地震地质综合各向异性建模与PSDM技术在新勘探油田水平井组部署中的应用

Y. Bao, Haibo Zhao, Cheng Wang, Yangyang Wang, Feng Yan, Zhiming Zhang, Shuai Guo, Xingyuan Li, Shunyu Yao
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引用次数: 0

摘要

松辽盆地页岩油新勘探区具有良好的勘探前景,通过室内岩心测量,发现各向异性强,各向异性差异大。但优质目标层厚度小于10m,平均垂向深度为2500m,常规地震偏移结果无法支持水平井的精确地质导向。为了消除x1井地震处理结果和水平井轨迹标定中存在的结构误差,采用结果驱动的地震地质综合建模理念指导后续处理,首先采用基于岩石物理分析联合约束的保真速度分析技术,利用各向异性正演模拟结果获得准确的各向同性速度场;然后采用“井控+分层+断控”建模技术,建立高精度速度模型。在叠前深度偏移(PSDM)后,直接在深度域中定量标定地震地质模型的深度误差和水平井轨迹,并对各向异性模型进行迭代PSDM修正。最后,新方法的地震结果与直井合成记录的相关性中,水平井轨迹和地震剖面的结构误差从79%提高到91%。然后,利用深度域已有水平井轨迹对各向异性模型进行定量标定,使最终的VTI各向异性PSDM结果与深度域水平井施工误差小于1‰。各向异性PSDM结果为地质导向提供了准确的指导,后向水平井验证了该方法的高精度。该技术可有效支持大庆油田新油田水平井组的部署和新型储层的有利开发利用,也证明了地震-地质一体化各向异性建模和PSDM技术可为同类型深薄各向异性储层水平井的部署提供可靠的支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Seismic-Geological Integration Anisotropy Modeling and PSDM Technology to Horizontal-Well Group Deployment in New Exploration Field
New exploration field of Shale-oil located on Songliao Basin in the northeast of China show good prospects has been found very strong anisotropy and varies greatly from location to another through laboratory measurement of drilled cores. But the thickness of high-quality target layer is less than 10m and average vertical depth is 2500m, conventional seismic migration results cannot support accurate geosteering of horizontal-wells. We adopted the result-driven integrated seismic and geological modeling concept to guide the following processing in order to eliminate the structural errors existing in the seismic processing results of Well-X1 and the trajectory calibration of horizontal wells, the fidelity velocity analysis technology based on the combined constraints of rockphysical analysis firstly, the anisotropic forward modeling results is used to obtain accurate isotropic velocity field, and then the "Well-control + Stratification + Fault-control" modeling technology is used to establish a high-precision velocity model. The depth errors of the seismic and geological model and the horizontal well trajectory are directly calibrated quantitatively in the depth domain after the PSDM (Prestack Depth Migration), and the anisotropic model is modified for iterative PSDM. Finally, the structural errors of the horizontal well trajectory and seismic profile in the correlation between the seismic results of the new method and the vertical well synthesis record increased from 79% to 91%. Then, the anisotropy model was updated by quantitative calibration with existing horizontal-well trajectory in the depth domain, so that the final VTI anisotropic PSDM results and the horizontal well construction error in the depth domain was less than 1‰. The anisotropic PSDM results provide accurate guidance for geosteering, and the posterior horizontal-well verifies the high accuracy of the method. The technology can effectively support the deployment of horizontal-well groups in new fields and the beneficial development and utilization of new types of reservoirs in Daqing oilfield, it also demonstrated that the seismic-geological integration anisotropy modeling and PSDM technology can provide reliable support for the deployment of horizontal-wells in the same type of deep, thin, anisotropic reservoirs.
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