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首页> 外文期刊>International Journal of Refrigeration >Optimum heat exchanger area estimation using coefficients of structural bonds: Application to an absorption chiller
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Optimum heat exchanger area estimation using coefficients of structural bonds: Application to an absorption chiller

机译:使用结构键系数的最佳换热器面积估算:在吸收式制冷机上的应用

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摘要

The optimum allocation of the heat exchange area considers both running and investment cost. The structural method of thermoeconomic optimization is used to derive a simple equation for the estimation of the economic optimum of the area of a heat exchanger integrated in a more complex system. The obtained equation is generally valid for thermal systems. The optimum heat exchange area can be estimated in a straightforward calculation once operation and cost parameters, the overall heat transfer coefficient and the Coefficient of Structural Bonds (CSB) are known. The CSB quantifies the interactions between the units of the thermal system and is obtained from an exergy analysis. Therefore, compared to former work, the proposed equation has the advantage of considering interactions between the units of the system. A case study is presented for an ammonia-water absorption chiller. The optimum area from the proposed formulation is compared with the results obtained from the integrated optimization algorithm of EES (from F-Chart) and the base cases for different annual operation time.
机译:换热区域的最佳分配考虑了运行和投资成本。使用热经济优化的结构方法可以得出一个简单的方程,用于估算集成在更复杂系统中的换热器的面积的经济最优值。所获得的方程通常对热系统有效。一旦知道了运行和成本参数,总传热系数和结构键系数(CSB),就可以通过直接计算来估算最佳换热面积。 CSB量化了热力系统各单元之间的相互作用,并且是从火用分析中获得的。因此,与以前的工作相比,提出的方程具有考虑系统各单元之间相互作用的优点。提出了一个关于氨水吸收式冷却器的案例研究。将提议的配方中的最佳面积与EES的集成优化算法(来自F-Chart)以及不同年度运行时间的基本案例所获得的结果进行比较。

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