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Effect Of Nonuniform Boundary Conditions On Steady Flow In Saturated Homogeneous Cylindrical Soil Columns

机译:边界条件不均匀对饱和均质圆柱土柱稳定流动的影响

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Laboratory column experiments involving steady flow in homogeneous soil are often analyzed assuming that the flow is spatially uniform in any plane transverse to the longitudinal axis aligned with the column centerline. Axisymmetric steady flow in such a column was analyzed to determine the impact of radially nonuniform boundary conditions at the column entrance and exit planes. A general solution to the governing Laplace equation was derived taking into account arbitrary functional forms of the imposed head and flux boundary conditions. Specific solutions were deduced for smoothly varying and abrupt disturbances at the boundaries. The solutions were used to derive expressions for the length scale over which the induced flow nonuniformities are dissipated within the column. For soil columns with an aspect ratio (column radius/length) less than about 1/3, the maximum dissipation length scale is in all cases less than 3/2R, where R is the column radius. For practical purposes it is sufficient to take R as the dissipation length scale. Consequently, no matter what the radial variation in the boundary condition, flow will be uniform within the column if at each end a baffle zone with length equal to R is incorporated into the soil column design. The results can be applied to homogeneous anisotropic soil via a simple scaling. Published experimental results showing nonuniform flow near the entrance and exit boundaries were found to be consistent with the theoretical results.
机译:通常假设在垂直于纵轴且与色谱柱中心线对齐的任何平面中,流体在空间上是均匀的,因此通常会分析涉及均质土壤中稳定流动的实验室色谱柱实验。分析了这种圆柱中的轴对称稳定流,以确定径向非均匀边界条件对圆柱入口和出口平面的影响。考虑到强加水头和通量边界条件的任意函数形式,得出了控制拉普拉斯方程的一般解。推导了针对边界处的平稳变化和突然扰动的特定解决方案。该解决方案用于得出长度标度的表达式,在该表达式中,诱导流的不均匀性会在色谱柱内消散。对于长宽比(柱半径/长度)小于大约1/3的土柱,在所有情况下,最大耗散长度比例均小于3 / 2R,其中R为柱半径。出于实际目的,将R作为耗散长度标度就足够了。因此,无论边界条件的径向变化如何,如果在土壤柱设计中并入长度等于R的挡板区域,则在柱内的流动将是均匀的。可以通过简单的缩放将结果应用于均质各向异性土壤。发现已发表的实验结果表明入口和出口边界附近的流动不均匀,这与理论结果是一致的。

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