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Reverse time migration of multiples for subsalt imaging

机译:盐下成像的倍数逆时偏移

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摘要

Some hydrocarbon reservoirs are trapped beneath salt bodies, where seismic imaging is greatly challenged due to poor illumination. Multiple reflections have different propagation wave paths from primary reflections and thus can be used to complement the illuminations where primary reflections from beneath the salt are not acquired. Consequently, migration of multiples can sometimes provide better subsalt images compared to conventional migration which uses primary reflections only. In this paper, we propose to modify conventional reverse time migration so that multiples can be used as constructive reflection energy for subsalt imaging. This new approach replaces the impulsive source wavelet with the recorded data containing both primaries and multiples and uses predicted multiples as the input data instead of primary reflections. In the reverse time migration process, multiples recorded on the surface are extrapolated backward in time to each depth level, and the observed data with both primaries and multiples are extrapolated forward in time to the same depth levels, followed by a crosscorrelation imaging condition. A numerical test on the Sigsbee2B data set shows that a wider coverage and a more balanced illumination of the subsurface can be achieved by migration of multiples compared with conventional migration of primary reflections. This example demonstrates that reverse time migration of multiples might be a promising method for complex subsalt imaging.
机译:一些碳氢化合物储存器被困在盐体下方,其中由于照射差,地震成像受到极大地攻击。多反射具有来自初级反射的不同传播波路路径,因此可以用于补充未获取盐下方的主要反射的照明。因此,与传统迁移相比,倍数的迁移有时可以提供更好的余积图像,该迁移仅使用主要反射。在本文中,我们建议改变传统的反向时间迁移,使得倍数可以用作余积成像的建设性反射能量。该新方法用包含两个原初级的记录数据替换脉冲源小波,并使用预测的倍数作为输入数据而不是主要反射。在反向时间迁移过程中,在表面上记录的倍数在时间向后向后推断,每个深度级别都会向后推开,并且具有两个主要和倍数的观察到的数据及时向前推断到相同的深度水平,然后是横封装成像条件。 SigsBee2B数据集的数值测试表明,通过乘法与主要反射的传统迁移相比,可以实现更广泛的覆盖和更平衡的地下照明。该示例演示了倍数的反向时间迁移可能是用于复杂余量成像的有希望的方法。

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