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Thermal storage and nonlinear heat-transfer characteristics of PCM wallboard

机译:PCM墙板的储热和非线性传热特性

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For the materials with constant thermophysical properties, the thermal performance of wallboards (or floor, ceiling) can be described by decrement factor/and time lag ψ. However, the phase change material (PCM) may charge large heat during the melting process and discharge large heat during the freezing process, which takes place at some certain temperature or a narrow temperature range. The behavior deviates a lot from the material with constant thermal physical properties. Therefore, it is not reasonable to analyze the thermal performance of PCM wallboard by using the decrement factor/and time lag ψ. How to simply and effectively analyze the thermal performance of a PCM wallboard is an important problem. In order to analyze and evaluate the energy-efficient effects of the PCM wallboard and floor, two new parameters, i.e., modifying factor of the inner surface heat flux 'α' and ratio of the thermal storage 'b'. are put forward. They can describe the thermal performance of PCM external and internal walls, respectively. The analysis and simulation methods are both applied to investigate the effects of different PCM thermophysical properties (heat of fusion H_m, melting temperature T_m and thermal conductivity k) on the thermal performance of PCM wallboard for the residential buildings. The results show that the PCM external wall can save more energy by increasing H_m, decreasing k and selecting proper T_m (α < 1); that the PCM internal wall can save more energy by increasing H_m and selecting appropriate T_m, k. The most energy-efficient approach of applying PCM in a solar house is to apply it in its internal wall.
机译:对于具有恒定热物理性质的材料,墙板(或地板,天花板)的热性能可以用递减系数和时间滞后ψ来描述。但是,相变材料(PCM)在熔化过程中可能会充入大量热量,而在冷冻过程中会释放出大量热量,这发生在某些特定温度或狭窄的温度范围内。该行为与具有恒定热物理特性的材料有很大不同。因此,使用减量因子/时间滞后ψ分析PCM墙板的热性能是不合理的。如何简单有效地分析PCM墙板的热性能是一个重要的问题。为了分析和评估PCM墙板和地板的节能效果,增加了两个新参数,即内表面热通量的修正系数“α”和蓄热比“ b”。被提出。它们可以分别描述PCM外壁和内壁的热性能。分析和模拟方法均用于研究不同PCM热物理性质(熔化热H_m,熔化温度T_m和导热系数k)对住宅建筑PCM墙板热性能的影响。结果表明,通过增加H_m,减小k并选择合适的T_m(α<1),PCM外墙可以节省更多能量。 PCM内壁可以通过增加H_m并选择适当的T_m,k来节省更多能量。在太阳能房屋中使用PCM的最节能方法是在其内壁使用PCM。

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