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On the stochastic simulation procedure of estimating critical hydraulic gradient for gas storage in unlined rock caverns

机译:衬砌岩室中储气临界水力梯度的随机模拟程序

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We investigated some aspects of spatial variability and their effect on critical hydraulic gradient which is essential for gas containment of underground storage caverns. Monte Carlo technique can be effectively applied to obtain an approximate solution to the two-dimensional steady flow of a stochastically defined non-uniform medium. For the stochastic simulation we generated hydraulic conductivity field on the selected grid resolution using HYDRO_GEN with estimated (based on actual data) In-K statistics with mean, variance, anisotropic integral scales. In this study, among various covariance functions, a Gaussian covariance function (GCF) was used. To find the critical value of the hydraulic gradient, probability density functions (PDFs) using 1000 outputs at an interested cell were developed. The results obtained in this study were compared with previous results for an exponential covariance function (ECF). It was found that in a stationary In K field the uncertainty of hydraulic head and gradient depend not only on the variance and integral scale of the In K field but also on the shape of its covariance function. From these results we can conclude that the critical range of hydraulic gradient is significantly affected by the type of covariance function. Thus, when critical hydraulic gradient is to be determined one should consider shape of covariance function as well as statistical parameters such as mean, variance and correlation scale.
机译:我们研究了空间变异性的某些方面及其对临界水力梯度的影响,这对于地下存储洞穴的气体封闭至关重要。蒙特卡洛技术可以有效地应用于获得随机定义的非均匀介质的二维稳定流的近似解。对于随机模拟,我们使用HYDRO_GEN在选定的网格分辨率上生成水力传导率场,并具有(基于实际数据)In-K统计量(均值,方差,各向异性积分标度)。在这项研究中,在各种协方差函数中,使用了高斯协方差函数(GCF)。为了找到水力梯度的临界值,开发了使用感兴趣单元上的1000个输出的概率密度函数(PDF)。在这项研究中获得的结果与以前的指数协方差函数(ECF)的结果进行了比较。研究发现,在静止的In K场中,水头和坡度的不确定性不仅取决于In K场的方差和积分比例,还取决于其协方差函数的形状。从这些结果可以得出结论,水力梯度的临界范围受协方差函数类型的影响很大。因此,当确定临界水力梯度时,应考虑协方差函数的形状以及统计参数,例如均值,方差和相关标度。

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