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Energy efficiency analysis of Organic Rankine Cycles with scroll expanders for cogenerative applications

机译:使用涡旋膨胀机进行热电联产的有机朗肯循环能效分析

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摘要

Small scale Organic Rankine Cycle (ORC) systems has been the object of a large number of studies in the last decade, because of their suitability for energy recovery and cogenerative applications. The paper presents an ORC numerical model and its applications to two different case studies; the code has been obtained by combining a one-dimensional model of a scroll machine and a thermodynamic model of a whole ORC system. Series production components, such as scroll compressors, from HVAC field, have been first considered in order to reduce costs, because this is a critical issue for small scale energy recovery and cogeneration systems. The detailed model of the scroll machine is capable to calculate the performances of both a compressor and an expander, as function of the geometry of the device and of the working fluid. The model has been first tested and validated by comparing its outputs with experimental tests on a commercial scroll compressor, then used to calculate the working curves of commercial scroll machines originally designed as compressors in the HVAC field, but operating as expanders. The model of the expander has been then integrated in the thermodynamic model of the ORC system. A series of comparisons have been carried out in order to evaluate how the performances are influenced by cycle parameters, scroll geometry and working fluid for different applications. The results confirm the feasibility of small scale CHP systems with acceptable electrical efficiency, taking into account the low-temperature thermal source, the small power output and the low-cost series production components employed.
机译:小型有机朗肯循环(ORC)系统由于其适用于能量回收和热电联产的应用,在过去十年中已成为许多研究的对象。本文介绍了ORC数值模型及其在两个不同案例研究中的应用;该代码是通过将涡旋机的一维模型与整个ORC系统的热力学模型相结合而获得的。为了降低成本,首先考虑了批量生产组件,例如HVAC领域的涡旋压缩机,因为这对于小规模的能量回收和热电联产系统来说是一个关键问题。涡旋机的详细模型能够根据装置的几何形状和工作流体来计算压缩机和膨胀机的性能。该模型首先通过将其输出与商用涡旋压缩机上的实验测试进行比较来进行测试和验证,然后用于计算最初设计为HVAC领域但用作膨胀机的商用涡旋机的工作曲线。然后,将膨胀器的模型集成到ORC系统的热力学模型中。为了评估性能如何受到不同应用的循环参数,涡旋几何形状和工作流体的影响,进行了一系列比较。结果证明,考虑到低温热源,小功率输出和所采用的低成本批量生产组件,具有可接受的电效率的小型CHP系统的可行性。

著录项

  • 来源
    《Applied Energy》 |2012年第2012期|p.792-801|共10页
  • 作者单位

    University of Trieste, Department of Mechanical Engineering and Naval Architecture, Via A. Valeria 10, 34127 Trieste, Italy;

    University of Trieste, Department of Mechanical Engineering and Naval Architecture, Via A. Valeria 10, 34127 Trieste, Italy;

    University of Trieste, Department of Mechanical Engineering and Naval Architecture, Via A. Valeria 10, 34127 Trieste, Italy;

    University of Trieste, Department of Mechanical Engineering and Naval Architecture, Via A. Valeria 10, 34127 Trieste, Italy;

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

    ORC; scroll expander; energy recovery; micro-cogeneration;

    机译:ORC;滚动扩展器;能量恢复;微型热电联产;

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