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Practical Equivalent Continuum Model for Simulation of Jointed Rock Mass Using FLAC3D

机译:用FLAC3D模拟节理岩体的实用等效连续体模型。

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A simple practical equivalent continuum numerical model for simulating the behavior of jointed rock mass has been extended to three-dimensional using FLAC3D. This model estimates the properties of jointed rock mass from the properties of intact rock and a joint factor (J_f), which is the integration of the properties of joints to take care of the effects of frequency, orientation, and strength of joint. A new FISH function has been written in FLAC3D specifically for modeling jointed rocks using the Duncan and Chang hyperbolic model. This model has been validated first with simple element tests at different confining pressures for different rocks with different joint configurations. Explicit modeling of the joints has also been done in element tests and results obtained compare well with the results of equivalent continuum model and also with experimental results. Further, this has been applied for a case study of a large underground power house cavern in the Himalayas. The analysis has been done under various stages of excavation, assigning a null model available in FLAC3D for simulating the excavation.
机译:使用FLAC3D将模拟节理岩体行为的简单实用等效连续体数值模型扩展到了三维。该模型根据完整岩石的性质和节理因子(J_f)估算节理岩体的属性,节理因子是节理属性的综合,以照顾节理的频率,方向和强度的影响。已在FLAC3D中编写了一个新的FISH函数,专门用于使用Duncan和Chang双曲线模型对节理岩石进行建模。该模型首先通过简单的单元测试在不同围压下针对不同节理构型的不同岩石进行了验证。在单元测试中也已经对关节进行了显式建模,并且获得的结果与等效连续体模型的结果以及实验结果都可以很好地比较。此外,这已用于喜马拉雅山大型地下发电站洞穴的案例研究。在开挖的各个阶段都进行了分析,为FLAC3D分配了可用于模拟开挖的空模型。

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