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Mathematical Evaluation Of A Buried Phase Change Concrete Cooling System For Buildings

机译:建筑物埋入式相变混凝土冷却系统的数学评估

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A laminated phase change concrete duct system has been numerically analysed for cooling applications in buildings. The analysis shows that number of transfer units (NTUs) have considerable effect on the thermal performance of the system. For instance the highest factor of phase change material (PCM) melting thickness and surface temperature fraction were achieved with the lowest NTU value of 0.1. In terms of cooling effects, the two scenarios achieved maximum cooling capacities of 12.5 kW and 25 kW respectively. However in order to achieve effective thermal response in a mechanically ventilated ductwork system, some form of turbulent flow through surface roughness and configuration would have to be created. Even though the model was developed based on the assumption that the PCM is pure and may melt at a specific temperature the results appear to be a fair representation of what might happen in practise. Experimental validation is however recommended towards commercial and economic evaluation.
机译:层状相变混凝土风管系统已进行了数值分析,用于建筑物的制冷应用。分析表明,传输单元(NTU)的数量对系统的热性能有很大影响。例如,以最小的NTU值0.1达到了最高的相变材料(PCM)熔化厚度和表面温度分数的因子。在冷却效果方面,这两种方案分别实现了最大制冷量12.5 kW和25 kW。但是,为了在机械通风的管道系统中获得有效的热响应,必须创建某种形式的通过表面粗糙度和结构的湍流。即使该模型是基于PCM是纯净的并且可能在特定温度下融化的假设而开发的,但结果似乎可以很好地表示实际情况。但是,建议进行实验验证以进行商业和经济评估。

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