印度尼西亚南瓦利奥近海三维地震勘探设计:优化三维勘测设计参数

Wahyu Triyoso, S. Supriyono, Firman Saifuddin Akbar, M. Oktariena, Sri Lestari, Benny Eza Yusuf, Donny Miraza
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引用次数: 0

摘要

本研究的背景是支持在位于索龙省的 Salawati Kepala Burung 工作区进行三维地震采集的计划。三维地震设计研究旨在更好地了解 Salawati 盆地及其周边中生代碎屑岩储层的物理性质,尤其是近海区域。该研究旨在评估可靠的三维地震采集设计参数,以提高三维地震数据采集计划的融资效率。利用现有二维数据和井记录信息,建立地球物理分析模型,确定对 Kais Formation 和 Waripi Formation 目标成像的记录参数。在此模型的基础上,利用 Kais 和 Waripi 地层的特性,计算和分析垂直和水平分辨率、分区大小、孔径迁移和最大偏移。本研究采用合成采集二维模型进行垂直和水平分辨率分析,并获得最佳和可靠的分区尺寸参数和孔径迁移。有了这些知识,我们就能计算出勘测的理论参数。在确定研究中最关键的理论参数后,下一步是确定源和接收器之间的距离。然后确定记录模板。具体做法是考虑三维模型的分仓大小、偏移边界以及内部目标的合适褶皱。第二步,分析另外两个最重要的属性,即偏移和方位角分布。我们认识到,从野外活动的技术要求出发,每次三维勘测设计都会对影响三维勘测成本的技术因素做出妥协。本研究的成果是以理想震源-接收器布局模型(即正交和对角)的形式,对两种主要的记录参数和模板替代模型提出建议和意见,以及预计能够绘制和确定南瓦利奥近海区域浅层和深层油气层类型模型特征的最低先决条件。
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The 3D Seismic Survey Design of South Walio Offshore, Indonesia: Optimizing the 3D Survey Design Parameters
The background of this research is to support the plan to carry out 3D seismic acquisition in the Salawati Kepala Burung Working Area located in Sorong Regency. The 3D seismic design study was applied to better understand the physical properties of the Mesozoic clastic reservoir in the Salawati basin and its surroundings, especially in the offshore area. The study aims to evaluate the parameters of a reliable 3D seismic acquisition design to meet efficiency in financing in realizing the 3D seismic data acquisition program. Determine the recording parameters to image the Kais Formation and Waripi Formation targets by building a geophysical analysis model using existing 2D data and well-log information. Based on this model, using the Kais and Waripi formation properties to calculate and analyze vertical and horizontal resolution, bin size, aperture migration, and maximum offset. Synthetic acquisition 2D modeling is applied in this study to perform vertical and horizontal resolution analysis and obtain optimum and reliable bin size parameters and aperture migration. With this knowledge, we calculate the theoretical parameters of the survey. After determining the most critical theoretical parameters of the study, the next step is to determine the distance between the source and receiver. Then define the recording template. It is done by considering the bin size for the 3D model, offset boundaries, and suitable folds for inner targets. In the second, an analysis of the other two most important attributes is carried out, namely the offset and azimuth distribution. It is realized that every 3D survey design compromises technical factors affecting 3D survey costs starting from the technical requirements of field activities. The results of this study are recommendations and suggestions for two main alternative models of recording parameters and templates in the form of ideal source-receiver layout models, namely orthogonal and diagonal, and the minimum prerequisites that are expected to be able to map and determine the characteristics of the shallow and deep play type models in the South Walio offshore areas.
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