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An Approach to the Integrated Design of PCM-Air Heat Exchangers Based on Numerical Simulation: A Solar Cooling Case Study

机译:基于数值模拟的PCM-空气热交换器集成设计方法:太阳冷却案例研究

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A novel technique of design of experiments applied to numerical simulations is proposed in this paper as a methodology for the sizing and design of thermal storage equipment integrated in any specific application. The technique is carried out through the response surfaces in order to limit the number of simulation runs required to achieve an appropriate solution. Thus, there are significant savings on the time spent on the design as well as a potential cost saving on the experimentation if similarity relationships between the prototype and the model are met. The technique is applied here to a previously developed and validated numerical model that simulates the thermal behavior of a phase change material-air heat exchanger. The incorporation of the thermal energy storage unit is analyzed in the case of a solar cooling application, improving the system coefficient of performance. The economic viability is mainly conditioned by the price of the macroencapsulated phase change material.
机译:本文提出了一种用于数值模拟的实验设计新技术,作为集成在任何特定应用中的储热设备的尺寸和设计方法。该技术是通过响应面执行的,以限制实现适当解决方案所需的模拟运行次数。因此,如果原型和模型之间的相似性关系得到满足,则可以节省大量设计时间,并可以节省实验成本。该技术在这里应用于先前开发和验证的数值模型,该模型模拟相变材料-空气热交换器的热行为。在太阳能冷却应用中分析了热能存储单元的并入,从而提高了系统的性能系数。经济上的生存能力主要取决于大胶囊相变材料的价格。

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