首页> 外文会议>Annual Indonesian Petroleum Association convention and exhibition;Indonesian Petroleum Association convention and exhibition >INTERPRETATIVE PSDM WORKFLOW FOR SOLVING COMPLEX IMAGERY BELOW FAULTS AND CARBONATES REEFS IN SOUTH MAHAKAM, KUTAI BASIN: AN INTERPRETER'S POINT OF VIEW
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INTERPRETATIVE PSDM WORKFLOW FOR SOLVING COMPLEX IMAGERY BELOW FAULTS AND CARBONATES REEFS IN SOUTH MAHAKAM, KUTAI BASIN: AN INTERPRETER'S POINT OF VIEW

机译:解释性的PSDM工作流,用于解决库蒂盆地南马哈卡姆邦在断层和碳酸盐岩下的复杂成像问题:解释者的观点

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Being located structurally in a transition zone between the Paternoster high platform and the Kutai basin, the study area is strongly compartmentalized. Lateral velocity variations across faults with very significant throws induce severe fault shadow effects below fault planes. Pinnacle carbonates overlaid by shale produce pull up anomalies above and seismic image degradation below. In this context, depth imaging is crucial for optimizing field development and reducing uncertainty.An interpretative workflow of Pre-stack depth migration (PSDM) has been performed on the South Mahakam seismic dataset. The objectives are to improve fault imagery and seismic imaging below carbonates. The main difference with time imaging lies in the early integration of interpretation in the velocity model building. Therefore interaction between the interpreter and the depth imager is indeed critical to build a correct depth-velocity model that will noticeably improve the seismic image.Velocity model building has been iteratively done using seismic interpretation surfaces as main inputs and also by incorporating well data. An automated tomography approach is used to update the velocity model, which is strongly constrained by the interpretation input. However, some strong lateral and vertical velocity contrasts (carbonate reefs, pinch outs, faults) have to be manually picked in order to help tomography to converge towards an adequate velocity model. The final velocity model has to meet 3 criteria: 1. flatness of gathers, 2. geological meaning, and 3. honour well data.The QC of final migration results shows that the pull up effect and noise below carbonates has been successfully removed. In terms of fault imagery, the fault shadow in the Jumelai field is well modeled and has better focusing of fault planes.
机译:研究区结构上位于Paternoster高平台和Kutai盆地之间的过渡带,因此强烈分隔。沿断层的横向速度变化具有非常大的投掷量,在断层平面以下会引起严重的断层阴影效应。页岩覆盖的尖峰碳酸盐岩在上方产生上拉异常,而在下方产生地震图像退化。在这种情况下,深度成像对于优化油田开发和减少不确定性至关重要。 解释叠前深度偏移(PSDM)的工作流程已在南Mahakam地震数据集中进行。目的是改善碳酸盐以下的断层成像和地震成像。时间成像的主要区别在于速度模型构建中的解释的早期集成。因此,解释器和深度成像器之间的交互对于建立正确的深度-速度模型确实至关重要,该模型将显着改善地震图像。 使用地震解释面作为主要输入并结合井数据来迭代完成速度模型的建立。使用自动层析成像方法来更新速度模型,该速度模型受到解释输入的强烈限制。但是,必须手动拾取一些强烈的横向和纵向速度对比(碳酸盐岩礁,夹缝,断层),以帮助层析成像收敛到适当的速度模型。最终的速度模型必须满足3个标准:1.道理的平坦度; 2.地质意义; 3.尊重井眼数据。 最终迁移结果的质量控制表明,碳酸盐以下的上拉效应和噪声已被成功消除。在断层图像方面,菊梅来地区的断层阴影建模良好,对断层的聚焦更好。

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