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A new design method for Organic Rankine Cycles with constraint of inlet and outlet heat carrier fluid temperatures coupling with the heat source

机译:具有入口和出口载热流体温度与热源耦合的有机朗肯循环的新设计方法

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摘要

A design method for ORCs is newly proposed to fully couple the ORC with the heat source. The heat source is characterized by the mass flow rate, inlet and outlet heat carrier fluid temperatures. Example cases were performed to study the optimal running parameters for ORCs with constraint of given heat source and pinch temperature difference in evaporators. Benzene is selected as the working fluid. The results show that a higher turbine inlet temperature requires a lower turbine inlet pressure, leading to a lower system thermal efficiency. The optimal (maximum) thermal efficiency appears at the saturated or slightiy-superheated vapor state at the turbine inlet. The pinch temperature differences in evaporators strongly influence the system thermal efficiency. At higher turbine inlet temperatures, either the condenser or the evaporator contributes the major exergy destruction, depending on the flue gas inlet temperatures. At lower turbine inlet temperatures, the evaporator, expander and condenser are the first, second and third contributions of the exergy destruction to the whole system. The exergy destruction by the condenser is significantly decreased with decreases in the turbine inlet temperatures.
机译:最近提出了一种ORC的设计方法,以将ORC与热源完全耦合。热源的特征在于质量流量,入口和出口载热流体温度。在给定热源和夹点温差限制下,研究了ORC的最佳运行参数示例。选择苯作为工作流体。结果表明,较高的涡轮入口温度需要较低的涡轮入口压力,从而导致较低的系统热效率。最佳(最大)热效率出现在涡轮机入口处的饱和或略微过热的蒸汽状态。蒸发器中的收缩温差会严重影响系统的热效率。在较高的涡轮机入口温度下,冷凝器或蒸发器会造成主要的火用破坏,具体取决于烟气入口温度。在较低的涡轮机入口温度下,蒸发器,膨胀器和冷凝器是火用破坏对整个系统的第一,第二和第三贡献。随着涡轮机入口温度的降低,冷凝器的火用破坏显着降低。

著录项

  • 来源
    《Applied Energy》 |2012年第2012期|p.562-573|共12页
  • 作者单位

    State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources, North China Electric Power University, Beijing 102206, PR China;

    The Beijing Key Laboratory of New and Renewable Energy, North China Electric Power University, Beijing 102206. PR China;

    The Beijing Key Laboratory of Multiphase Flow and Heat Transfer, North China Electric Power University, Beijing 102206, PR China;

  • 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

    low grade energy; organic rankine cycle; thermal efficiency; exergy destruction;

    机译:低品位能源;有机朗肯循环热效率;火用破坏;

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