首页> 外文会议>Symposium on fractional differentiation and its applications >The 5th IFAC Symposium on Fractional Differentiation Its Applications, 14-17 May 2012, Nanjing, China N-dimensional fractional water infiltration into porous media affected by the concurrent flow of air
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The 5th IFAC Symposium on Fractional Differentiation Its Applications, 14-17 May 2012, Nanjing, China N-dimensional fractional water infiltration into porous media affected by the concurrent flow of air

机译:第五届IFAC讨论题分数分化及其应用,2012年至17日至17日,南京,中国国内小分数水渗透到受空气并发流动影响的多孔介质

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Infiltration in nature is the process by which water enters the surface of the soil. In this paper we investigate the n-dimensional two-phase infiltration into porous media, i.e.,water infiltration affected by the concurrent flow of air. We investigate the n-dimensional fractional Fokker-Planck equation (fFPE),where (9) is the normalised liquid saturation, qt=qw+qa with qw and qa the volumetric flow rates (equivalent to velocity) of liquid and gas, respectively, and fw the fractional flow function. The fFPE of order β is solved for one-, two-and three-dimensional flow patterns, and the generic equation of cumulative infiltration derived here is of the form I(t)=At+Sntβ/2, where A is the final infiltration rate, Sn the fractional sorptivity which differs for different dimensions, and n the number of dimensions. For β=1, these equations reduce to the two-term equations of cumulative infiltration widely used in hydrology and soil physics. The one-dimensional infiltration equation is fitted to the laboratory data of McWhorter (1971) to give β=0.9557 for Poudre sand and β=0.9579 for Berea sandstone, respectively.
机译:本质上的渗透是水进入土壤表面的过程。在本文中,我们将N维两相渗透研究进入多孔介质,即受到空气并发流动影响的水渗透。我们研究了N维分数Fokker-Planck方程(FFPE),其中(9)是归一化的液体饱和度,QT = QW + QA,QW和QA分别是液体和气体的体积流量(相当于速度),并且fw分数流动功能。 β的FFPEβ为单位,双维流动模式求解,这里衍生的累积渗透的通用方程是I(t)= AT +SNTβ/ 2的形式,其中A是最终渗透速率,Sn的分数恋诉率不同于不同尺寸,尺寸的数量。对于β= 1,这些方程减少到水文和土壤物理学中广泛应用于水性和土壤物理学的双术渗透的双术语方程。一维渗透方程分别安装在MCWHORER(1971)的实验室数据中,分别为Poudre Sand和β= 0.9579的β= 0.9557用于Berea砂岩。

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