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首页> 外文期刊>Journal of Hydrology >Investigation of the effects of fractured porous media on hydraulic tests - an experimental study at laboratory scale using single well methods
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Investigation of the effects of fractured porous media on hydraulic tests - an experimental study at laboratory scale using single well methods

机译:多孔介质破裂对水力测试的影响研究-使用单井方法在实验室规模进行的实验研究

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摘要

In this paper, a study of detailed pneumatic tests at laboratory scale is presented. The study comprises two different test methods, which were conducted on an unsaturated fractured sandstone block of about I m 3 volume. First, a steady-state flow field with constant gas injection pressure and consequently constant gas flow rates was applied to the fractured sandstone block via a vertical borehole. The discharge of the injected gas was measured at the block surface. Second, a constant gas pressure was injected over the borehole and the transient pressure buildup was recorded at the block surface. It was the objective of the study to investigate the effects of the fractured porous system on pneumatic measurements and to provide an insight into processes occurring during flow and pressure buildup in fractured porous media. This is an essential prerequisite for a reliable validation of different modeling approaches, and it can further assist to improve techniques for the determination of the heterogeneity of hydraulic parameters in fractured porous media. The analysis of the distribution of the flow field and the temporal and spatial evolution of pressure buildup during the hydraulic tests shows that the direction and contribution of the flow field is highly depending on the spatial distribution and the characteristics of the fracture network as well as on the position of the observation points with respect to highly conductive structures. Finally, the introduced test methods are suitable tools for the characterization of the heterogeneous nature of fractured porous media and for the interpretation of the effects of the heterogeneous system on hydraulic tests. (C) 2004 Elsevier B.V. All rights reserved.
机译:本文对实验室规模的详细气动测试进行了研究。该研究包括两种不同的测试方法,它们是在约1 m 3体积的不饱和裂隙砂岩块上进行的。首先,将具有恒定气体注入压力并因此具有恒定气体流速的稳态流场通过垂直钻孔施加到破裂的砂岩块上。在块体表面测量注入气体的排放。其次,在井眼上方注入恒定的气压,并在块体表面记录瞬态压力的增加。该研究的目的是研究多孔多孔系统对气动测量的影响,并提供洞悉多孔多孔介质中流量和压力过程中发生的过程的见解。这是可靠验证不同建模方法的必要先决条件,它可以进一步帮助改进确定裂缝性多孔介质中水力参数非均质性的技术。对水力试验过程中流场的分布和压力积累的时空演变分析表明,流场的方向和贡献高度依赖于缝隙网络的空间分布和特征以及裂缝网络的特征。观察点相对于高导电结构的位置。最后,引入的测试方法是表征裂隙多孔介质非均质性质和解释非均质系统对水力测试影响的合适工具。 (C)2004 Elsevier B.V.保留所有权利。

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