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The Effect of Shading Devices in Rising Damp Phenomenon of Historical Buildings

机译:遮阳装置在历史建筑潮湿现象中的作用

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Rising damp is the upward movement of ground water through a permeable masonry wall. The water rises through the pores in the masonry via a process called capillarity. Capillarity is a process whereby water molecules are electrochemically attracted to mineral surfaces, enabling water to move vertically through pores of a certain size despite the counteractive force of gravity. The great majority of the papers presented in literature only analyse the external shading effect on building energy conservation; and this work intends to present a preliminary analyse of the effect of shadows in rising damp phenomenon. We present an exhaustive numerical analyse of the shading effect on historical buildings. The shading effect due vertical nearby obstacles, as trees, or horizontal obstacles is causing mould and or rising damp phenomenon in historical buildings, as a result of moisture increasing. The results show the importance of obstacles (shading effect), as trees, nearby the old constructions in the rising damp, namely in the height of steady-state capillary rise and in the drying process.
机译:上升的潮湿是地下水通过可渗透的砖石墙向上运动。水通过毛细作用从砖石的孔中上升。毛细作用是使水分子被电化学吸引到矿物表面的过程,尽管有反作用力,水也能通过一定大小的孔垂直移动。文献中的绝大多数论文仅分析了外部遮蔽对建筑节能的影响。这项工作旨在对阴影在上升潮湿现象中的影响进行初步分析。我们提供了对历史建筑物的阴影效果的详尽的数值分析。由于水分的增加,垂直附近的障碍物(如树木)或水平障碍物产生的阴影效应在历史建筑中引起发霉和/或上升潮湿现象。结果表明,障碍物(遮蔽效应)的重要性,因为树木,树木,老建筑附近在上升的潮湿环境中,即在稳态毛细管上升高度和干燥过程中。

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