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Passive cooling effect of traditional Japanese building's features

机译:传统日本建筑特征的被动冷却效果

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Purpose – The purpose of this paper is to investigate the cooling effect of these features. Japanese traditional buildings have many features, which are effective for cooling the interior of the building. Design/methodology/approach – This paper first of all describes the characteristics of indoor thermal environment and the cooling effect of four traditional buildings, located in the Miyagi Prefecture in the northern area in Japan. The investigated buildings include traditional farmhouses and renovated farmhouses for the improvement of indoor thermal environment. Second, the cooling effect of traditional technologies was studied by the means of computer simulation using a model house, which takes the multi-zone effects of heat transfer and air flow distribution into consideration. Findings – The paper finds that the cooling technologies of traditional buildings, such as solar shading by thatched roof decreases indoor temperature. The computer simulation revealed that natural ventilation, solar shading by thatched roof and the thermal mass by earthen floor are effective for interior cooling. Practical implications – This paper reveals the cooling effect of traditional technologies quantitatively. From the points of view of energy saving and environment symbiosis based on the understanding of physical principle, it is important to apply these traditional technologies to modern buildings. Originality/value – From the viewpoint of solution of global environmental problems, we can learn a lot from these vernacular technologies inherited from the past. This paper provides valuable information about building based on environmental design methodologies, which promote awareness about sustainable construction.
机译:目的–本文的目的是研究这些功能的冷却效果。日本传统建筑具有许多功能,可有效冷却建筑内部。设计/方法/方法–本文首先描述了位于日本北部宫城县的四处传统建筑的室内热环境特征和制冷效果。被调查的建筑物包括传统的农舍和翻新的农舍,以改善室内热环境。其次,通过使用模型房进行计算机模拟,研究了传统技术的冷却效果,其中考虑了传热和气流分布的多区域效应。研究结果–该论文发现传统建筑的制冷技术,例如茅草屋顶的遮阳技术降低了室内温度。计算机模拟表明,自然通风,茅草屋顶的遮阳和土层的热质量对室内冷却都是有效的。实际意义–本文定量地揭示了传统技术的冷却效果。从对物理原理的理解出发,从节能与环境共生的角度出发,将这些传统技术应用到现代建筑中非常重要。原创性/价值–从解决全球环境问题的角度来看,我们可以从过去继承的这些本土技术中学到很多东西。本文提供了有关基于环境设计方法的建筑的有价值的信息,可提高人们对可持续建筑的认识。

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