LONG-PERIOD SURFACE-RELATED MULTIPLE SUPPRESSION IN 2D MARINE SEISMIC DATA USING PREDICTIVE DECONVOLUTION AND COMBINATION OF SURFACE-RELATED MULTIPLE ELIMINATION AND PARABOLIC RADON FILTERING

Pimpawee Sittipan, P. Wongpornchai
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Abstract

Some of the important petroleum reservoirs accumulate beneath the seas and oceans. Marine seismic reflection method is the most efficient method and is widely used in the petroleum industry to map and interpret the potential of petroleum reservoirs. Multiple reflections are a particular problem in marine seismic reflection investigation, as they often obscure the target reflectors in seismic profiles. Multiple reflections can be categorized by considering the shallowest interface on which the bounces take place into two types: internal multiples and surface-related multiples. Besides, the multiples can be categorized on the interfaces where the bounces take place, a difference between long-period and short-period multiples can be considered. The long-period surface-related multiples on 2D marine seismic data of the East Coast of the United States-Southern Atlantic Margin were focused on this research. The seismic profile demonstrates the effectiveness of the results from predictive deconvolution and the combination of surface-related multiple eliminations (SRME) and parabolic Radon filtering. First, predictive deconvolution applied on conventional processing is the method of multiple suppression. The other, SRME is a model-based and data-driven surface-related multiple elimination method which does not need any assumptions. And the last, parabolic Radon filtering is a moveout-based method for residual multiple reflections based on velocity discrimination between primary and multiple reflections, thus velocity model and normal-moveout correction are required for this method. The predictive deconvolution is ineffective for long-period surface-related multiple removals. However, the combination of SRME and parabolic Radon filtering can attenuate almost long-period surface-related multiple reflections and provide a high-quality seismic images of marine seismic data.
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基于预测反褶积、面相关多重消去与抛物型氡滤波相结合的二维海洋地震资料长周期面相关多重抑制
一些重要的石油储层积聚在海洋之下。海洋地震反射法是石油工业中应用最广泛、最有效的油气藏勘探和解释方法。多次反射是海洋地震反射调查中的一个特殊问题,因为它们经常使地震剖面中的目标反射面模糊不清。通过考虑发生反弹的最浅界面,可以将多次反射分为两种类型:内部多次反射和表面相关多次反射。此外,可以在发生反弹的界面上对倍数进行分类,可以考虑长周期和短周期倍数的区别。本研究以美国东海岸-南大西洋边缘二维海洋地震资料的长周期地表相关倍数为重点。地震剖面验证了预测反褶积、地表相关多重消去(SRME)和抛物型氡滤波相结合的结果的有效性。首先,应用于常规处理的预测反褶积是多重抑制的方法。另一方面,SRME是一种基于模型和数据驱动的表面相关多重消去方法,不需要任何假设。最后,抛物线Radon滤波是一种基于一次反射和多次反射速度判别的基于移出的残余多次反射滤波方法,该方法需要建立速度模型并进行法向移出校正。预测反褶积对于长周期的与表面相关的多次去除是无效的。然而,SRME和抛物型Radon滤波的结合可以衰减几乎长周期的与地面相关的多次反射,并提供高质量的海洋地震数据地震图像。
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