首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Imaging high-resolution velocity and attenuation structures from walkaway vertical seismic profile data in a carbonate reservoir using visco-acoustic waveform inversion
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Imaging high-resolution velocity and attenuation structures from walkaway vertical seismic profile data in a carbonate reservoir using visco-acoustic waveform inversion

机译:使用Visco-Mavousic波形反转成像从碳酸盐储层中的Lableaway垂直地震剖面数据的高分辨率速度和衰减结构

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Frequency domain visco-acoustic waveform inversion is applied to multi-offsets vertical seismic profile data acquired over a carbonates reservoir in an oil field offshore Abu Dhabi in the United Arab Emirates, to produce high resolution seismic velocity and attenuation structures. The starting velocity and attenuation models are obtained from traveltime tomography, and from the centroid frequency-shift method, respectively. Waveform tomography is performed between the frequencies 4 and 50 Hz. To reduce coupling between velocity and attenuation parameters during model updates, a two stage inversion strategy is adopted. During the first stage, only the velocity model is recovered and, during the second stage, velocity and attenuation models are recovered. The density is estimated from empirical correlation derived from sonic and density logs at the borehole location. A judicious selection of the time-damping constant tau, used to suppress late arrivals in the Laplace-Fourier domain is critical to mitigate nonlinearities. Prior to the inversion, data preconditioning is done to transform the data in a form convenient for the visco-acoustic wave equation. High resolution final velocity and attenuation models are obtained. Extracted 1D profiles from the final models generally correlate well with the sonic log and estimated clay content from the gamma-ray log. These observations give confidence to the results. A comparison of the synthetic data generated from the final models and the field data shows a high degree of similarity. The high resolution of the results enables us to readily identify layers and provide a geologic interpretation from Quaternary to Late Jurassic. The inverted models show a stack of layers with alternating relatively high and low velocity values associated with relatively high-and low-attenuation values defining anticlines, as we progressed deeper into the subsurface. The two main reservoirs units in the Lower Cretaceous are clearly identified.
机译:频域粘性波形反演应用于阿拉伯联合酋长国在阿拉伯联合酋长国的油田近海近岸油田中获取的多偏移垂直地震剖面数据,以产生高分辨率地震速度和衰减结构。起始速度和衰减模型分别从旅行时间断层扫描获得,以及从质心频移方法获得。在频率4和50Hz之间执行波形断层扫描。为了减少模型更新期间速度和衰减参数之间的耦合,采用了两级反转策略。在第一阶段,仅恢复速度模型,并且在第二阶段期间,恢复速度和衰减模型。密度估计从钻孔位置处的声波和密度对数衍生的经验相关性。用于抑制Laplace-Fourier域中的迟到抵达的时间阻尼常数Tau的明智选择对于减轻非线性至关重要。在反转之前,完成数据预处理以在方便的粘性声波方程中转换数据。获得高分辨率最终速度和衰减模型。从最终模型中提取的1D型材通常与来自伽马射线日志的声波日志和估计的粘土内容良好。这些观察结果对结果提供了信心。从最终模型和现场数据产生的合成数据的比较显示了高度的相似性。结果的高分辨率使我们能够容易地识别层并提供从第四纪到后期侏罗纪的地质解释。倒模型显示了一堆层,其具有与相对高且低衰减值相关联的交替相对高,低速值,定义边界,因为我们深入进入地下。明确识别下白垩纪中的两个主储存器单元。

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