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Converting a commercial scroll compressor into an expander: Experimental and analytical performance evaluation

机译:将商用涡旋压缩机转换为膨胀机:实验和分析性能评估

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摘要

The development of low cost small scale Organic Rankine Cycle (ORC) has a very interesting potential in generating electricity using low temperature waste heat sources. Moreover, HVAC companies could significantly extend their market if a commercial scroll compressor can be converted into an expander using similar units. Therefore, this work reports experimental test funded by an Italian HVAC company on a scroll compressor modified to work as scroll expander in a non-regenerative cycle and a subcritical fluid regime, aimed at reducing system cost and complexity. The scroll expander has been tested with its fluid R410A in a ORC cycle in order to obtain the isentropic efficiency of the scroll expander (0.5) and the pump (0.4). On the basis of the experimental tests, a model accomplished by means of MATLAB/CoolProp has been set up to evaluate the performance of the ORC group to achieve 10 kWe as target power output. Four operative fluids have been simulated, i.e. R245fa, R134a, R1234yf, R1234ze, fixing 100°C as evaporating temperature and considering the condenser temperature in the range 20-50°C. The results have showed that R245fa is the most promising working fluid since there is a higher expansion ratio within lower pressure values. As a consequence, not only a lower mass flow rate is necessary, but overall a lower pump consumption is needed, reaching greater overall conversion efficiency (about 6.5% with condensing temperature of 20°C) and power. Thus, a commercial heat pump scroll compressor can be effectively converted into an expander. The fluid selection shows that the most common ORC fluid can be used with relative low performance but at low cost and easy management. © 2017 The Author(s).
机译:低成本小型有机朗肯循环(ORC)的发展在利用低温废热源发电方面具有非常有趣的潜力。此外,如果可以使用类似的设备将商用涡旋压缩机转换为膨胀机,HVAC公司可以大大扩展其市场。因此,这项工作报告了由一家意大利HVAC公司资助的涡旋压缩机的实验测试,该涡旋压缩机经过改装,可在非再生循环和亚临界流体状态下用作涡旋膨胀机,旨在降低系统成本和复杂性。为了获得涡旋膨胀器(0.5)和泵(0.4)的等熵效率,已经对涡旋膨胀器及其流体R410A进行了ORC循环测试。在实验测试的基础上,建立了一个通过MATLAB / CoolProp实现的模型,以评估ORC组的性能,以达到10 kWe作为目标功率输出。模拟了四种工作流体,即R245fa,R134a,R1234yf,R1234ze,将100°C固定为蒸发温度,并考虑冷凝器温度在20-50°C范围内。结果表明,R245fa是最有前途的工作流体,因为在较低压力值下具有较高的膨胀比。结果,不仅需要较低的质量流量,而且总体上也需要较低的泵消耗,从而实现更高的整体转换效率(冷凝温度为20°C时约为6.5%)和功率。因此,可以将商用热泵涡旋压缩机有效地转换成膨胀机。流体的选择表明,最常用的ORC流体可以以相对较低的性能使用,但成本较低且易于管理。 ©2017作者。

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