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首页> 外文期刊>E3S Web of Conferences >Climate data analysis to assess resilience of wall assemblies to moisture loads arising from the effects of wind-driven rain
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Climate data analysis to assess resilience of wall assemblies to moisture loads arising from the effects of wind-driven rain

机译:气候数据分析,评估墙壁组件的抵御能力,以防潮雨水产生的含水量

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摘要

In North America, and abroad, there currently exist standard test protocols for assessing the watertightness of wall assemblies and fenestration components although most of these methods are not directly related to expectations of in-field conditions as might be experienced by a wall assembly over its intended service life. How useful might such test protocols be to help determine the longevity of wall assemblies to future climate loads? Existing walls may, depending on their geographic location, be vulnerable to future climate loads and thus risk premature deterioration. For the design of new wall assemblies consideration ought to given to the non-stationarity of the climate and implications on the moisture loads on walls and the expected performance over the long-term. To permit assessing the resilience of wall assemblies to the effects of a changing climate as may occur in the future, and indeed, perhaps heightened moisture loads, one requires sufficient information on the watertightness of the assembly in relation to specified wind-driven rain loads and wall air-leakage conditions from which wall moisture retention functions could readily be developed. Such moisture functions are the basis of input of moisture loads to hygrothermal models and from which the expected long-term wall moisture performance can subsequently be derived. In this paper, a description is provided of the strategies used to analyze the WDR load for generating experimental input for a watertightness test protocol under development to assess resilience of wall assemblies to moisture loads arising from the effects of wind-driven rain in consideration of both historical climate loads and those as may arise from a changing climate.
机译:在北美洲和国外,目前存在用于评估墙壁组件和更强化部件的水密性的标准测试协议,尽管大多数这些方法与现场条件的预期直接相关,但由于墙壁组件在其预期上可能经历使用寿命。这些测试协议有多有用,以帮助确定墙壁组件的寿命到未来的气候负荷?根据其地理位置,现有的墙壁可能会易受未来的气候载荷,因此风险过早恶化。对于新的墙壁组件的设计,应考虑到气候的非公平性和对墙壁上的水分荷载的影响以及长期的预期性能。为了允许评估墙壁组件的恢复性,因为未来可能发生的变化气候的影响,并且实际上可能增加了水分荷载,需要足够的信息与规定的风力驱动的雨量有关的组装的水密性。墙壁空气泄漏条件可以容易地开发墙体水分保留功能。这种湿度功能是对湿热模型的载荷输入的基础,随后可以衍生预期的长期壁湿度性能。在本文中,提供了用于分析WDR负荷的策略,用于为正在开发的水密测试方案产生实验输入,以评估墙壁组件的抵御,以考虑到两者的风力雨水效应产生的湿度荷载历史气候负荷和可能从变化的气候中产生的气候负荷。

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