首页> 外文OA文献 >RAIN WITH WIND INFLUENCE ON MOISTURE CONTENT IN BUILDINGS PROTECTIVE-DECORATIVE OUTER WALLS/LIETAUS SU VĖJU POVEIKIS PASTATŲ IŠORINIŲ SIENŲ APSAUGINĖS-APDAILINĖS SIENUTĖS DRĖGMINIAM BŪVIUI
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RAIN WITH WIND INFLUENCE ON MOISTURE CONTENT IN BUILDINGS PROTECTIVE-DECORATIVE OUTER WALLS/LIETAUS SU VĖJU POVEIKIS PASTATŲ IŠORINIŲ SIENŲ APSAUGINĖS-APDAILINĖS SIENUTĖS DRĖGMINIAM BŪVIUI

机译:雨水对建筑物的水分含量的雨水保护 - 装饰性外墙/雨水效果与建筑物外墙保护 - 精加工墙进行水分

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摘要

Dry walls in buildings are the main conditions predetermining the durability of a building, the comfort of premises and service life expenses for repair. The probability of rain sorption into external layer of a wall is increased when porous concrete, lightweight bricks and high-insulated structures are applied for walls.Several methods of moisture penetration into building structures could be defined. If a building envelope is characterised by high air permeability, the speed of the wind during rain time has the most important influence on the moisture penetration. When porous materials are used which are known for high capillary water saturation, the duration of rain could be considered as the most important indicator of moisture penetration.With the purpose of estimating the effect of pressure on moisture penetration, small dimension wall fragments of silicate bricks with split surface, samples of concrete-lime mortar and separate samples of them were taken for investigating rain penetration under wind pressure in a special climatic chamber. Materials were selected due to the fact that significant part exterior surfaces in Lithuanian houses are namely of silicate bricks. Silicate bricks with split surfaces absorb moisture well and are suitable as the object of study.In order to study the impact of rain with wind on the moisture content in the walls, a special stand was used (Fig 2). The speed of the wind (m/s) was simulated respectively to pressure (Pa) to facilitate the experiment. The stand was attached to the surfaces of the wall under investigation. Equivalent pressure was formed in the stand during the irrigation. The dependency of the saturation speed upon the rain intensity and formed pressure determined in the entire structure and for separate samples.The results of testing saturated wall fragments have proved that the wall of split silicate bricks with concrete mortar becomes soaked much faster in comparison with considered samples of materials. First, the spots of moisture on the other side of the wall appear over seams. It means that the permeability of structure is usually related to constructional peculiarities of junctions, the quality of mounting and, less often, to certain peculiarities of the material itself. Water together with infiltrated airflow is moving through voids, chink and leaky points in seams. The higher the speed of wind, the higher the pressure on surface of a wall, which predetermines the volume of infiltrated air. Consequently, when the volume of infiltrated air increases, the probability that the wall shall become soaked faster also increases.First Published Online: 26 Jul 2012
机译:建筑物中的干墙是预先定位建筑物的耐用性,房屋舒适和维修服务的舒适度和维修服务的主要条件。当多孔混凝土,轻质砖和高绝缘结构施加墙壁时,雨层进入壁的外层的概率。可以定义几种水分渗透到建筑物结构中的方法。如果建筑物包络的特征在于透气性高,风雨期间风的速度对水分渗透的影响最为重要。当使用具有高毛细管水饱和度的多孔材料时,雨持续时间可以被认为是水分渗透的最重要指标。目的是估算压力对水分渗透的影响,采用分裂表面的硅酸盐砖的小尺寸壁碎片,混凝土砂浆样品以及它们的单独样品进行调查,在特殊气候室内的风力压力下进行雨水渗透。由于立陶宛房屋中的重要部分外表面是硅酸盐砖的重要组成部分,因此选择了材料。带有分裂表面的硅酸盐砖吸收水分,适合作为研究的对象。为了研究雨水与风的影响在墙壁上的水分含量上,使用了一种特殊的支架(图2)。风(M / s)的速度分别模拟到压力(PA)以便于实验。支架附着在调查下的墙壁的表面上。在灌溉过程中在支架中形成了等效的压力。饱和速度在整个结构中确定的雨强度和形成压力的依赖性以及单独的样品。测试饱和壁碎片的结果证明,与所考虑的材料样品相比,具有混凝土砂浆的分割硅酸盐砖的壁变得更快。首先,墙体另一侧的水分斑点出现在接缝上。这意味着结构的渗透性通常与连接的结构特性,安装的质量和较少,通常,对材料本身的某些特性有关。与渗透的气流一起使用空隙,弯曲和接缝中的漏分。风速越高,壁表面的压力越高,这使得预先确定渗透空气的体积。因此,当渗透空气的体积增加时,墙壁将变得浸泡的可能性也增加。首次出版在线:2012年7月26日

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  • 作者

    Valdas Paukštys;

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  • 年度 2000
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