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首页> 外文期刊>Journal of physics, A. Mathematical and theoretical >The fundamental optimal relations of the allocation, cost and effectiveness of the heat exchangers of a Carnot-like power plant
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The fundamental optimal relations of the allocation, cost and effectiveness of the heat exchangers of a Carnot-like power plant

机译:卡诺式发电厂的热交换器的分配,成本和效率的基本最佳关系

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摘要

A stationary Carnot-like power plant model, with three sources of irreversibilities (the finite rate of heat transfers, heat leak and internal dissipations of the working fluid), is analyzed by a criterion of partial optimization for five objective functions (power, efficiency, ecological function, efficient power and. (Omega) over dot criterion). A remarkable result is that if two constraints (design rules) are applied alternatively: constrained internal thermal conductance or fixed total area of the heat exchangers from hot and cold sides; the optimal allocation, cost and effectiveness of the heat exchangers are the same for all these objective functions independently of the transfer heat law used. Thus, it is enough to find these optimal relations for only one, maximum power, when all heat transfers are linear. In particular, for the Curzon-Albhorn-like model (without heat leak), the criterion for the so-called ecological function, including other variables (the internal isentropic temperature ratio), becomes total.
机译:通过部分优化的五个目标函数(功率,效率,流量,功率,效率,生态功能,有效功率和。一个显着的结果是,如果交替应用两个约束条件(设计规则):约束的内部热导率或热交换器从热侧和冷侧固定的总面积;所有这些目标函数的热交换器的最佳分配,成本和效率都是相同的,而与所使用的传热定律无关。因此,当所有传热均为线性时,仅针对一个最大功率找到这些最佳关系就足够了。特别地,对于类似Curzon-Albhorn的模型(无热泄漏),包括其他变量(内部等熵温度比)在内的所谓生态函数的标准成为总和。

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