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Retrieving the Earths Reflection Response by Multi-dimensional Deconvolution of Ambient Seismic Noise

机译:通过环境地震噪声的多维去卷积检索地球反射响应

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A major assumption for retrieving the earth s reflection response with seismic interferometry by cross- correlation of ambient noise is that subsurface sources are uniformly distributed. It has been shown that interferometry by multi-dimensional deconvolution can cope with non-uniform source arrays, but implementation of this concept requires a separation of the incident wavefield from the free-surface multiples. For transient passive sources, this separation can be implemented by time-gating in the recorded transmission panels before cross-correlation, but such methodology cannot be applied for simultaneously acting noise sources. Here we show that time-gating can also be applied after an intermediate cross- correlation step. In cross-correlated data, we isolate events around t=0, which inhabit the illumination imprint of the subsurface sources. Next, we apply multi-dimensional deconvolution with the isolated events to the events away from t=0. In this way we can effectively correct for the effects of a non-uniform subsurface source distribution in data that is already cross-correlated. With this new approach, multi- dimensional deconvolution becomes feasible for simultaneously acting noise sources.
机译:通过环境噪声的互相关来检索地震干涉法检测地球反射响应的主要假设是均匀分布的地下源。它已经显示,通过干涉多维去卷积可以与非均匀源阵列应付,但是实施此概念的要求入射的波场从自由表面的倍数的间隔。对于瞬态无源源,可以通过在互相关之前通过在记录的传输面板中的时光来实现这种分离,但是这种方法不能应用于同时作用噪声源。在这里,我们示出了在中间互相关步骤之后也可以应用时代。在交叉相关数据中,我们将围绕t = 0的事件隔离,居住地下源的照明印记。接下来,我们将孤立的事件应用于远离T = 0的事件的多维去卷积。以这种方式,我们可以有效地校正在已经交叉相关的数据中的非均匀地下源分布的影响。利用这种新方法,多维去卷积对于同时作用噪声来源变得可行。

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