首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >OFF-DESIGN PERFORMANCE COMPARATIVE ANALYSIS BETWEEN DUAL-PRESSURE ORGANIC RANKINE CYCLES USING PURE AND MIXTURE WORKING FLUIDS
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OFF-DESIGN PERFORMANCE COMPARATIVE ANALYSIS BETWEEN DUAL-PRESSURE ORGANIC RANKINE CYCLES USING PURE AND MIXTURE WORKING FLUIDS

机译:纯和混合工质在双压力有机RANK循环之间的非预期性能比较分析

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Dual-pressure Organic Rankine Cycles (ORCs) driven by the low temperature heat source usually work under part-load conditions, and it is therefore essential to predict the off-design performance of such ORCs. This paper presents the off-design performance prediction of the dual-pressure ORC on the basis of the model including plate heat exchangers, axial turbines and a centrifugal pump. Pure working fluid R600a and the mixture R245fa/R600a are compared. The sliding pressure operation strategy is considered under off-design conditions. The results indicate that under the design hot water parameters (hot water 140°C, 64.87 kg/s), compared with the single-pressure ORC using R600a, the dual-pressure ORC using R600a shows a 9.57% higher net power and a 17.32% higher heat transfer area. Furthermore, the dual-pressure ORC with the mixture R245fa/R600a (0.42/0.58 mass fraction) shows a 1.04% higher net power and a 3.87% higher heat transfer area than the dual-pressure ORC using R600a under the design hot water parameters. In the dual-pressure ORC, the rotational speed of the high-pressure pump is more strongly influenced by the inlet temperature of hot water than that of the low-pressure pump. In addition, when the mass flow rate ratio of hot water or the inlet temperature of hot water increases, the difference of the net power between the dual-pressure ORC using the proposed mixture R245fa/R600a (0.42/0.58 mass fraction) and that using pure R600a increases.
机译:由低温热源驱动的双压力有机朗肯循环(ORC)通常在部分负载条件下工作,因此预测此类ORC的非设计性能至关重要。本文基于包括板式换热器,轴流式涡轮机和离心泵在内的模型,提出了双压ORC的非设计性能预测。比较了纯工作流体R600a和混合物R245fa / R600a。滑压力操作策略是在非设计条件下考虑的。结果表明,在设计的热水参数下(热水140°C,64.87 kg / s),与使用R600a的单压ORC相比,使用R600a的双压ORC的净功率高9.57%,而17.32 %高的传热面积。此外,在设计热水参数下,与使用R600a的双压ORC相比,具有R245fa / R600a混合物(质量分数0.42 / 0.58)的双压ORC的净功率高1.04%,传热面积高3.87%。在双压ORC中,与低压泵相比,高压泵的转速受热水进口温度的影响更大。此外,当热水的质量流量比或热水的入口温度增加时,使用建议的混合物R245fa / R600a(质量分数为0.42 / 0.58)的双压ORC与使用纯R600a增加。

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