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Understanding of the first arrivals in the shape of a Christmas tree

机译:了解圣诞树形状的第一个到达

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In land seismic data processing, the first arrivals are often picked to image the near surface by applying a traveltime inversion method for statics corrections. In many areas, however, the first arrivals of a shot gather exhibit a pattern like a Christmas tree: the first arrivals quickly disappear over offset and then another branch nearly parallel to the previous one appears with a constant time shift, and the pattern may be repeated further. An initial thought is that these Christmas tree branches are the refractions associated with different layers and imbedded low velocity layers in the near surface cause the delay. To confirm our understanding on such shot gathers, we establish a few numerical models and apply a 1-D elastic modeling program to simulate seismic data. We found that the first refraction quickly fading away because of its propagation through a thin high-velocity layer. The later Christmas tree branches are the wide-angle reflection and its multiples from a low velocity zone right below the thin high-velocity layer. Except for the shallow direct wave and the first refraction branch, all later Christmas tree branches at long offset are not really the "first arrivals." Numerical experiment indicates that using the traveltimes of these Christmas tree branches for the first arrival traveltime inversion produces false near surface models. For this type of data, a more sophisticated method such as waveform inversion should be applied for near surface imaging.
机译:在陆地地震数据处理中,通过应用用于静态校正的旅行时间反转方法,通常挑选第一到来以通过施加旅行时间反转方法来拾取近表面。然而,在许多领域,镜头的第一个到达射击呈现像圣诞树这样的模式:第一个到达速度迅速消失在偏移中,然后在恒定的时移出另一个分支几乎平行于前一个分支,并且模式可能是再次重复。初步思考是,这些圣诞树分支是与不同层相关的折射,近近表面中的嵌入低速层导致延迟。为了确认我们对这种射击的理解收集,我们建立了一些数值模型,并应用1-D弹性建模程序来模拟地震数据。我们发现,由于通过薄的高速层的传播,第一折射迅速消失。后来的圣诞树分支是广角反射及其从薄高速层下方的低速区域的倍数。除了浅层直接波和第一折射分支,距离长期偏移的所有后来的圣诞树分支并不是“第一个到达”。数值实验表明,使用这些圣诞树分支的行进时间为第一个到达旅行时间反转产生假近表面模型。对于这种类型的数据,应施加更复杂的方法,例如波形反转,近近表面成像。

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