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Effect of stress field and mechanical deformation on permeability and fracture self-sealing. Progress report on the Stress Path Permeameter experiment conducted on Callovo-Oxfordian Claystone

机译:应力场和力学变形对渗透率和裂缝自密封的影响。在Callovo-Oxfordian Claystone上进行应力路径渗透仪实验的进展报告

摘要

This report describes in detail the stress-path permeameter (SPP) apparatus and the first test conducted on Callovo-Oxfordian (CoX) claystone from the Bure underground research laboratory (URL) in France. Funding for this study has been provided by the French radioactive waste management operator, Andra, the European Union (FORGE Project) and the British Geological Survey through its well-founded laboratory programme and the Geosphere Containment project (part of the BGS core strategic programme).udThe results from the first test conducted using the SPP show that the CoX has a very pronounced time-dependent component of deformation. This has implications for the following tests conducted on CoX as part of the FORGE project, but also has implications when comparing tests on CoX that have been deformed at a much faster rate.udTest SPP_CoX-1 was conducted with water as a test permeant at constant pore pressure along a pre-defined stress-path. Volumetric deformation was observed during 16 steps along the stress path, with considerable time-dependent deformation and anisotropy seen in radial strain. The sixteenth stage saw the sample fail through the formation of a fracture after the sample had experienced constant stress conditions for 5.5 days; this emphasises the observed time dependent deformation.udTest SPP-CoX-1 will be used to determine the stress-path steps of test SPP-CoX-2. This much more detailed test will follow 5 or 6 steps up to ultimate failure and will include a full hydraulic test, a gas injection test to determine the gas entry pressure, and constant pore-pressure flow tests to examine the changes in permeability along the stress-path. At all times throughout the test radial and axial deformation will be monitored.
机译:该报告详细描述了应力路径渗透仪(SPP)的仪器以及法国Bure地下研究实验室(URL)在Callovo-Oxfordian(CoX)粘土岩上进行的首次测试。法国放射性废物管理运营商安德拉,欧盟(FORGE项目)和英国地质调查局通过其完善的实验室计划和“地壳控制”项目(BGS核心战略计划的一部分)为这项研究提供了资金。 ud使用SPP进行的第一个测试的结果表明,CoX具有非常明显的随时间变化的变形分量。这对于作为FORGE项目一部分在CoX上进行的以下测试有影响,但在比较以更快的速度变形的CoX上的测试时也有影响。 udTest SPP_CoX-1是以水作为测试渗透物进行的沿预定应力路径的恒定孔隙压力。在沿应力路径的16个步骤中观察到体积变形,在径向应变中观察到相当大的时间依赖性变形和各向异性。在第十六阶段,样品经历了5.5天的恒定应力条件后,样品由于断裂而破裂。 udTest SPP-CoX-1将用于确定测试SPP-CoX-2的应力路径步长。这项更详细的测试将按照5或6个步骤进行,直到最终失效,并将包括一个完整的液压测试,一个用于确定气体进入压力的注气测试以及一个用于检查渗透率沿应力变化的恒定孔隙压力流测试。 -路径。在整个测试过程中,将始终监控径向和轴向变形。

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    Cuss R.J.; Harrington J.F.;

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  • 年度 2010
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  • 正文语种 en
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