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3D OBC Seismic Survey Productivity Enhancement with Satisfying Geophysical Requirements

机译:3D OBC地震调查生产力增强,满足地球物理要求

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Ocean Bottom Cable (OBC) seismic survey has several technical advantages over conventional towed-streamer technique as it enables the acquisition of wide azimuth and high fold datasets having long offsets and less spatial discontinuities. However, its usage is still limited because of requirement of relatively large operational efforts which likely results in more survey cost and duration. Consequently, optimization of OBC seismic survey productivity is essential to narrow the business gap with towed-streamer acquisition and enhance widespread applicability of OBC techniques. Due to the decoupled aspect of the source and receiver lines, OBC survey can inherently form numerous survey designs. Our study is conducted with the aim to find efficient OBC seismic survey designs that still satisfy established geophysical objectives among infinite selections. We introduce survey designing criteria on the basis of sampling of OVTs (Offset Vector Tile) which allows us to achieve desired offset and azimuth distributions in final imaging. Productivity analysis is then performed based on current equipment availability enabling a variety of survey designs and geometries which were not feasible previously. We also adapt several geometry options including two dual source-vessel operations: (1) Distanced Separated Simultaneous Shooting (DS3); and (2) Dual Source-Vessel Flip-Flop Shooting (DSVFFS). Applicability of dual source-vessel operations to OBC survey has not been well described unlike marine towed-streamer and land cases. Thus, we analyse the impact of dual source-vessel operations on OBC survey efficiency. Additionally, we discuss technical challenges resulting from the relationship between OBC survey designs and the resultant interference noise wave fields not generally associated with other acquisition techniques.
机译:海底电缆(OBC)地震勘测比传统拖缆技术了若干技术优点,因为它能够获取宽方位角和具有长的偏移量和较少的空间间断高折数据集。但是,它的使用仍然有限,因为比较大的业务工作,其在更多的调查成本和持续时间可能结果的要求。因此,OBC地震勘测生产力的优化是必不可少的拉近与拖缆采集业务的差距,增强OBC技术的广泛适用性。由于源和接收器线的解耦方面,OBC调查可以固有地形成了许多调查设计。我们的研究,目的是进行地发现,仍能满足无限的选择之间建立地球物理目标有效OBC地震勘测设计。我们古树名木的采样的基础上介绍调查设计标准(偏移向量磁砖),其允许我们以实现期望的偏移和在最终的成像方位分布。然后,基于当前的设备的可用性可实现各种调查设计和几何形状哪些不是可行的先前执行的生产力分析。我们也适应多种几何形状选择,包括两个双源容器操作:(1)相距分居同时拍摄(DS3);和(2)双源-船只触发器拍摄(DSVFFS)。双源容器操作OBC调查的适用性并不像海洋拖缆和土地案件得到了很好的描述。因此,我们分析双源容器操作上OBC调查效率的影响。此外,我们将讨论从OBC调查设计一般不会与其它收购相关的技术所产生的干扰噪声波场之间的关系所造成的技术挑战。

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