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Dynamic stress concentration in pre-stressed poroelastic media due to moving punch influenced by shear wave

机译:由于剪切波影响的移动冲头导致预应力的孔弹性介质的动态应力集中

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During the occurrence of earthquake, the shear wave propagates in the rocks present inside/at the Earth’s crust. The propagation of shear wave may lead to the progression of punch present inside the rock medium. As a result of this, substantial stress accumulated at the vicinity of propagating punch inside rock medium which significantly affects the stability of various geological and human-made structure and, hence, may cause failure of structure. Therefore, the analysis of stress concentration at the vicinity of punch moving due to shear wave propagation has become prominent in the area of seismology. In the present paper, an analytical perspective has been employed to discuss the influence of velocity of moving punch associated with the propagation of shear wave on developed dynamic stress concentration (DSC) in three types of pre-stressed vertical transversely isotropic (VTI) poroelastic media viz. granite (an igneous rock); sandstone (a sedimentary rock); and marble (a metamorphic rock). The closed form expression of DSC for the force of constant intensity has been derived with the aid of Weiner-Hopf technique along with Galilean and two-sided Fourier integral transformations. The noticeable influence of different affecting parameters (viz. velocity of moving punch associated with the shear wave propagation, horizontal compressive/tensile initial stresses, vertical compressive/tensile initial stress, porosity, and anisotropy parameter) on dynamic stress concentration has also been reported. Numerical computation and graphical illustrations have been carried out for the aforementioned three different types of porous rocks to investigate the profound impact of affecting parameters on DSC. Moreover, some noteworthy peculiarities have also been derived from the obtained expression of dynamic stress concentration.
机译:在发生地震期间,剪切波在地壳内部/地壳内部的岩石中传播。剪切波的传播可能导致岩石介质内部的冲头的进展。结果,在显着影响各种地质和人造结构的稳定性的岩石介质附近积累的大大应力,从而可能导致结构的失效。因此,在剪切波传播引起的冲头移动附近的应力浓度分析在地震学面积中突出。在本文中,已经采用分析观点来讨论在三种类型的预应力横向各向同性(VTI)Poroelastic介质(VTI)Poroelastic介质中产生动态应力集中(DSC)的剪切波传播相关的移动冲击速度的影响viz。花岗岩(火岩);砂岩(沉积岩);和大理石(变质岩)。 DSC的闭合形式表达对于恒定强度的力量,借助于Weiner-Hopf技术以及加利杠和双面傅里叶的整体变换。还报道了不同影响参数的显着影响(Ziz。与剪切波传播相关的移动冲孔的速度,水平压缩/拉伸初始应力,垂直压缩/拉伸初始应力,孔隙度和各向异性参数)也已经报道了动态应力集中。已经对上述三种不同类型的多孔岩石进行了数值计算和图形图,以研究影响DSC的参数的深刻影响。此外,一些值得注意的特异性也来自于所获得的动态应力集中的表达。

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