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Optimal configuration of a class of endoreversible heat-engines for maximum power-output with linear phenomenological heat-transfer law

机译:具有线性现象热传递定律的最大功率输出的一类内可逆热机的最佳配置

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摘要

The optimal configuration of an endoreversible heat-engine with the linear phenomenological heat-transfer law q ∝ Δ(T~(-1)), has been determined. The optimal cycle that maximizes the power-output of the heat-engine has been obtained using optimal control theory. It is shown that the optimal cycle has six branches including two isothermal ones, four maximum power branches, and is without an adiabatic branch. The interval of each branch, the temperatures of the heat reservoirs and working fluid, the maximum power and the corresponding efficiency of the heat-engine are obtained. The results are compared with those obtained assuming Newton's heat-transfer law applies.
机译:确定了具有线性现象传热定律q ∝Δ(T〜(-1))的内可逆热机的最佳配置。使用最佳控制理论已经获得了使热力发动机的功率输出最大化的最佳循环。结果表明,最优循环具有六个分支,其中包括两个等温分支,四个最大功率分支,并且没有绝热分支。获得每个分支的间隔,储热器和工作流体的温度,最大功率以及热机的相应效率。将结果与假设牛顿传热律适用的结果进行比较。

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