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Temperature moderation in a multistorey building by melting of a phase-change material

机译:通过熔化相变材料来控制多层建筑中的温度

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The current numerical study focuses on the feasibility of furnishing thermal comfort in a structure, by using paraffin wax stored on a plate below the ceiling in a multi-storey building. The method is aimed to reduce energy demands at the increasing thermal loads. In summer, in daytime, walls of the building are exposed to the ambient thermal load, and heat transferred inside is absorbed by the melting wax. The study is numerical. It relates to temperature variations outside and inside, coupled with heat conduction and accumulation in walls, with radiation between the surfaces, with natural convection of air inside and melting of the wax at the ceiling. Fins spacing on the storage plate, visualization of the melting process, and its parametric investigation provide an insight into the physical phenomena. Temperature and flow fields were investigated for 3 mm and 12 mm thick layers of wax. At the specified conditions of the present study a 3 mm layer provides thermal comfort for most of the day, while a 6 mm layer may suffice for the entire day. Fluent 6.3 software was used in the computations.
机译:当前的数值研究集中在通过使用多层建筑中天花板下方板上存储的石蜡来提供结构热舒适性的可行性。该方法旨在降低热负荷增加时的能量需求。在夏季,在白天,建筑物的墙壁要承受周围的热负荷,并且内部传递的热量会被熔化的蜡吸收。该研究是数值的。它涉及内部和外部的温度变化,以及壁中的热传导和积累,表面之间的辐射,内部空气的自然对流以及天花板上蜡的熔化。翅片在存储板上的间距,熔化过程的可视化及其参数研究可提供对物理现象的深入了解。研究了3毫米和12毫米厚的蜡层的温度和流场。在本研究的指定条件下,3毫米厚的层在一天中的大部分时间内都可以提供热舒适性,而6毫米厚的层则可以在一整天内满足需求。计算中使用了Fluent 6.3软件。

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