首页> 外文期刊>Journal of thermal analysis and calorimetry >Comparative analysis and multi-criteria optimization of a supercritical recompression CO(2)Brayton cycle integrated with thermoelectric modules
【24h】

Comparative analysis and multi-criteria optimization of a supercritical recompression CO(2)Brayton cycle integrated with thermoelectric modules

机译:超临界再压缩CO(2)布雷顿循环与热电模块集成的比较分析与多标准优化

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Regarding the high expense of the exploiting energy from energy resources, each innovation or modification on the energy systems with the aim of enhancing the efficiency and affordability is so valuable. Along with this fact, in the present work, the effects of employing thermoelectric (TEG) unit in a recompression Brayton cycle (sCO(2)-reB/TEG) are examined. The results of thermodynamic modeling represents that adding the thermoelectric to the system in the sCO(2)-reB can improve the net output power about 2.41 kW and increase the first and second law efficiency of sCO(2)-reB/TEG system about 1.09% and 1.12% in comparison with sCO(2)-reB system. Additionally the exergo-economic analysis for sCO(2)-reB/TEG revealed that the reactor and turbine II should be considered more than other elements from exergo-economic point of view since the highest values of (Z) over dot(k) + (C) over dot(D,k) belong to these components. After identifying the important parameters as well as evaluating system from thermodynamic and economic aspects, a multi-objective optimization is implemented on the sCO(2)-reB-TEG system for determining the optimum conditions. Two optimization scenarios are defined using the results of parametric analysis. Multi-objective optimization with first scenario results in total cost rate of 1.6 $ h(-1)and total exergy efficiency of 0.5 in minimum temperature, maximum temperature and compression ratio of 36.17 degrees C, 577.15 degrees C and 1.6. Furthermore, for optimization based on second scenario results in total exergy destruction cost and exergy destruction rate of 3.04 $ h(-1)and 435.85 kW in 48.75 degrees C, 569.77 degrees C and 3.44 for minimum temperature, maximum temperature and compression ratio.
机译:考虑到从能源资源中开发能源的高昂成本,为了提高效率和可承受性而对能源系统进行的每一次创新或改造都是非常有价值的。除此之外,本文还研究了在再压缩布雷顿循环(sCO(2)-reB/TEG)中使用热电(TEG)装置的效果。热力学模拟结果表明,与sCO(2)-reB系统相比,在sCO(2)-reB系统中加入热电元件可以提高净输出功率约2.41kW,并使sCO(2)-reB/TEG系统的第一定律和第二定律效率分别提高1.09%和1.12%。此外,对sCO(2)-reB/TEG的exergo经济分析表明,从exergo经济角度来看,反应堆和涡轮机II应比其他元素考虑得更多,因为(Z)超过点(k)+(C)超过点(D,k)的最高值属于这些组件。在确定了重要参数并从热力学和经济性方面对系统进行了评价后,对sCO(2)-reB-TEG系统进行了多目标优化,以确定最佳条件。利用参数分析结果定义了两种优化方案。第一种方案的多目标优化结果是,在最低温度、最高温度和压缩比分别为36.17℃、577.15℃和1.6的情况下,总成本率为1.6$h(-1),总火用效率为0.5。此外,对于基于第二种方案的优化,在最低温度、最高温度和压缩比分别为48.75℃、569.77℃和3.44℃时,总的火用破坏成本和火用破坏率分别为3.04$h(-1)和435.85 kW。

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