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Moisture control strategies of habitable basements in cold climates

机译:寒冷气候下可居住地下室的水分控制策略

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In many countries with a cold climate, basements are used as dwellings. This presents a major challenge concerning moisture safety design. Climate change is expected to increase the risk of moisture-related damage in basements owing to increasing amounts of stormwater, annual precipitation, and annual temperatures. This study examines the primary moisture control strategies for habitable basements in western cold climate countries by identifying the main differences and similarities in national building recommendations for new buildings. Using Norwegian design guides as a baseline, we identified ten key challenges and compared them with four other cold climate countries' recommendations given by experts in the field of building physics (building science). The results showed that other countries' recommendations differ from those of Norway in various key challenges. However, similar but varying recommendations pertaining to ground surface slopes, drainage layers, drainage pipes, capillary breaking layers in floors, avoiding thermal bridges, airtightness, and ventilation were noted. The key differences pertained to the exterior damp proofing of walls, use and position of dimpled membranes and vapour barriers, and use of permeable thermal insulation. The outcome is that countries emphasize the ten key challenges differently. Although the recommendations have many similarities, the weighting (or prioritizing) distinguishes the five countries' moisture control strategies.
机译:在许多气候寒冷的国家,地下室被用作住宅。这就提出了有关防潮安全设计的重大挑战。由于雨水数量的增加,年降水量和年气温的增加,气候变化预计会增加地下室与水分有关的破坏的风险。这项研究通过确定国家对新建筑的建议中的主要差异和相似之处,研究了西部寒冷气候国家可居住地下室的主要水分控制策略。我们以挪威的设计指南为基准,确定了十个关键挑战,并将它们与建筑物理学(建筑科学)领域专家提出的其他四个寒冷气候国家的建议进行了比较。结果表明,其他国家的建议在各种关键挑战方面与挪威的建议不同。但是,注意到有关地面坡度,排水层,排水管,地板中的毛细管破坏层,避免热桥,气密性和通风的类似但变化的建议。关键区别在于墙的外部防潮,凹膜和蒸汽阻隔层的使用和位置以及渗透性隔热材料的使用。结果是,各国不同地强调了十个关键挑战。尽管建议有很多相似之处,但是权重(或优先级)区分了五个国家的水分控制策略。

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