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Inelastic strain distribution and seismic radiation from rupture of a fault kink

机译:无弹性应变分布和断裂扭曲破裂的地震辐射

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We extend an elastodynamic finite element method to incorporate off-fault plastic yielding into a dynamic earthquake rupture model. We simulate rupture for models of faults with a kink (a sharp change in fault strike), examining how off-fault plastic yielding affects rupture propagation, seismic radiation, and near-fault strain distribution. We find that high-frequency radiation from a kink can be reduced by strong plastic yielding near the kink. The reduction is significant above several Hz. When rupture propagates around the kink onto a less favorably stressed fault segment, plastic strain tends to localize into bands and lobes. Off-fault plastic yielding also significantly reduces heterogeneity of residual stresses around the kink following a dynamic event. The calculated plastic strain distribution around the kink and the radiated pulse from the kink are nearly grid independent over the range of element size for which computations are feasible. We also find that plastic strain can sometimes localize spontaneously during rupture along a planar fault, in the absence of a discrete stress concentrator like the kink. In that case, a non-dimensional parameter T, characterizing the initial proximity of off-fault material to its yield strength, determines whether plastic strain localizes into discrete bands or is smoothly distributed, with a large value of T promoting localization. However, in the cases of spontaneous localization, the details of the shear banding change with numerical element size, indicating that the final plastic strain distribution is influenced by interactions occurring at the shortest numerically resolvable scales. Off-fault plastic yielding also makes an important contribution to the cohesive zone at the advancing edge of the rupture.
机译:我们扩展了弹性动力有限元法,将截止故障塑料掺入动态地震破裂模型中。我们模拟了扭结模型的破裂(断层撞击的急剧变化),检查了故障塑性屈服如何影响破裂传播,地震辐射和近故障应变分布。我们发现,通过扭结附近的强塑料,可以减少来自扭结的高频辐射。减少显着高于几Hz。当破裂围绕扭结传播到薄片上的较不利的应力的断层段时,塑性应变倾向于定位到带和叶中。在动态事件之后,截损塑料屈服也显着降低了扭结周围的残余应力的异质性。扭结周围的塑料应变分布和来自扭结的辐射脉冲几乎是网格,独立于计算可行的元素大小范围内。我们还发现塑料应变有时可以在沿着平面故障的破裂时自发定位,在没有像扭结的离散应力集中器的情况下。在这种情况下,将非尺寸参数T表征为屈服强度的闭合材料的初始接近,确定是否塑性应变是否定位成离散带或平滑地分布,具有促进定位的大值。然而,在自发定位的情况下,用数值元素尺寸的剪切带改变的细节,表明最终的塑性应变分布受到在最短的数值可分辨尺度上发生的相互作用的影响。缺口塑料屈服也对突破前沿的粘性区进行了重要贡献。

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