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Parameter identification for axi-symmetric density-dependent groundwater flow based on drawdown and concentration data

机译:基于压降和浓度数据的轴对称密度相关地下水流参数识别

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A new tool for the simultaneous interpretation of a pumping and upconing test of saltwater is developed. The forward model is verified and a synthetic example checks the functioning of the inverse model. The new model interprets the movement of the transition zone between saltwater and freshwater towards the pumping well and the evolution of the drawdowns at different depths and different distances from the pumping well simultaneously. The drawdown and concentration observations are considered in their logarithmic space during the definition of their residuals. These two different types of data are interpreted by minimising a composite object function through a Gauss-Newton algorithm with sensitivities calculated by the perturbation method. The method is fast and relatively free of numerical dispersion because it uses an axi-symmetric grid and particle tracking for the solute transport. (c) 2004 Elsevier B.V. All rights reserved.
机译:开发了一种用于同时解释盐水的抽水和上冲试验的新工具。验证了正向模型,并通过一个综合示例检查了反向模型的功能。新模型解释了盐水和淡水之间的过渡带向抽水井的运动,以及在不同深度和距抽水井不同距离处水位下降的演变。在定义残差时,将在其对数空间中考虑下降和浓度观测值。这两种不同类型的数据通过使用Gauss-Newton算法最小化组合对象函数来解释,该算法具有通过扰动方法计算出的灵敏度。该方法是快速的并且相对没有数值分散,因为它使用了轴对称网格和粒子跟踪来进行溶质传输。 (c)2004 Elsevier B.V.保留所有权利。

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