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首页> 外文期刊>Engineering Geology >Experimental study of the hydro-mechanical response of Opalinus Clay - Part 1: Pore pressure response and effective geomechanical properties under consideration of confinement and anisotropy
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Experimental study of the hydro-mechanical response of Opalinus Clay - Part 1: Pore pressure response and effective geomechanical properties under consideration of confinement and anisotropy

机译:蛋白质粘土水力机械响应的实验研究 - 第1部分:孔隙压力响应及思考监禁与各向异性的有效地质力学性能

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摘要

Consolidated drained and undrained tests with pore pressure measurements were conducted on back-saturated specimens of a clay shale to characterize the influence of confinement and anisotropy on the pore pressure response and effective geomechanical properties (i.e. first-loading E-modulus, stress at onset of dilation and peak strength). Opalinus Clay, a clay shale chosen as host rock for high level nuclear waste in Switzerland was utilized. The result showed that there is a dependency on the confinement of Skempton's pore pressure parameter A and B, the stress at the onset of dilation, and the first-loading E-modulus. Additionally, a change in behavior of the material was observed at effective consolidation stresses between 5 and 8 MPa. The specimens at lower effective consolidation stresses (i.e. heavily overconsolidated specimens) showed a dilatant behavior in the pre-peak region and a significant post-failure stress drop. Specimens consolidated at higher effective consolidation stresses (i.e. slightly overconsolidated to normally consolidated specimens) showed compaction from initial loading until post-peak and a brittle-ductile post-failure behavior. These observations were manifested in pore pressure response curves, effective stress paths and stress-strain curves. Furthermore, they could be correlated to a non-linear appearance of the peak strength failure envelope. An explanation for the non-linear failure envelope related to the dilatant structure of the material is suggested.
机译:在粘土页岩的背饱和度量上进行整合排出的和不推进的试验,以表征限制和各向异性对孔隙压力响应和有效地质力学性质的影响(即首次装载E-Modulus,爆发扩张和峰值强度)。透明石粘土,作为瑞士高级核废料的宿主岩石被选中的粘土页岩。结果表明,对铜绿的孔隙压力参数A和B的禁闭存在依赖性,扩张发作时的应力,以及第一加载E模量。另外,在5至8MPa的有效固结应力下观察到材料的行为的变化。在较低的有效固结应力(即,重过覆盖的标本)下的样品显示出预峰区域中的膨胀性行为和显着的失效后应力下降。在较高的有效固结应力下固结的标本(即略微过度溶解于通常固结的标本),显示出从初始载荷的压实直至峰后和脆性延性失败者的失败行为。这些观察结果表现为孔隙压力响应曲线,有效应力路径和应力 - 应变曲线。此外,它们可以与峰强度故障包络的非线性外观相关。提出了与材料的膨胀结构相关的非线性故障包络的解释。

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