热管参数对最小化熵产率的影响分析

Rakesh Hari, C. Muraleedharan
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引用次数: 3

摘要

热管系统中的传热和流体流动导致热力学不可逆性,产生熵。最小熵产生原理可用于平面热管的优化设计。本文的目的是在一定的约束条件下,以不同参数的平面热管为目标函数,使总熵产率最小。这些约束构成了热管传热能力的限制。使用LINGO 15.0软件解决了具有非线性约束的物理非线性规划问题,该软件能够找到熵生成最小的独立设计变量的最佳值。研究了热负荷、长度和散热器温度对设计变量及相应熵产的影响。利用最小熵产生原理进行第二定律分析是设计增强型热管的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Effect of Heat Pipe Parameters in Minimising the Entropy Generation Rate
Heat transfer and fluid flow in the heat pipe system result in thermodynamic irreversibility generating entropy. The minimum entropy generation principle can be used for optimum design of flat heat pipe. The objective of the present work is to minimise the total entropy generation rate as the objective function with different parameters of the flat heat pipe subjected to some constraints. These constraints constitute the limitations on the heat transport capacity of the heat pipe. This physical nonlinear programming problem with nonlinear constraints is solved using LINGO 15.0 software, which enables finding optimum values for the independent design variables for which entropy generation is minimum. The effect of heat load, length, and sink temperature on design variables and corresponding entropy generation is studied. The second law analysis using minimum entropy generation principle is found to be effective in designing performance enhanced heat pipe.
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