有机朗肯循环
工作液
燃烧
兰金度
朗肯循环
余热回收装置
内燃机
选择(遗传算法)
环境科学
工艺工程
废物管理
内部加热
余热
工程类
机械工程
热力学
计算机科学
功率(物理)
热交换器
化学
物理
人工智能
有机化学
作者
Xingyuan Su,Timothy A. Shedd
标识
DOI:10.1016/j.applthermaleng.2018.07.036
摘要
Abstract Working fluid selection is one of the most important procedures in the design of Rankine cycle based waste heat recovery systems for internal combustion engines. The system’s performance, cost, and environmental impacts can be greatly influenced by the properties of its working fluid. In this work, we present an original formulation of a theoretical thermal efficiency model to fundamentally understand how the working fluid properties affect the thermal performance of the Rankine cycle based waste heat recovery systems for internal combustion engines. The derived theoretical thermal efficiency formula is validated under several different operating conditions. Overall very good agreements are achieved between the actual and theoretical approximated solutions. The results show that when the evaporation and condensation temperatures of the waste heat recovery system are fixed, the system’s thermal efficiency is simply governed by a non-dimensionalized parameter Jakob number. A working fluid with a smaller Jakob number is preferable in terms of system thermal efficiency. The observation is also further understood from a more fundamental physical perspective. Finally, a preliminary working fluid selection approach with a solid physics is proposed to screen the fluid candidates from the perspective of system performance.
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