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首页> 外文期刊>Archives of Civil Engineering >TRANSIENT ANALYSIS OF HEAT TRANSFER ACROSS THE RESIDENTIAL BUILDING ROOF WITH PCM AND WOOD WOOL- A CASE STUDY BY NUMERICAL SIMULATION APPROACH
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TRANSIENT ANALYSIS OF HEAT TRANSFER ACROSS THE RESIDENTIAL BUILDING ROOF WITH PCM AND WOOD WOOL- A CASE STUDY BY NUMERICAL SIMULATION APPROACH

机译:用PCM和木毛穿越住宅屋顶传热的瞬态分析-以数值模拟方法为例。

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摘要

In this paper, transient analysis on heat transfer across the residential building roof having various materials like wood wool, phase change material and weathering tile is performed by numerical simulation technique. 2-dimensional roof model is created, checked for grid independency and validated with the experimental results. Three different roof structures are included in this study namely roof with (ⅰ). Concrete and weathering tile, (ⅱ). Concrete, phase change material and weathering tile and (ⅲ). Concrete, phase change material, wood wool and weathering tile. Roof type 3 restricts 13% of heat entering the room in comparison with roof having only concrete and weathering tile. Also the effect of various roof layers' thickness in the roof type 3 is investigated and identified that the wood wool plays the major role in arresting the entry of heat in to the room. The average reduction of heat is about 10 % for an increase of a unit thickness of wood wool layer.
机译:在本文中,通过数值模拟技术对具有各种材料(如木丝,相变材料和耐候瓦)的住宅屋顶上的传热进行了瞬态分析。创建二维屋顶模型,检查网格独立性,并通过实验结果进行验证。这项研究包括三种不同的屋顶结构,即带(ⅰ)的屋顶。混凝土和耐候瓦,(ⅱ)。混凝土,相变材料和风化砖和(ⅲ)。混凝土,相变材料,木棉和耐候瓦。与仅具有混凝土和耐候瓦的屋顶相比,屋顶类型3限制了进入房间的热量的13%。还研究了屋顶类型3中各种屋顶层厚度的影响,并确定木棉在阻止热量进入房间中起着重要作用。对于单位厚度的木丝层,平均热量减少约10%。

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