA /己烷(0.98 / 0.02)被示出为最佳纯的工作流体和二元横熵混合物。使用该混合物导致净功率输出为424.63Ω·kW,比纯工作液R227ea高29.3%。

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