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Air Gap Method: Dependence of water removal on RH in room and height of floor air gap

机译:气隙法:室内除湿对湿度的影响以及地板气隙的高度

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摘要

Using the Air Gap Method inside building constructions, harmful water can be dried out. The method ventilates air gaps inside walls and floors with an air flow driven by convection aided by a heating cable in the vertical air gap. This study is performed in combined floor and wall constructions with air gaps within and with a heating cable in the vertical air gap. All surfaces of the air gap are covered with polystyrene plastic to avoid leakage into the construction. Wet gypsum boards that are weighed at start and end of experiment are used to measure the dry out process. Three different heights of the floor air gap, 25 mm, 15 mm and 5 mm are investigated. The influences of the RH in the surrounding room and of the wetness of the gypsum boards are also investigated. It is shown that the height of the floor air gap has a great impact on the rate of drying. The optimal height is less than 25 mm and somewhere between 15 and 5 mm.
机译:在建筑物内部使用气隙法可以将有害水干燥。该方法利用垂直空气间隙中由加热电缆辅助的对流驱动的气流使墙壁和地板内部的空气间隙通风。这项研究是在地板和墙壁的组合结构中进行的,这些结构的内部有空气隙,垂直的空气隙中有加热电缆。气隙的所有表面均覆盖有聚苯乙烯塑料,以避免泄漏到结​​构中。在实验开始和结束时称重的湿石膏板用于测量干燥过程。研究了地板气隙的三种不同高度,分别为25 mm,15 mm和5 mm。还研究了相对湿度对周围房间的影响以及石膏板的湿度。结果表明,地板气隙的高度对干燥速度有很大影响。最佳高度小于25毫米,介于15至5毫米之间。

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