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Wetting and drying performance of cross-laminated timber related to on-site moisture protections: Field measurements and hygrothermal simulations

机译:与现场水分保护相关的交叉层压木材的润湿性和干燥性能:现场测量和湿热模拟

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Cross-laminated timber (CLT) panels are increasingly used in mid-rise buildings or even taller structures in North America. However, prolonged exposure to moisture during construction and in service is a durability concern for most wood products including CLT. To investigate practical solutions for reducing on-site wetting of mass timber construction, CLT specimens with a range of moisture protection measures, in six groups were tested in the backyard of FPInnovations’ Vancouver laboratory from Oct. 2017 to Jan. 2018. This study investigates the wetting and drying behaviours of the tested CLT specimens through 2-D hygrothermal simulations. The simulations are performed for base specimens (no protection measures) of group 1 (without joint or plywood spline) and group 2 (with a butt joint and plywood spline). For group 1, three data sources of material properties are used to create the models, and the data that led to the best agreement between simulations and measurement are used for creating the models of group 2. For group 2, two types of hygrothermal models are created with or without considering the differences in water absorption between the transverse and the longitudinal grain orientations. In addition, rain penetration is taken into account for the joint area. It is found that the model with considering the differences between transverse and longitudinal grain orientations shows a better agreement than that without considering such differences.
机译:交叉层压木材(CLT)面板越来越多地用于中层建筑物或北美的更高的结构。然而,在建造和服务期间长期暴露于水分,是大多数木制品的耐用性问题。为了调查减少大规模木材建筑的现场润湿的实用解决方案,在2017年10月至2018年1月,在FPInnovations'Vancouver实验室的后院进行了六组的CLT标本。本研究调查了通过2-D湿热模拟测试CLT标本的润湿和干燥行为。对基团(没有关节或胶合板样条)和第2组(带有对接接头和胶合板样条)的基本标本(无保护措施)进行模拟。对于第1组,使用三个数据源的材料属性用于创建模型,并将导致模拟和测量之间最佳协议的数据用于创建组2的模型。对于第2组,两种类型的湿热模型是使用或不考虑横向和纵向晶粒取向之间的吸水差异而产生。此外,将考虑到接合区域的雨水渗透。结果发现,考虑横向和纵向晶粒取向之间的差异显示了比在不考虑这种差异的情况下更好的协议。

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