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In situ creep tests on the long‐term shear behaviors of a fault located at the dam foundation of Dagangshan hydropower station, China

机译:原位蠕变试验对位于中国大港山水电站大坝基金会的故障的长期剪切行为

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Faults in the rock mass of dam foundation are crucial in controlling dam deformation and stability. In particular, long‐term stability of dam foundation is an important factor for the safety of dam operations. The rock in the foundation of Dagangshan hydropower station is mostly granite, and there are many diabase dikes distributed in granite. Geological survey indicates that many faults exist along the interfaces between granite and diabase. Lots of diabase were metamorphosed to chlorites, which have very low strength. In order to investigate the deformation of faults in diabase dikes under long‐term loading, in situ shear creep tests were performed to estimate the creep performance of a fault. The shear creep displacement and the influence of displacement history of the specimen during multi‐level loading tests were measured and analyzed. The isochronous stress‐strain method was used to determine the long‐term strength of the fault in shear creep tests. Considering the instantaneous damage and strain softening, a new viscoelastic‐plastic softening creep model was proposed to describe the shear creep behavior of the fault. Comparisons confirmed that this creep model is capable of describing the shear creep behavior of the fault and the creep parameters were estimated accordingly using this model.
机译:大坝基础岩石质量的故障对于控制坝体变形和稳定性至关重要。特别是,大坝基础的长期稳定性是大坝操作安全的重要因素。 DAGANGSHAN水电站基础的岩石大多是花岗岩,并且有许多分布在花岗岩中的DIABASE DICKES。地质调查表明,花岗岩和玻璃酶之间的界面存在许多故障。大量的蛋白质是使氯化物变成氯化物,其强度非常低。为了在长期载荷下探讨在长期负载下的蛋白质浸渍中的故障变形,以原位剪切蠕变试验估计故障的蠕变性能。测量并分析了剪切蠕变位移和样品在多级负载试验期间的位移历史的影响。使用同步应力 - 应变法来确定剪切蠕变试验中的故障的长期强度。考虑到瞬时损伤和菌株软化,提出了一种新的粘弹性软化蠕变模型来描述故障的剪切蠕变行为。比较证实,该蠕变模型能够描述故障的剪切蠕变行为,并且使用该模型估计蠕变参数。

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