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Multiobjective Optimization of a Plate Heat Exchanger in a Waste Heat Recovery Organic Rankine Cycle System for Natural Gas Engines

机译:用于天然气发动机废热回收有机朗肯循环系统的板式换热器的多目标优化

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摘要

A multiobjective optimization of an organic Rankine cycle (ORC) evaporator, operating with toluene as the working fluid, is presented in this paper for waste heat recovery (WHR) from the exhaust gases of a 2 MW Jenbacher JMS 612 GS-N.L. gas internal combustion engine. Indirect evaporation between the exhaust gas and the organic fluid in the parallel plate heat exchanger (ITC2) implied irreversible heat transfer and high investment costs, which were considered as objective functions to be minimized. Energy and exergy balances were applied to the system components, in addition to the phenomenological equations in the ITC2, to calculate global energy indicators, such as the thermal efficiency of the configuration, the heat recovery efficiency, the overall energy conversion efficiency, the absolute increase of engine thermal efficiency, and the reduction of the break-specific fuel consumption of the system, of the system integrated with the gas engine. The results allowed calculation of the plate spacing, plate height, plate width, and chevron angle that minimized the investment cost and entropy generation of the equipment, reaching 22.04 m2 in the heat transfer area, 693.87 kW in the energy transfer by heat recovery from the exhaust gas, and 41.6% in the overall thermal efficiency of the ORC as a bottoming cycle for the engine. This type of result contributes to the inclusion of this technology in the industrial sector as a consequence of the improvement in thermal efficiency and economic viability.
机译:有机兰金循环(ORC)蒸发器的多目标优化,用甲苯作为工作流体操作,在该纸废热回收(WHR)从一个2MW的颜巴赫JMS 612个GS-N.L的排气呈现。气体内燃机。废气与在平行板热交换器(ITC2)有机流体之间的间接蒸发暗示不可逆的热传递和高的投资费用,这被认为是要被最小化的目标函数。能量和有效能平衡被应用到系统组件,除了唯象方程在ITC2,计算全局能量的指标,如配置的热效率,热回收效率,整体的能量转换效率,绝对增加的发动机的热效率,并且该系统的破裂特定燃料消耗与燃气发动机集成的系统,的降低。结果允许计算板间距,板材高度,板宽和雪雕型角度,最小化设备的投资成本和熵生成,在传热面积达到22.04平方米,通过热量回收来达到693.87 kW废气,磁体总热效率为41.6%,作为发动机的底部循环。由于对热效率和经济可行性的改善,这种结果有助于在工业部门中包含该技术。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2019(21),7
  • 年度 2019
  • 页码 655
  • 总页数 21
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:收购成本;熵生成数;热交换器;多目标优化;兽人;废热回收;

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