首页> 外文期刊>International journal of low carbon technologies >Finite-time exergoeconomic performance of a real intercooled regenerated gas turbine cogeneration plant. Part 2: heat conductance distribution and pressure ratio optimization
【24h】

Finite-time exergoeconomic performance of a real intercooled regenerated gas turbine cogeneration plant. Part 2: heat conductance distribution and pressure ratio optimization

机译:真正的中冷式再生燃气轮机热电联产厂的有限时间的经济经济性能。第2部分:热导分布和压力比优化

获取原文
           

摘要

Finite-time thermodynamics is applied to establish a real intercooled regenerated gas turbine cogeneration plant model in Part 1 of this article and the profit rate performance of the plant is researched using finite-time exergoeconomic analysis. In this part, the optimization of finite-time exergoeconomic performance of the plant is performed by optimizing the intercooling pressure ratio and the heat conductance distributions among the hot-, cold- and consumer-side heat exchangers, the intercooler and the regenerator together, and it is found that the optimal heat conductance distribution of the regenerator is zero. When the heat conductance distribution of the regenerator is fixed, the results show that there exists an optimal intercooling pressure ratio and a group of optimal heat conductance distributions among the other four heat exchangers, which leads to a maximum dimensionless profit rate for the fixed total pressure ratio. When the total pressure ratio is variable, a double-maximum dimensionless profit rate is obtained. The characteristics of the double-maximum dimensionless profit rate, the corresponding exergetic efficiency, heat conductance distributions and total pressure ratio versus some main design parameters are analyzed in detail. Finally, it is found that the dimensionless profit rate has a thrice-maximum value with respect to the thermal capacitance rate matching between the working fluid and the heat reservoir.
机译:在本文的第1部分中,使用有限时间热力学建立了一个真实的中冷式再生燃气轮机热电联产工厂模型,并利用有限时间的人体经济分析研究了该工厂的利润率性能。在这一部分中,通过优化热侧,冷侧和用户侧热交换器,中间冷却器和再生器之间的中间冷却压力比和热传导分布,来优化工厂的有限时间能效性能。发现再生器的最佳热导分布为零。当蓄热器的导热系数分布固定时,结果表明在其他四个热交换器之间存在最佳的中间冷却压力比和一组最佳的导热系数分布,这导致固定总压力下的最大无量纲利润率比。当总压力比可变时,可以获得双最大无量纲利润率。详细分析了双最大无量纲利润率,相应的能量效率,热传导分布和总压比与一些主要设计参数的特征。最后,发现相对于工作流体和储热器之间的热电容率匹配,无量纲利润率具有三次最大值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号