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Establishing In-Place Structural Drying Goals: A Scientific Approach

机译:建立就地结构干燥目标:科学方法

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Structural drying is essential to water mitigation. When a water release or intrusion occurs, a prompt effort is expected to remove wet contents and unsalvageable building materials followed by an accelerated drying to reduce moisture content to an appropriate level. However, agreement between responsible parties is often lacking as to what is appropriate, and drying efforts beyond this goal are unnecessary and wasteful. Prolonged drying efforts by contractors often clash with those bearing the financial responsibility despite the implied assurance that the extended desiccation promotes a higher probability of restoration success. This paper explores a rational and justifiable basis to develop a cost effective and efficient drying protocol. The scholarly works published by the USDA Forestry Products Laboratory and other peer-reviewed publications were reviewed to develop a rationale for establishing appropriate in-place structural drying standards, applying the concepts of equilibrium moisture content (EMC) and other critical moisture thresholds in the built environment. Guidelines from industry technical standards were also presented to calculate appropriate equipment requirements and methods to maximize dry-out efficiency. Critical moisture levels and their reasoning were discussed, as were some of the consequences associated with certain drying practices. The principles and practices of moisture measurement in building materials were described, and potential for inaccuracies was presented.
机译:结构干燥对于减水至关重要。当发生水释放或渗入时,期望迅速采取措施以除去湿的内含物和不可挽救的建筑材料,然后进行加速干燥以将水分含量降低至适当水平。但是,负责任的各方之间通常缺乏适当的协议,超出该目标的干燥工作是不必要和浪费的。尽管暗含保证延长的干燥时间会提高修复成功的可能性,但承包商长期的干燥工作常常会与承担财务责任的承包商发生冲突。本文探索了合理合理的基础,以开发一种经济高效的干燥方案。审查了USDA林产品实验室和其他同行评审出版物的学术著作,以建立适当的就地结构干燥标准的原理,并在建筑物中采用了平衡水分含量(EMC)和其他关键水分阈值的概念环境。还提出了行业技术标准中的准则,以计算适当的设备要求和方法,以最大限度地提高干燥效率。讨论了临界水分含量及其原因,以及与某些干燥方法相关的一些后果。描述了建筑材料中水分测量的原理和实践,并提出了潜在的误差。

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