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Historical development of soil-water physics and solute transport in porous media

机译:土壤水物理学与多孔介质中溶质运移的历史发展

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The science of soil-water physics and contaminant transport in porous media began a little more than a century ago. The first equation to quantify the flow of water is attributed to Darcy. The next major development for unsaturated media was made by Buckingham in 1907. Buckingham quantified the energy state of soil water based on the thermodynamic potential energy. Buckingham then introduced the concept of unsaturated hydraulic conductivity, a function of water content. The water flux as the product of the unsaturated hydraulic conductivity and the total potential gradient has become the accepted Buckingham-Darcy law. Two decades later, Richards applied the continuity equation to Buckingham's equation and obtained a general partial differential equation describing water flow in unsaturated soils. For combined water and solute transport, it had been recognized since the latter half of the 19th century that salts and water do not move uniformly. It wasn't until the middle of the 20th century that scientists began to understand the complex processes of diffusion, dispersion, and convection and to develop mathematical formulations for solute transport. Knowledge on water flow and solute transport processes has expanded greatly since the early part of the 20th century to the present.
机译:土壤水物理学和污染物在多孔介质中的运输的科学始于一个多世纪以前。量化水流量的第一个方程式归因于达西。非饱和介质的下一个重大发展是由白金汉在1907年做出的。白金汉基于热力学势能来量化土壤水的能量状态。白金汉随后介绍了不饱和导水率的概念,它是水含量的函数。作为不饱和导水率和总电势梯度的乘积的水通量已成为公认的白金汉-达西定律。二十年后,理查兹(Richards)将连续性方程应用于白金汉方程,并获得了描述不饱和土壤中水流的一般偏微分方程。对于水和溶质的联合运输,自19世纪下半叶以来,人们就认识到盐和水不能均匀地运动。直到20世纪中叶,科学家才开始了解扩散,扩散和对流的复杂过程,并开发出用于溶质运移的数学公式。自20世纪初期到现在,有关水流和溶质传输过程的知识有了很大的发展。

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