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Testing of the Katrix rotary lobe expander for distributed concentrating solar combined heat and power systems

机译:用于分布式聚光太阳能热电联产系统的Katrix旋转凸角膨胀机的测试

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AbstractIn this article, we present performance results and analysis of a novel rotary lobe expander device. This is part of a larger research effort into the analysis and design of a small-scale solar system that would compete with available distributed technologies for heat and electricity generation. To choose an appropriate working fluid and components for a distributed concentrating solar combined heat and power (DCS-CHP) system, we compared many different working fluids, collectors, and expander choices. Of the expanders analyzed, including piston expanders, radial inflow turbines, Tesla turbines, screw expanders, and scroll expanders, the rotary lobe expander shows the greatest promise in small-scale power applications due to its high efficiency in expanding fluids over large pressure ratios and its low cost to manufacture. This article focuses on testing of a prototype small-scale expander that was chosen because, to date, no suitable commercial product of less than 10 kW has been found for this application. Initial testing was completed with air to get results that should be indicative of future testing with steam. The test system consists of a compressed air expander (a prototype designed by Katrix, Inc. of Australia) connected to an induction motor driven by a variable frequency drive (VFD) that enables expander testing at varying shaft speeds. Results of the expander testing are reported isentropic efficiencies of 22–25%, thermomechanical efficiencies of 80–95%, and pressure ratios of 6–11 at the tested speeds. Despite mixed results from this particular expander, future refinements could lead to a new class of expanders with low cost and high performance for use in solar combined heat and power and waste-heat recovery.
机译:摘要在本文中,我们介绍了新型旋转凸角膨胀机装置的性能结果和分析。这是对小型太阳能系统进行分析和设计的一项较大研究工作的一部分,该系统将与可用的分布式发电和热发电技术竞争。为了为分布式聚光太阳能热电联产(DCS-CHP)系统选择合适的工作流体和组件,我们比较了许多不同的工作流体,集热器和膨胀机的选择。在分析的膨胀机中,包括活塞膨胀机,径向流入涡轮机,特斯拉涡轮机,螺杆膨胀机和涡旋膨胀机,旋转凸角膨胀机在小功率应用中显示出最大的希望,因为它在大压力比和高压力比下能高效膨胀流体。它的制造成本低。本文重点介绍了选择小型原型扩展器的测试,因为迄今为止,尚未找到适合此应用的低于10kW的合适商业产品。用空气完成了初始测试,以获得的结果应表明将来使用蒸汽进行测试。该测试系统包括一个压缩空气膨胀机(由澳大利亚的Katrix,Inc.设计的原型),该膨胀机连接到由变频驱动器(VFD)驱动的感应电动机,该电动机可以在不同的轴速下进行膨胀机测试。膨胀机测试的结果表明,在测试速度下,等熵效率为22–25%,热机械效率为80–95%,压力比为6–11。尽管该特定膨胀机的结果参差不齐,但未来的改进可能会导致低成本,高性能的新型膨胀机用于太阳能热电联产和余热回收。

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