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Back analysis of geomechanical parameters by optimisation of a 3D model of an underground structure

机译:通过优化地下结构的3D模型对地质力学参数进行反分析

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One of the major difficulties for geotechnical engineers during project phase is to estimate the geomechanical parameters values of the adopted constitutive model in a reliable way. In project phase, they are normally evaluated by laboratory and in situ tests and, in the specific case of rock masses, by the application of empirical classification systems. However, all methodologies lead to uncertainties due to factors like local heterogeneities, representativeness of the tests, etc. In order to reduce these uncertainties, geotechnical engineers can use inverse analysis during construction, using monitoring data to identify the parameters of the involved formations. This paper shows the back analysis of geomechanical parameters by the optimisation of a 3D numerical model of the hydroelectric powerhouse cavern of Venda Nova II built in Portugal. For this purpose, two optimisation techniques were considered: one classical optimisation algorithm and an evolutionary optimisation algorithm. In the optimisation process, displacements measured by extensometers during excavation were used to identify rock mass parameters, namely the deformability modulus (£) and the stress ratio (Ko). Efficiency of both algorithms is evaluated and compared. Both approaches allowed obtaining the optimal set of parameters and provided a better insight about the involved rock formation properties.
机译:在项目阶段,岩土工程师的主要困难之一是以可靠的方式估算所采用本构模型的岩土力学参数值。在项目阶段,通常通过实验室和原位测试对它们进行评估,对于岩体的特定情况,通常通过经验分类系统进行评估。但是,由于局部异质性,测试的代表性等因素,所有方法都会导致不确定性。为了减少这些不确定性,岩土工程师可以在施工过程中使用反分析,使用监控数据来确定所涉及地层的参数。通过优化在葡萄牙建造的Venda Nova II水电站地下室的3D数值模型,本文显示了对地质力学参数的反分析。为此,考虑了两种优化技术:一种经典优化算法和一种进化优化算法。在优化过程中,利用引伸计在开挖过程中测得的位移来识别岩体参数,即可变形模量(£)和应力比(Ko)。评估并比较了两种算法的效率。两种方法都可以获取最佳参数集,并且可以更好地了解所涉及的岩层性质。

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