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Boundary conditions for the problem of moisture transport in concrete

机译:混凝土中水分运输问题的边界条件

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When calculating of the moisture transport in concrete of such geotechnical structures as a pile or diaphragm wall, contact with soil is forming the special boundary conditions. If the soil is in the full saturated state, then the Darcy’s law should be used to solve the problem, the boundary condition for which is the water pressure. Otherwise, the Ba?ant- Najjar model is used, for which the boundary condition is the relative humidity of soil environment at a certain temperature. The soil environment temperature is unique characteristic for each construction area. For Moscow region, the weighted arithmetic mean temperature to the depth of 60 m is 7.3°C. It is proposed to calculate the relative humidity of the soil environment according to the Kelvin capillary condensation equation, in which the suction is calculated using the Mualem-van Genuchten hydraulic model from the degree of saturation. Two well- known sets of hydraulic parameters of the Mualem-van Genuchten model, compiled on the HYPRES and the HYDRUS-1D database from the European soil map texture classes and the USDA textural soil classification respectively, were compared with the measurement results for soil samples classified according to Russian the GOST 25100. The experimental data showed a good approximation to the calculation with a set of parameters obtained on the basis of the HYPRES database. At the same time, the solution with the HYDRUS-1D parameter set showed a poor correlation.
机译:当在这种岩土结构作为绒头或连续墙的混凝土中的水分传输的计算,与土壤接触时形成的特殊边界条件。如果土壤是在充分饱和的状态,那么应该使用达西定律来解决问题,边界条件是水的压力。否则,巴?ant-纳贾尔模型被用于,为此,边界条件是土壤环境的在一定温度下的相对湿度。土壤环境温度是每个建筑面积独特的特点。对于莫斯科地区,加权算术平均温度到60米的深度是7.3℃。所以建议根据开尔文毛细管冷凝方程,其中,所述抽吸使用从饱和度的穆阿利姆-求算Van Genuchten液压模型计算来计算土壤环境的相对湿度。两个众所周知的套穆阿利姆-求算Van Genuchten模型的液压参数,对Hypres公司和欧洲土壤图纹理类和USDA纹理土壤分别分类HYDRUS-1D数据库中编译的,用测量结果土壤样品相比根据俄罗斯的GOST 25100分类实验数据显示的良好近似的计算与一组的Hypres公司数据库的基础上获得的参数。与此同时,随着HYDRUS-1D参数集液呈弱相关。

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