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首页> 外文期刊>Energy and Buildings >Working fluids selection and parametric optimization of an Organic Rankine Cycle coupled Vapor Compression Cycle (ORC-VCC) for air conditioning using low grade heat
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Working fluids selection and parametric optimization of an Organic Rankine Cycle coupled Vapor Compression Cycle (ORC-VCC) for air conditioning using low grade heat

机译:使用低等级热量的空调的有机朗肯循环耦合蒸汽压缩循环(ORC-VCC)的工作流体选择和参数优化

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摘要

This paper presents the thermal performance of several combinations of working fluids in the Organic Rankine Cycle (ORC) powered Vapor Compression Cycle (VCC), for the domestic air conditioning. Seven working fluids, R245fa, 8123, R134a, R1234yf, R1234ze (E), Butane and Isobutane were considered and a total of forty nine candidates were analyzed. The objective was defined to provide air at 15 degrees C to a space whose temperature was desired to be at 24 degrees C, as the outdoor temperature varies from 30 degrees C-40 degrees C. The hot water at 100 degrees C and 1.5 atm was considered as the heat source. With pressure ratios, COP, mass flow rates and the ratio of COP to pressure ratio as the performance indicators, Isobutane gave the best performance in the standalone VCC. For the ORC as the prime mover for the VCC, by considering the system thermal efficiency, cycle pressure ratios, mass flow rates and expander outlet volumetric flow rates as the criteria, R134a was found to be the best candidate. Henceforth R134a ORC- Isobutane VCC was the best combination. And by optimizing the-system parameters of the VCC condenser sub cooling, its condenser temperature and the ORC condenser pressure, this combination gave a COP of 0.219, with dry air at the VCC evaporator inlet and 0.281, with 50% relative humidity air at the VCC evaporator inlet. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文介绍了有机朗肯循环(ORC)驱动的蒸汽压缩循环(VCC)中用于家用空调的几种工作流体组合的热性能。考虑了7种工作液,分别为R245fa,8123,R134a,R1234yf,R1234ze(E),丁烷和异丁烷,总共分析了49个候选流体。该目标的定义是,随着室外温度从30摄氏度到40摄氏度变化,将15摄氏度的空气提供给温度期望为24摄氏度的空间。100摄氏度和1.5个大气压的热水是被认为是热源。以压力比,COP,质量流量和COP与压力比之比为性能指标,异丁烷在独立的VCC中提供了最佳性能。对于ORC作为VCC的原动力,通过考虑系统热效率,循环压力比,质量流率和膨胀机出口体积流率作为标准,R134a被认为是最佳人选。此后,R134a ORC-异丁烷VCC是最佳组合。通过优化VCC冷凝器过冷的系统参数,冷凝器温度和ORC冷凝器压力,该组合得出的COP为0.219,VCC蒸发器入口处的干燥空气为0.281,相对湿度为50%的空气。 VCC蒸发器入口。 (C)2016 Elsevier B.V.保留所有权利。

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