...
首页> 外文期刊>Applied Energy >Thermodynamic performance simulation and design optimisation of trilateral-cycle engines for waste heat recovery-to-power generation
【24h】

Thermodynamic performance simulation and design optimisation of trilateral-cycle engines for waste heat recovery-to-power generation

机译:余热发电三边循环发动机热力性能仿真与设计优化

获取原文
获取原文并翻译 | 示例
           

摘要

The trilateral cycle (TLC) is one of the most promising alternatives among the heat recovery-to-power technologies, due to its compact system configuration and high performance at relatively low compression work and low-to-moderate expander inlet temperature. These feats make the TLC beneficial for off-grid applications particularly in remote or offshore applications where power-to-weight ratio of the power plant is of significance. This study presents the thermodynamic performance simulation and design optimisation of the TLCs using unconventional working fluid for heat recovery-to-power generation from low-grade waste heat, which is considered for process development and integration of the TLC. Four system configurations, comprising the simple TLC, recuperated TLC, reheat TLC and regenerative TLC are analysed and compared their performance metrics. Based on the theory of steady-state steady-flow thermodynamics, the simulation models of the TLC power plants, corresponding to their thermodynamic processes are established and implemented using engineering equation solver. The results show that the thermal efficiencies of the simple TLC, recuperated TLC, reheat TLC and regenerative TLC employing n-pentane are 11.85-21.97%, 12.32-23.91%, 11.86-22.07% and 12.01-22.9% respectively at subcritical operating conditions with low-grade heat in the temperature limit of 393-473 K. These suggest that the thermal integration of the optimised design of the simple TLC enhanced heat exchange efficiencies as well as the performance metrics. A comparative study among these cycles shows that the proposed recuperated TLC achieved the best performance metrics. (C) 2015 Elsevier Ltd. All rights reserved.
机译:三边循环(TLC)由于其紧凑的系统配置和在相对较低的压缩工作和低至中等的膨胀机入口温度下的高性能而成为热回收发电技术中最有希望的替代方案之一。这些壮举使TLC对于离网应用特别是在偏远或海上应用中非常有用,在偏远或海上应用中,电厂的功率重量比至关重要。本研究介绍了使用非常规工作流体从低品位废热中回收热量以发电的TLC的热力学性能仿真和设计优化,这被认为是TLC的工艺开发和集成。分析并比较了四种系统配置,包括简单的TLC,热回收TLC,再热TLC和再生TLC,并比较了它们的性能指标。基于稳态稳态流热力学理论,利用工程方程求解器建立并实现了TLC电厂的热力学过程仿真模型。结果表明,在亚临界运行条件下,采用正戊烷的简单TLC,回热TLC,再热TLC和再生TLC的热效率分别为11.85-21.97%,12.32-23.91%,11.86-22.07%和12.01-22.9%。在393-473 K的温度极限内产生低级热量。这表明,简单TLC的优化设计的热集成提高了热交换效率以及性能指标。在这些周期中进行的比较研究表明,拟议的回收TLC达到了最佳性能指标。 (C)2015 Elsevier Ltd.保留所有权利。

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