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Conditional Stochastic Simulations of Flow and Transport with Karhunen-Loève Expansions, Stochastic Collocation, and Sequential Gaussian Simulation

机译:karhunen-loève扩张,随机搭配和顺序高斯模拟的流量和运输条件随机仿真

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摘要

We derive a new method of conditional Karhunen-Loève (KL) expansions for stochastic coefficients in models of flow and transport in the subsurface, and in particular for the heterogeneous random permeability field. Exact values of this field are never known, and thus one must evaluate uncertainty of solutions to the flow and transport models. This is typically done by constructing independent realizations of the permeability field followed by numerical simulations of flow and transport for each realization and assembling statistical estimates of moments of desired quantities of interest. We follow the well-known framework of KL expansions and derive a new method that incorporates known values of the permeability at given locations so that the realizations of the permeability field honor this data exactly. Our method relies on projections to an appropriate subspace of random weights applied to the eigenfunctions of the covariance operator. We use the permeability realizations constructed with our stochastic simulation method in simulations of flow and transport and compare the results to those obtained when realizations are constructed with sequential Gaussian simulation (SGS). We also compare efficiency and stochastic convergence with that of stochastic collocation.
机译:我们推导出一种新的karhunen-loève(kl)扩展方法,用于在地下流动和运输模型中的随机系数,特别是对于异质随机渗透性场。此字段的确切值从未知道,因此必须评估对流量和传输模型的解决方案的不确定性。这通常是通过构建渗透性场的独立实现来完成,然后进行流动和运输的数值模拟,用于每个实现和组装所需数量的兴趣的矩的统计估计。我们遵循众所周知的KL扩展框架,并导出了一种新方法,该方法包含在给定位置的渗透率的已知值,以便渗透性字段的实现完全遵守此数据。我们的方法依赖于应用于协方差操作员的特征功能的适当随机重量子空间的预测。我们使用随机仿真方法构建的渗透性实现在流量和运输的模拟中,并将结果与​​在通过顺序高斯模拟(SGS)构建的实现时获得的结果。我们还将效率和随机衔接与随机搭配进行了比较。

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