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On Including Near-surface Zone Anisotropy for Static Corrections Computation—Polish Carpathians 3D Seismic Processing Case Study

机译:包括静电校正近表面区域各向异性的静态校正计算 - 波兰喀尔巴阡山脉3D地震处理案例研究

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Obtaining the most accurate and detailed subsurface information from seismic surveys is one of the main challenges for seismic data processing, especially in the context of complex geological conditions (e.g., mountainous areas). The correct calculation of static corrections allows for the reliable processing of seismic data. This, in turn, leads to better geological interpretation. A seismic signal passing through a near-surface zone (NSZ) is adversely affected by the high heterogeneity of this zone. As a result of this, observed travel times often show anisotropy. The application of refractive waves and the time delay solution without taking into account the effects caused by the complex anisotropy of an NSZ does not meet the standards of modern seismic surveys. The construction of the NSZ model in mountain regions with the use of refraction may be extremely difficult, as the vertical layers can be observed very close to the surface. It is not sufficient to apply regular isotropic refractive solutions in such conditions. The presented studies show the results of taking into account the anisotropy of an NSZ in the calculations of static corrections. The presented results show that this step is critical for the detailed processing of three-dimensional (3D) seismic data collected in the difficult region of the Carpathians in Southern Poland.
机译:从地震调查获得最准确且详细的地下信息是地震数据处理的主要挑战之一,特别是在复杂地质条件(例如,山区)的背景下。静态校正的正确计算允许可靠地处理地震数据。反过来,这导致了更好的地质解释。通过近表面区(NSZ)的地震信号受到该区域的高异质性的不利影响。结果,观察到的旅行时间通常显示各向异性。屈光波和时间延迟解决方案的应用而不考虑NSZ的复杂各向异性造成的效果不符合现代地震调查的标准。使用折射的山地区域的NSZ模型的结构可能是极其困难的,因为可以非常靠近表面观察垂直层。在这种条件下施加常规各向同性屈光溶液是不足的。本研究表明,在静态校正的计算中考虑了NSZ的各向异性的结果。所展示的结果表明,该步骤对于波兰南部喀尔巴阡喀尔巴阡困难地区收集的三维(3D)地震数据的详细处理至关重要。

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