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Modeling the dynamic response of rock masses with multiple compliant fluid saturated joint sets - Part Ⅱ: Continuum modeling

机译:用多兼容流体饱和关节套建模岩体的动态响应 - 第Ⅱ部分:连续塑造

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Part I of this two-part paper describes enhancements of a mesoscale model to include: many non-persistent fluid saturated joints with finite area, normal compliance with hysteresis and the weakening effects of angular deviation in the joint sets and of fluid pressure in the joints. The objective of this Part II is to use the results of the mesoscale model as simulated data to inspire functional forms in a continuum model for rock masses with multiple compliant fluid saturated joint sets which include these enhancements. Also, an algorithm is proposed for reducing the number of joint sets being modeled. Examples are presented which show that the continuum model can predict similar anisotmpic response to that observed in mesoscale simulations. In contrast with the mesoscale model, the continuum model can be used for large scale simulations of real applications, smoothly transitioning from coupled inelastic thermomechanical response near an explosive source to orthotropic elastic response far from the source.
机译:本两个纸张的第I部分描述了Messcale模型的增强,包括:许多非持久性流体饱和关节,具有有限区域,正常符合滞后和角度偏差在接头中的流体压力的弱化效应。本部分的目的是使用Messcale模型的结果作为模拟数据,以激发岩体的连续模型中的功能形式,该岩体具有多种符合的流体饱和的关节组,包括这些增强功能。此外,提出了一种用于减少正在建模的关节组的数量的算法。提出了示例,其示出了连续体模型可以预测在Messcale模拟中观察到的类似的基同响应。与MESSCLE模型相比,连续体模型可用于实际应用的大规模模拟,从源极源附近的耦合非弹性热机械响应平稳过渡到远离源的正交弹性响应附近。

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