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On site experimental evaluation of a low-temperature solar organic Rankine cycle system for RO desalination

机译:用于RO脱盐的低温太阳能有机朗肯循环系统的现场实验评估

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摘要

The paper presents the on site experimental evaluation of the performance of a low-temperature solar organic Rankine cycle system (SORC) for reverse osmosis (RO) desalination. This work is a research step forward to the experimental evaluation of the SORC under laboratory conditions, where the system was tested using an electric brake as load and an electric thermal heater as heat supply. The difference is that solar collectors have been applied as heat supply and there has been a realistic investigation of the performance of the system under the conditions implied by solar energy. The thermal energy produced by the solar collectors' array evaporates the refrigerant HFC-134a in the pre-heater-evaporator surfaces of the Rankine engine. The superheated vapour is then driven to the expander, where the generated mechanical work produced from expansion drives the high-pressure pump of the RO desalination unit. The superheated vapour at the expander's outlet is directed to the condenser and condensates. Finally, the saturated liquid at the condenser outlet is pressurized by a positive displacement pump and the thermodynamic cycle is repeated. A special energy recovery system of Axial Pistons Pumps (APP) has been integrated into the RO unit to minimise the specific energy consumption. The results prove that the above concept is technically feasible and continuous operation is achieved under the intermittent availability of solar energy. However, considerably low efficiency has been observed, in comparison with the results taken under controlled thermal load. Nevertheless, it becomes apparent that further optimisation work is required to improve the system efficiency. The research work has been done within the framework of COOP-CT-2003-507997 contract, partly financed by EC.
机译:本文介绍了用于反渗透(RO)脱盐的低温太阳能有机朗肯循环系统(SORC)性能的现场实验评估。这项工作是在实验室条件下对SORC进行实验评估的研究步骤,该系统使用电制动器作为负载并使用电热加热器作为供热系统进行了测试。不同之处在于已将太阳能收集器用作热源,并且在太阳能所隐含的条件下对系统的性能进行了实际研究。太阳能收集器阵列产生的热能使朗肯发动机的预热器-蒸发器表面中的制冷剂HFC-134a蒸发。然后,过热蒸气被驱动到膨胀机,在膨胀机中,膨胀产生的机械功驱动反渗透淡化装置的高压泵。膨胀机出口处的过热蒸汽被引导至冷凝器并凝结。最终,在冷凝器出口处的饱和液体被容积泵加压,并重复热力学循环。 RO单元中集成了特殊的轴向柱塞泵(APP)能量回收系统,以最大程度地降低能耗。结果证明,以上概念在技术上是可行的,并且在太阳能的间歇可用性下可以实现连续运行。但是,与在受控的热负荷下获得的结果相比,已观察到相当低的效率。然而,显而易见的是,需要进一步的优化工作以提高系统效率。该研究工作已在COOP-CT-2003-507997合同的框架内完成,该合同部分由EC资助。

著录项

  • 来源
    《Solar Energy》 |2009年第5期|646-656|共11页
  • 作者单位

    Department of Natural Resources and Agricultural Engineering, Agricultural University of Athens, 75 lera Odos Street, 11855 Athens, Attica, Greece;

    Department of Natural Resources and Agricultural Engineering, Agricultural University of Athens, 75 lera Odos Street, 11855 Athens, Attica, Greece;

    Department of Natural Resources and Agricultural Engineering, Agricultural University of Athens, 75 lera Odos Street, 11855 Athens, Attica, Greece;

    Department of Natural Resources and Agricultural Engineering, Agricultural University of Athens, 75 lera Odos Street, 11855 Athens, Attica, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solar energy; organic Rankine cycle; RO desalination; RO energy recovery;

    机译:太阳能;有机朗肯循环;反渗透淡化;RO能量回收;

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