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Multi-criteria evaluation of several million working fluids for waste heat recovery by means of Organic Rankine Cycle in passenger cars and heavy-duty trucks

机译:通过有机朗肯循环,对乘用车和重型卡车中用于废热回收的数百万种工作流体进行多标准评估

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摘要

Automotive industry is driven by economic and legislative constraints to increase fuel efficiency and reduce CO2-emissions to a certain extend. To reach the required threshold values, manufacturers consider waste heat recovery by means of Organic Rankine Cycle (ORC) in passenger cars and heavy-duty trucks. This work deals with the crucial issue of identifying an optimal working fluid which is flexible in terms of application and condensing temperature and which is applicable in real systems. For this purpose, a large-scale screening based on computational chemistry and thermodynamic process simulation is coupled with a multi-criteria evaluation. In total, about 72 million chemical substances provided by the PubChem database are screened and more than 3000 promising candidates are evaluated considering COSMO-RS based thermodynamic data as well as constructional, regulatory and security aspects. Five promising working fluids are identified and it is shown that these fluids outperform widely discussed candidates like synthetic refrigerants. Even more remarkably is the fact that within the TOP 100 working fluids only twelve have already been reported in ORC literature. However, the optimal set of working varies as it depends on configuration (with and without mass flow splitting) and condensing temperature. In general, the study demonstrates that a large-scale screening of the complete chemical space can reveal unconventional working fluids for thermodynamic cycles.
机译:汽车行业受到经济和法律限制的推动,以提高燃油效率并在一定程度上减少CO2排放。为了达到所需的阈值,制造商考虑通过有机朗肯循环(ORC)在乘用车和重型卡车中回收废热。这项工作涉及确定最佳工作流体的关键问题,该流体在应用和冷凝温度方面很灵活,并且可以在实际系统中使用。为此,基于计算化学和热力学过程模拟的大规模筛选与多标准评估相结合。考虑到基于COSMO-RS的热力学数据以及构造,法规和安全性方面的信息,总共筛选了PubChem数据库提供的约7200万种化学物质,并对3000多种有希望的候选物质进行了评估。确定了五种有前途的工作流体,结果表明,这些流体优于合成制冷剂等广泛讨论的候选流体。更为显着的是,在TOP 100工作流体中,ORC文献中仅报告了十二种流体。但是,最佳的工作方式因配置(有和没有质量流量分配)和冷凝温度而异。通常,该研究表明,对整个化学空间进行大规模筛选可以揭示热力学循环中非常规的工作流体。

著录项

  • 来源
    《Applied Energy》 |2017年第15期|887-899|共13页
  • 作者单位

    Univ Bayreuth, Ctr Energy Technol, Univ Str 30, D-95447 Bayreuth, Germany|Vorarlberg Univ Appl Sci, Energy Res Ctr, Illwerke Vkw Professorship Energy Efficiency, A-6850 Dornbirn, Austria;

    COSMOlogic GmbH & Co KG, Irnbacher Weg 46, D-51379 Leverkusen, Germany;

    COSMOlogic GmbH & Co KG, Irnbacher Weg 46, D-51379 Leverkusen, Germany|Univ Regensburg, Inst Phys & Theoret Chem, Univ Str 31, D-93053 Regensburg, Germany;

    Univ Bayreuth, Ctr Energy Technol, Univ Str 30, D-95447 Bayreuth, Germany;

  • 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

    Organic Rankine Cycle; COSMO-RS; PubChem; Working fluid; Automotive application; Multi-criteria evaluation;

    机译:有机朗肯循环;COSMO-RS;PubChem;工作液;汽车应用;多标准评估;

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