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Using Hygrothermal Modeling to Resolve Practical Low-Slope Roofing Issues

机译:利用湿热建模解决实用低斜坡屋面问题

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Within building envelope science, the use of tools to model performance of the building envelope has evolved, and designers and scientists today have a myriad of tools available. Hygrothermal modeling is one such tool and, when used correctly, offers designers and forensic investigators important information about the movement of moisture within the building envelope. This traditional use of hygrothermal modeling is maturing as models are validated with field experience, creating a confidence in the modeling tools and their predictive capabilities. Based on this confidence, application of hygrothermal modeling to a more practical application is an evolution whose time has arrived. With changes in materials and methods, the performance of roofing systems can often times no longer be based on experience alone. Roofing contractors have been confounded by the unexplained and unplanned-for presence of moisture in roofing systems. Although hygrothermal modeling can be used to explain where the moisture came from, we propose that it should be used to prevent its occurrence. Unfortunately, more than 70 % of the roofing market is in reroofing, and oftentimes, a designer is not engaged in the roofing system design. Without the expertise of a designer and given that hygrothermal modeling is not well understood by the roofing industry, its adoption as a tool that can prevent problems has not been widely seen. This paper presents an extensive summary of hygrothermal modeling performed for roofing systems and then shows how the modeling can be used to create simple resources for roofing contractors to reduce the potential for moisture condensation at critical locations within a roofing system. The systems modeled have shown a propensity for moisture accumulation, and the use of hygrothermal modeling to eliminate these problems is a practical application of a building science tool that can greatly improve the durability of roofing systems.
机译:在建筑包络科学中,使用工具来模拟建筑信封的性能已经进化,而设计者和科学家今天有无数的工具。湿热模型是一种这样的工具,当正确使用时,为设计师和法医调查人员提供有关建筑信封内水分移动的重要信息。这种传统使用湿热建模正在熟悉,因为模型验证了现场经验,为建模工具和预测功能创造了信心。基于这种置信度,将湿热模型应用于更实际的应用是时代到达的演变。随着材料和方法的变化,屋顶系统的性能通常不再基于单独的经验。屋顶承包商已经被屋顶系统中的湿度的存在而被混淆。尽管湿热型建模可用于解释水分来自的地方,但我们建议它应该用来防止其发生。不幸的是,超过70%的屋顶市场既又更奏效,而且通常不在屋顶系统设计方面处于更脱颖而出。如果没有设计师的专业知识,并且屋顶行业尚未理解湿热建模,其作为一种可以防止问题的工具尚未得到广泛的应用。本文提出了对屋顶系统执行的湿热建模的广泛摘要,然后显示了建模如何用于为屋顶承包商创造简单的资源,以减少屋顶系统内关键位置处的水分凝结可能性的潜力。所建模的系统已经显示出湿度积聚的倾向,并且使用湿热模型消除这些问题是建筑科学工具的实际应用,可以大大提高屋顶系统的耐用性。

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