Design and Operation Strategy of Micro Organic Rankine Cycle with Zeotropic Binary Mixtures for Low Grade Geothermal Energy

Ryosuke Akimoto, M. Nakaiwa, Keigo Matsuda
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Abstract

In this study, we proposed a micro ORC with zeotropic mixture of less than 20 kW using low-grade geothermal heat energy and investigated the power generation performance of 3 kinds of zeotropic working fluids with different vapor-liquid equilibrium. Simulations were carried out for 3 cases with a constant heat source temperature of 373K and flow rates of 3000, 7000 and 15000 kg/h. In the flow rate of the heat source was set to 7,000 kg/h, only 4 cases generated of power. For n-butane / ethanol = 0.7 / 0.3 was used as the working fluid, the power generation was 16.1 kW with 5.83% of the thermal efficiency which was higher than Carnot efficiency (4.28%). In the flow rate of 3,000 kg/h of heat source, by using n-butane / 1-propanol = 0.4 / 0.6 as the zeotropic working fluid, 6.52 kW could be generated. From the analysis using T-H and T-s diagrams, it is found that the zeotropic working fluid can effectively function as a temperature glide with composition change for low-grade geothermal heat sources with large temperature drop, and thus can be a power generation.
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低品位地热能双组分共沸有机朗肯循环设计与运行策略
在本研究中,我们提出了一种使用低品位地热的小于20 kW的共沸混合物的微型ORC,并研究了3种不同汽液平衡的共沸工质的发电性能。模拟了热源温度为373K,流量为3000、7000和15000 kg/h的3种情况。在热源流量设定为7000 kg/h时,仅4例产生电能。当工质为正丁烷/乙醇= 0.7 / 0.3时,发电量为16.1 kW,热效率为5.83%,高于卡诺效率(4.28%)。在热源流量为3000 kg/h时,以正丁烷/ 1-丙醇= 0.4 / 0.6为共沸工质,可产生6.52 kW。通过T-H图和T-s图分析发现,对于温度下降较大的低品位地热热源,共向工质可以有效地起到成分变化的温度滑动作用,可以发电。
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