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A viscous-spring transmitting boundary for cylindrical wave propagation in saturated poroelastic media

机译:饱和多孔弹性介质中圆柱波传播的粘弹性传递边界

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Based on the u-U formulation of Blot equation and the assumption of zero permeability coefficient, a viscous-spring transmitting boundary which is frequency independent is derived to simulate the cylindrical elastic wave propagation in unbounded saturated porous media. By this viscous-spring boundary the effective stress and pore fluid pressure on the truncated boundary of the numerical model are replaced by a set of spring, dashpot and mass elements, and its simplified form is also given. A u-U formulation FEA program is compiled and the proposed transmitting boundaries are incorporated therein. Numerical examples show that the proposed viscous-spring boundary and its simplified form can provide accurate results for cylindrical elastic wave propagation problems with low or intermediate values of permeability or frequency content. For general two dimensional wave propagation problems, spuriously reflected waves can be greatly suppressed and acceptable accuracy can still be achieved by placing the simplified boundary at relatively large distance from the wave source. (C) 2014 Elsevier Ltd. All rights reserved.
机译:基于Blot方程的u-U公式和零渗透系数的假设,推导了频率独立的粘性弹簧传递边界,以模拟圆柱弹性波在无界饱和多孔介质中的传播。通过该粘性弹簧边界,数值模型的截断边界上的有效应力和孔隙流体压力被一组弹簧,阻尼器和质量单元所替代,并且给出了其简化形式。编译了u-U公式的FEA程序,并在其中合并了建议的传输边界。数值算例表明,所提出的粘性弹簧边界及其简化形式可以为渗透率或频率含量为中值或低值的圆柱弹性波传播问题提供准确的结果。对于一般的二维波传播问题,通过将简化边界放置在距波源相对较大的距离处,可以大大抑制杂散反射波,并且仍可以达到可接受的精度。 (C)2014 Elsevier Ltd.保留所有权利。

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