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Optimal configuration of heat engines for maximum efficiency with generalized radiative heat transfer law

机译:优化的热力发动机配置,利用广义辐射热传递定律获得最大效率

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摘要

Optimal configuration of a class of endoreversible heat engines with generalized radiative heat transfer law [q (Tn)] has been determined by this paper. The optimal cycle that maximizes the efficiency of the engines with fixed input energy has been obtained using optimal-control theory, and the differential equations are solved by Taylor series expansion. It is shown that the optimal cycle for maximum efficiency has eight branches including two isothermal branches, four maximum-efficiency branches and two adiabatic branches. The interval of each branch has been obtained, as well as the solutions of the temperatures of heat reservoirs and working fluid. Numerical examples are given for the optimal configurations with n = - 1, n=1, n=2, n=3 and n=4, respectively. The results obtained are compared with each other and with those results obtained for maximum power output.
机译:本文已经确定了一类具有广义辐射传热定律[q(Tn)]的内可逆热机的最佳配置。使用最优控制理论获得了使固定输入能量的发动机效率最大化的最优循环,并且通过泰勒级数展开法求解了微分方程。结果表明,最佳效率的最佳循环有八个分支,包括两个等温分支,四个最大效率分支和两个绝热分支。已获得每个分支的间隔以及储热器和工作流体温度的解。给出了分别具有n =-1,n = 1,n = 2,n = 3和n = 4的最佳配置的数值示例。将获得的结果相互比较,并与获得最大功率输出的那些结果进行比较。

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