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首页> 外文期刊>Energies >Condensation Risk Due to Variations in Airtightness and Thermal Insulation of an Office Building in Warm and Wet Climate
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Condensation Risk Due to Variations in Airtightness and Thermal Insulation of an Office Building in Warm and Wet Climate

机译:在温暖和潮湿的气候下,由于办公楼的气密性和隔热性变化而产生的冷凝风险

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Condensation in a building encourages microbial growth, which can have an adverse effect on the health of occupants. Furthermore, it induces the deterioration of the building. To prevent problems caused by condensation, from the design step of a building, predictions of the spatial, temporal and causation for condensation occurrences are necessary. By using TRNSYS simulation coupled with TRNFLOW, condensation assessment of an entire office building in Tokyo, Japan, was conducted throughout the year, including when the air-conditioning system was not operated, by considering the absorption-desorption properties of the building materials and papers in the office and the airflow within the entire building. It was found that most of the condensation occurred during winter and was observed mainly in the non-air-conditioned core parts, especially the topmost floor. Additional analyses, which identified the effect of variations in the thermal insulation of the external walls, roof and windows and the airtightness of the windows on condensation, showed that the lower airtightness of windows resulted in decreased condensation risks, and condensation within the building was suppressed completely when the thermal insulation material thickness of the external walls was greater than 75 mm, that of the roof was greater than 105 mm and the windows had triple float glass.
机译:建筑物中的冷凝物会促进微生物的生长,这可能对居住者的健康产生不利影响。此外,它引起建筑物的恶化。为了防止由凝结引起的问题,从建筑物的设计步骤开始,必须对凝结发生的空间,时间和因果关系进行预测。通过将TRNSYS模拟与TRNFLOW结合使用,全年对日本东京的整个办公楼进行了凝结评估,包括在不使用空调系统的情况下,考虑了建筑材料和纸张的吸收-解吸特性。在办公室和整个建筑物内的气流。发现大部分冷凝发生在冬季,并且主要在非空调核心部分,尤其是最顶层。额外的分析确定了外墙,屋顶和窗户的隔热性以及窗户的气密性对凝结的影响,这些分析表明,窗户的低气密性导致凝结风险降低,并且建筑物内的凝结得到了抑制当外墙的绝热材料厚度大于75毫米,屋顶的绝热材料厚度大于105毫米并且窗户装有三层浮法玻璃时,隔热层完全消失。

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