首页> 外文会议>EARTH and SPACE 2012;ASCE Aerospace Division conference on engineering, construction, and operations in challenging environments;NASA/ASCE workshop on granular materials in space exploration >Analytical Approach to Solute Dispersion along and against Transient Groundwater flow in a Homogeneous Finite Aquifer: Pulse Type Boundary Conditions
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Analytical Approach to Solute Dispersion along and against Transient Groundwater flow in a Homogeneous Finite Aquifer: Pulse Type Boundary Conditions

机译:均质有限含水层中沿地下水流动和逆向流动的溶质扩散分析方法:脉冲型边界条件

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A one-dimensional advective-dispersive equation is analytically solved to predict patterns of contaminant concentration distribution in a homogeneous and finite aquifer. The dispersion of solute along and against transient groundwater flow is considered. Initially the aquifer is assumed to be not clean, which means that some initial background concentration exists and it is represented by uniform concentration. A pulse-type exponentially decreasing temporally dependent source concentration is considered in the intermediate portion of the aquifer and at other end, the concentration gradient is supposed to be zero. The Laplace Transform Technique (LTT) is used to obtain the solution of the problem of contaminant distribution in two different domains. In fact, in one domain the distribution pattern is depicted along groundwater flow and in other domain, it is depicted against groundwater flow. This represents a realistic situation of the contaminant concentration distribution pattern in an aquifer in the presence or absence of temporally dependent source concentration. The time-varying velocity expressions are considered. The dispersion is directly proportional to the seepage velocity used in which the effect of molecular diffusion is not taken into account because the value of molecular diffusion does not vary significantly for different soil and contaminant behaviors. Results of the obtained analytical solution may form useful complements to benchmark numerical models or for their verification. The long-term vertical transport of solute during transient saturated groundwater flow can be described correctly with appropriate analytical models. It may also be used as a preliminary predictive tool for groundwater resource management to estimate transport parameters.
机译:对一维对流扩散方程进行解析求解,以预测均匀且有限含水层中污染物浓度分布的模式。考虑了溶质沿瞬态地下水流的扩散和逆着瞬态地下水流的扩散。最初,假定含水层不干净,这意味着存在一些初始背景浓度,并以均匀浓度表示。在含水层的中间部分考虑了脉冲型指数式随时间变化的源浓度,在另一端,浓度梯度被假定为零。拉普拉斯变换技术(LTT)用于获得两个不同域中污染物分布问题的解决方案。实际上,在一个域中,其分布模式是沿着地下水流而绘制的,而在另一域中,其分布是针对地下水流的。这表示存在或不存在随时间变化的源浓度时含水层中污染物浓度分布模式的实际情况。考虑时变速度表达式。分散度与所使用的渗流速度成正比,在渗流速度中未考虑分子扩散的影响,因为对于不同的土壤和污染物行为,分子扩散的值不会显着变化。获得的分析解决方案的结果可能构成基准数字模型或对其进行验证的有用补​​充。可以通过适当的分析模型正确地描述瞬态饱和地下水流动过程中溶质的长期垂直输送。它也可以用作地下水资源管理以估算运输参数的初步预测工具。

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