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EXPERIMENTAL STUDY ON THE ORGANIC RANKINE CYCLE POWER SYSTEM ADOPTING DUAL EXPANDERS IN PARALLEL

机译:并联双扩展器的有机兰循环动力系统的实验研究

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This study aims to evaluate the performance of an organic Rankine cycle (ORC) power system adopting dual expanders in parallel by experiment. A dual-expander ORC system was designed to provide competitive advantages over a general single expander ORC system in typical applications with large thermal fluctuation of heat sources such as solar heat, marine waste heat, and etc. The ORC system consists of two scroll expanders installed in parallel, a hydraulic diaphragm type pump to feed and pressurize the working fluid, R-245fa, two plate heat exchangers for the evaporator and the condenser, and two generators with shaft power torque meters. The two scroll expanders were modified from two oil-free air scroll compressors, and were tested in the ORC loop with R245fa. The maximum isentropic efficiency of each expander was measured about 53%, and the shaft power was reached to about 2kW. The hot water was used as heat source, and the water temperature was controlled up to 150 °C by the 100 kW-class electric heater. A circulating air-cooled chiller was utilized for the control of the cooling water temperature. In order to determine the static performance of the system, efficiencies and shaft powers were measured with 130 °C heat source temperature. In addition, performance tests were conducted with various working fluid mass flow rates to control pressure ratios. The characteristics and total thermal efficiency of the dual parallel expander ORC system and optimal operating modes are addressed.
机译:本研究旨在通过实验评估采用双膨胀机的有机朗肯循环(ORC)电力系统的性能。双膨胀机ORC系统旨在在典型应用中提供比一般的单膨胀机ORC系统更具竞争优势的典型应用,这些应用在热源(如太阳热,海洋废热等)的热波动较大的情况下。该ORC系统由两个已安装的涡旋式膨胀机组成并行地,有一个液压隔膜式泵来供给和加压工作流体R-245fa,两个用于蒸发器和冷凝器的板式热交换器以及两个带有轴功率扭矩计的发电机。这两个涡旋式膨胀机是从两个无油的空气涡旋式压缩机改造而来,并在RCfa的ORC回路中进行了测试。测得每个膨胀机的最大等熵效率约为53%,轴功率达到约2kW。使用热水作为热源,并通过100 kW级电加热器将水温控制在150°C。利用循环风冷式冷却器来控制冷却水温度。为了确定系统的静态性能,在130°C热源温度下测量了效率和轴功率。此外,还对各种工作流体质量流量进行了性能测试,以控制压力比。解决了双并联膨胀机ORC系统的特性和总热效率以及最佳运行模式。

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