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Investigation energy, exergy and electricity production performance of an integrated system based on a low-temperature geothermal resource and solar energy

机译:基于低温地热资源和太阳能的综合系统调查能源,电力和电力生产性能

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In this work, energy, exergy and electricity generation performance of an integrated system was conceptually investigated by using Engineering Equation Solver (EES) under 200-1000 W/m(2) solar irradiation interval. The system comprises evacuated tube solar collectors (EVTSCs) with the surface area of 100 m(2), an organic Rankine cycle (ORC) and a low-grade geothermal resource. The EVTSCs were used to enhance the temperature of the low-grade water coming from the geothermal source. The calculations were carried out for three geothermal sources in Kula (63 degrees C), Saraycik (74 degrees C) and Turgutlu (86 degrees C), respectively. N-hexane, n-pentane and n-butane were selected as a working fluid in the ORC. It was determined that the selection of the working fluid affected the performance of the ORC. And also, the waste heat is extracted from the ORC were used efficiently for space heating. As a result, the overall energy and exergy efficiencies of the system and power generation of the ORC were seriously affected by enhancing the water temperature of the geothermal resources by EVTSCs. The maximum overall energy and exergy efficiencies of the system were calculated as to be 6.92% and 21.06% by using n-butane for the source in Turgutlu, respectively. The minimum overall energy and exergy efficiencies of the system were calculated as 0.32% and 2.19% by using n-hexane for the source in Kula, respectively. The maximum and minimum generated electricity were calculated as to be 19.46 kW and 0.6168 kW for the sources in Turgutlu and Kula, respectively. It was seen that the best performance of the system was found for n-butane compared to n-pentane and n-hexane.
机译:在这项工作中,通过使用200-1000W / m(2)太阳照射间隔的工程方程求解器(EES),在概念上调查了集成系统的能量,Deergy和发电性能。该系统包括抽空管太阳能收集器(EVTSC),表面积为100m(2),有机朗肯循环(ORC)和低级地热资源。 EVTSCS用于增强来自地热源的低级水的温度。在Kula(63℃),Saraycik(74℃)和Turgutlu(86℃)中分别进行三种地热源进行。将正己烷,正戊烷和正丁烷选择为矿石中的工作液。确定工作流体的选择影响了ORC的性能。而且,废热从兽人中提取,有效地用于空间加热。因此,通过增强EVTSCS的地热资源的水温,对兽人的系统和发电的总能量和发电效率受到严重影响。通过使用Turgutlu的源的N-丁烷分别计算系统的最大总能量和漏胀效率为6.92%和21.06%。通过使用KULA的源的N-己烷分别计算系统的最小总能量和漏胀效率为0.32%和2.19%。为Turgutlu和Kula的来源分别计算最大和最小产生的电力为19.46千瓦和0.6168千瓦。有人看来,与正戊烷和正己烷相比,发现了该系统的最佳性能。

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