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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Nonstretch normal moveout through iterative partial correction and deconvolution
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Nonstretch normal moveout through iterative partial correction and deconvolution

机译:通过迭代部分校正和反卷积进行非伸展法向运动

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Source to receiver distances used in seismic data acquisition have been steadily increasing and it is now common to work with data acquired with more than 10 km of offset. Subbasalt exploration and seismic undershooting are just two applications in which long-offset reflections are sought. However, such reflections are often subjected to muting to suppress normal moveout (NMO) stretch artifacts, thus causing a loss of valuable information. To retrieve these portions of the recorded wavefield, we developed a nonstretch NMO correction based on wavelet estimation and on an iterative procedure of partial NMO correction and deconvolution. We evaluated this methodology using fourth-order traveltime curve approximations to increase the offset of usable reflections, but it can be adapted to traveltime curves of any order. Time- and space-variant wavelets, estimated by means of singular value decomposition along the sought traveltimes, were used to build the desired output for the deconvolution that aims at retrieving the original shape of the partially stretched wavelets.We tested our method on a synthetic gather presenting time and offset varying wavelets, on a real-marine line simulating an undershooting pattern and on true undershooting land-marine data. These examples demonstrated that our new algorithm effectively limits the stretching associated with the NMO correction and enables the recovery of those portions of the stacked sections that are typically lost from muting in the standard NMO correction.
机译:地震数据采集中使用的源到接收器的距离一直在稳步增加,现在通常需要处理偏移量超过10 km的数据。玄武岩勘探和地震下冲只是寻求长偏移反射的两个应用。但是,这种反射通常会受到抑制,以抑制法向运动(NMO)拉伸伪影,从而导致有价值信息的丢失。为了检索记录波场的这些部分,我们基于小波估计以及部分NMO校正和反卷积的迭代过程开发了非拉伸NMO校正。我们使用四阶传播时间曲线近似值来评估此方法,以增加可用反射的偏移量,但它可以适应任何阶次的传播时间曲线。通过沿寻找的旅行时间进行奇异值分解来估计随时间变化的空间和时变小波,用于为反卷积构建所需的输出,以获取部分拉伸的小波的原始形状。在模拟下冲模式的真实海上线路和真实的下冲陆地海洋数据上收集呈现时间和偏移变化的小波。这些示例表明,我们的新算法有效地限制了与NMO校正相关联的拉伸,并能够恢复通常在标准NMO校正中因静音而丢失的叠层部分。

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