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非均匀多孔介质一维热输运模型中的不确定性估计。

Uncertainty estimation in one-dimensional heat transport model for heterogeneous porous medium.

机构信息

Institute of Environmental Engineering, National Chiao Tung University, 1001 University Road, Hsinchu, 300, Taiwan.

出版信息

Ground Water. 2014 May-Jun;52(3):326-31. doi: 10.1111/gwat.12088. Epub 2013 Jun 26.

Abstract

In many practical applications, the rates for ground water recharge and discharge are determined based on the analytical solution developed by Bredehoeft and Papadopulos (1965) to the one-dimensional steady-state heat transport equation. Groundwater flow processes are affected by the heterogeneity of subsurface systems; yet, the details of which cannot be anticipated precisely. There exists a great deal of uncertainty (variability) associated with the application of Bredehoeft and Papadopulos' solution (1965) to the field-scale heat transport problems. However, the quantification of uncertainty involved in such application has so far not been addressed, which is the objective of this wok. In addition, the influence of the statistical properties of log hydraulic conductivity field on the variability in temperature field in a heterogeneous aquifer is also investigated. The results of the analysis demonstrate that the variability (or uncertainty) in the temperature field increases with the correlation scale of the log hydraulic conductivity covariance function and the variability of temperature field also depends positively on the position.

摘要

在许多实际应用中,地下水补给和排泄的速率是根据 Bredehoeft 和 Papadopulos(1965)针对一维稳定态热传输方程开发的解析解来确定的。地下水流动过程受到地下系统非均质性的影响;然而,这些细节无法精确预测。在将 Bredehoeft 和 Papadopulos 的解(1965)应用于现场尺度的热传输问题时,存在着很大的不确定性(可变性)。然而,到目前为止,还没有解决这种应用中涉及的不确定性量化问题,这就是这项工作的目标。此外,还研究了对数水力传导率场的统计特性对非均质含水层中温度场变化的影响。分析结果表明,温度场的可变性(或不确定性)随对数水力传导率协方差函数的相关尺度而增加,温度场的可变性也随位置而正向变化。

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