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Distorting Effects of the Near-surface Layer on Seismic Imaging - Physical Model Investigations

机译:近表面层对地震成像的扭曲效应 - 物理模型研究

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The 2D ultrasonic model facility at ETH Zurich was used to investigate how a variable near-surface weathered layer can adversely affect the imaging of reflection data. The simulated geological structures are constructed from 2 mm thick metal and plastic sheets, cut and bonded together into various shapes. The experiments entailed the use of a piezoelectric source driven by a pulse amplifier at ultrasonic frequencies to generate Lamb waves in the plate, which are detected by piezoelectric receivers and recorded digitally on a National Instruments recording system, under SignalExpress software control. High quality reflection seismic data were collected. However, the pre-stack migrated image for the deeper reflectors deteriorates as the near-surface becomes more complex and as block anomalies are inserted within the layers. Crosshole and VSP seismic data were also acquired, and first arrival travel-time tomography used to reliably reconstruct the velocity distribution. The 2D physical scale model system provides a valuable complement to numerical modeling to study various aspects of wave propagation and subsurface imaging.
机译:Eth Zurich的2D超声波模型设施用于研究可变近表面风化层会对反射数据的成像产生不利影响。模拟地质结构由2mm厚的金属和塑料片构成,切割并粘合成各种形状。该实验需要在超声频率下使用由脉冲放大器驱动的压电源,以产生由压电接收机检测的板中的羊光波,并在信号录制软件控制下以数字仪器记录系统进行数字。收集了高质量的反射地震数据。然而,随着近表面变得更复杂并且块异常插入层内,对更深反射器的预堆叠迁移图像劣化。还获得了横桨和VSP地震数据,并且首先到达行进时间断层扫描用于可靠地重建速度分布。 2D物理刻度模型系统提供了对数值模拟的有价值的补充,以研究波传播和地下成像的各个方面。

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