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New Regularization Algorithms for Solving the Deconvolution Problem in Well Test Data Interpretation

机译:解决试井数据解释反卷积问题的新正则化算法

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Two new regularization algorithms for solving the first-kind Volterra integral equation, which describes the pressure-rate deconvolution problem in well test data interpretation, are developed in this paper. The main features of the problem are the strong nonuniform scale of the solution and large errors (up to 15%) in the input data. In both algorithms, the solution is represented as decomposition on special basic functions, which satisfy given a priori information on solution, and this idea allow us significantly to improve the quality of approximate solution and simplify solving the minimization problem. The theoretical details of the algorithms, as well as the results of numerical experiments for proving robustness of the algorithms, are presented.
机译:本文开发了两种新的正则化算法来求解第一类Volterra积分方程,该算法描述了试井数据解释中的压力率反褶积问题。该问题的主要特征是解决方案的尺度不均匀性很强,并且输入数据中的误差较大(高达15%)。在这两种算法中,解决方案都表示为对特殊基本函数的分解,这些函数满足给定先验信息,并且可以使我们显着提高近似解决方案的质量并简化最小化问题的求解。给出了算法的理论细节,以及证明算法鲁棒性的数值实验结果。

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