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Numerical study on the thermal performance of lightweight temporary building integrated with phase change materials

机译:相变材料集成的轻质临时建筑热性能的数值研究

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The phase change materials (PCMs) integrated in building envelope structure can decrease the buildings' energy consumption and improve indoor thermal comfort quality. This paper numerically studied the application effect of PCMs as a passive alternative in lightweight building with high shape coefficient for temporary accommodations under Tianjin climate, and the impacts of some key design parameters, such as the location, thickness and orientation, on building's thermal behavior were explored when single orientation layout scheme was adopted. Besides, the multi-orientation layout schemes were put forward to achieve further optimization on indoor thermal comfort. The simulation results stated that the proper application of PCMs could obviously improve and promote indoor thermal comfort. In detail, the results indicated that PCM layer with a reasonable thickness, e.g. 5.0 mm in this paper, which was positioned to the interior surface was recommend when single orientation layout was applied. When incorporating the PCM layer in at least five orientations (S5), the proposed multi-orientation optimization schemes could ensure a comfortable indoor climate under the extreme closed condition without extra mechanical cooling measures. Thereby, the numerical results in this paper support and highlight the potential of using PCMs and multi-orientation optimization in lightweight temporary buildings.
机译:集成在建筑包络结构中的相变材料(PCM)可以降低建筑物的能耗,提高室内热舒适品质。本文对PCM的应用效果为轻质构建中的临时建筑,为天津气候临时住宿系数的轻量化替代品,以及一些关键设计参数的影响,如位置,厚度和方向,建筑的热行为采用单一方向布局方案时探索。此外,提出了多向布局方案,以实现室内热舒适性的进一步优化。仿真结果表明,PCM的适当应用明显改善和促进室内热舒适度。详细地,结果表明,具有合理厚度的PCM层,例如,在本文中,5.0mm,当施加单一取向布局时,将其定位在内表面上。当在至少五个方向结合PCM层(S5)时,所提出的多向优化方案可以确保在极端闭合状态下的舒适室内气候,而无需额外的机械冷却措施。因此,本文的数值结果支持并突出了轻质临时建筑物中使用PCM和多向优化的潜力。

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