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Anti-sliding stability of a gravity dam on complicated foundation with multiple structural planes

机译:具有多个结构面的复杂地基上重力坝的抗滑稳定性

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Anti-sliding stability of a dam foundation is one key problem that affects engineering safety. High gravity dams are typically built on complicated foundations, and maintaining their stabilities can be very challenging due to the formation of natural sliding paths from multiple weak structure planes. This paper presents two geomechanical model tests to study the stabilities of a foundation before and after reinforcement. By testing the original foundation, the resultant test results demonstrate that the stability safety factor is low and the associated weak structural planes are control factors therein. Subsequently, a sensibility analysis is performed to study the impacts of weak structural planes on foundation stability. Some reinforcement measures have been adopted accordingly, and the stability of the reinforced foundation is further studied in another model test. The second test indicates that the reinforcement effect is satisfactory in that, after reinforcement, the working performance and stability of the investigated foundation are greatly improved. These research results provide an important scientific basis for the evaluation of safety and reinforcement effectiveness in a gravity dam project.
机译:大坝基础的防滑稳定性是影响工程安全的关键问题之一。高重力坝通常建在复杂的地基上,由于由多个弱结构平面形成自然的滑动路径,因此保持其稳定性可能非常困难。本文介绍了两个地质力学模型测试,以研究加固前后的地基稳定性。通过测试原始基础,结果测试结果表明,稳定性安全系数很低,并且相关的薄弱结构面是其中的控制因素。随后,进行敏感性分析以研究弱结构平面对基础稳定性的影响。相应地采取了一些加固措施,并在另一个模型测试中进一步研究了加固基础的稳定性。第二次试验表明,加固效果令人满意,因为加固后大大改善了所研究基础的工作性能和稳定性。这些研究结果为评价重力坝工程的安全性和加固效果提供了重要的科学依据。

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