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首页> 外文期刊>Hydrogeology journal >Hydro-mechanically coupled finite-element analysis of the stability of a fractured-rock slope using the equivalent continuum approach: a case study of planned reservoir banks in Blaubeuren, Germany
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Hydro-mechanically coupled finite-element analysis of the stability of a fractured-rock slope using the equivalent continuum approach: a case study of planned reservoir banks in Blaubeuren, Germany

机译:使用等效连续方法的骨折岩石边坡稳定性的水力机械耦合有限元分析 - 以德国Blaubeuren计划的储层库案例研究

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摘要

Construction works associated with the building of reservoirs in mountain areas can damage the stability of adjacent valley slopes. Seepage processes caused by the filling and drawdown operations of reservoirs also affect the stability of the reservoir banks over time. The presented study investigates the stability of a fractured-rock slope subjected to seepage forces in the lower basin of a planned pumped-storage hydropower (PSH) plant in Blaubeuren, Germany. The investigation uses a hydro-mechanically coupled finite-element analyses. For this purpose, an equivalent continuum model is developed by using a representative elementary volume (REV) approach. To determine the minimum required REV size, a large number of discrete fracture networks are generated using Monte Carlo simulations. These analyses give a REV size of 28 x 28 m, which is sufficient to represent the equivalent hydraulic and mechanical properties of the investigated fractured-rock mass. The hydro-mechanically coupled analyses performed using this REV size show that the reservoir operations in the examined PSH plant have negligible effect on the adjacent valley slope.
机译:与在山区修建水库相关的施工工程可能会破坏相邻山谷边坡的稳定性。水库的蓄水和排水操作引起的渗流过程也会随着时间的推移影响水库堤岸的稳定性。本研究调查了德国布劳博伦拟建抽水蓄能水电站(PSH)下池中受渗流力作用的裂隙岩质边坡的稳定性。该研究采用了流体-机械耦合有限元分析方法。为此,通过使用代表性基本体积(REV)方法开发了等效连续介质模型。为了确定所需的最小REV尺寸,使用蒙特卡罗模拟生成了大量离散断裂网络。这些分析给出的REV尺寸为28 x 28 m,足以代表所调查裂隙岩体的等效水力和机械特性。使用该转速进行的水力机械耦合分析表明,所检查的PSH电厂中的水库运行对相邻河谷坡度的影响可以忽略不计。

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