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METHODS FOR SUBSURFACE PARAMETER ESTIMATION IN FULL WAVEFIELD INVERSION AND REVERSE-TIME MIGRATION

机译:全波场反演和逆时偏移的地下参数估计方法

摘要

METHOD FOR CONVERTING SEISMIC DATA TO OBTAIN A SUBSURFACE MODEL OF, FOR EXAMPLE, BULK MODULUS OR DENSITY. THE GRADIENT OF AN OBJECTIVE FUNCTION IS COMPUTED (103) USING THE SEISMIC DATA (101) AND A BACKGROUND SUBSURFACE MEDIUM MODEL (102). THE SOURCE AND RECEIVER ILLUMINATIONS ARE COMPUTED IN THE BACKGROUND MODEL (104). THE SEISMIC RESOLUTION VOLUME IS COMPUTED USING THE VELOCITIES OF THE BACKGROUND MODEL (105). THE GRADIENT IS CONVERTED INTO THE DIFFERENCE SUBSURFACE MODEL PARAMETERS (106) USING THE SOURCE AND RECEIVER ILLUMINATION, SEISMIC RESOLUTION VOLUME, AND THE BACKGROUND SUBSURFACE MODEL. THESE SAME FACTORS MAY BE USED TO COMPENSATE SEISMIC DATA MIGRATED BY REVERSE TIME MIGRATION, WHICH CAN THEN BE RELATED TO A SUBSURFACE BULK MODULUS MODEL. FOR ITERATIVE INVERSION, THE DIFFERENCE SUBSURFACE MODEL PARAMETERS (106) ARE USED AS PRECONDITIONED GRADIENTS (107). (FIG.1)
机译:转换地震数据以获取地下模型的方法,例如地下模型或密度模型。使用地震数据(101)和背景地下介质模型(102)来计算(103)目标函数的梯度。在背景模型(104)中计算源和接收照明。地震分辨率体积是使用背景模型(105)的速度来计算的。使用源和接收照明,地震分辨体积和背景子表面模型,将梯度转换为差分子表面模型参数(106)。可以使用这些相同的因素来补偿由反向时间迁移迁移的地震数据,然后可以将其与地下散装模量模型相关。对于迭代反演,将差分次表面模型参数(106)用作前提梯度(107)。 (图。1)

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