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Geohazard detection using 3D seismic data to enhance offshore scientific drilling site selection

机译:地质血清探测使用3D地震数据来增强海上科学钻井场所选择

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摘要

A geohazard assessment workflow is presented that maximizes the use of 3D seismic reflection data to improve the safety and success of offshore scientific drilling. This workflow has been implemented for International Ocean Discovery Program (IODP) Proposal?909 that aims to core seven sites with targets between 300 and 1000 m below seabed across the north-western Greenland continental shelf. This glaciated margin is a frontier petroleum province containing potential drilling hazards that must be avoided during drilling. Modern seismic interpretation techniques are used to identify, map and spatially analyse seismic features that may represent subsurface drilling hazards, such as seabed structures, faults, fluids and challenging lithologies. These hazards are compared against the spatial distribution of stratigraphic targets to guide site selection and minimize risk. The 3D seismic geohazard assessment specifically advanced the proposal by providing a more detailed and spatially extensive understanding of hazard distribution that was used to confidently select eight new site locations, abandon four others and fine-tune sites originally selected using 2D seismic data. Had several of the more challenging areas targeted by this proposal only been covered by 2D seismic data, it is likely that they would have been abandoned, restricting access to stratigraphic targets. The results informed the targeted location of an ultra-high-resolution 2D seismic survey by minimizing acquisition in unnecessary areas, saving valuable resources. With future IODP missions targeting similarly challenging frontier environments where 3D seismic data are available, this workflow provides a template for geohazard assessments that will enhance the success of future scientific drilling.
机译:提出了地质曲线评估工作流程,最大限度地利用3D地震反射数据来提高海上科学钻井的安全性和成功。此工作流程已为国际海洋发现计划(IODP)提案实施?909旨在核心七个站点,以跨西北西北大陆架的海底下方300到1000米。这种漫游的保证金是一个含有潜在钻井危险的前沿危险,必须在钻井期间避免。现代地震解释技术用于识别,地图和空间分析可代表地下钻井危险的地震特征,例如海底结构,故障,流体和挑战性岩性。将这些危害与地层目标的空间分布进行比较,以引导场地选择并最大限度地减少风险。 3D地震地质曲目评估专门通过提供更详细和空间的对危险分配的理解来提出提出的提议,该危险分配用于自信地选择八个新的网站,放弃了最初选择的四个其他使用2D地震数据的其他曲调站点。有几个挑战性的挑战性地区,只有2D地震数据所涵盖的,他们可能会被遗弃,限制对地层目标的访问。结果通过最大限度地降低了不必要的地区的收购,节省了有价值的资源,使超高分辨率2D地震调查的目标位置通报。对于未来的IODP任务,目标是具有3D地震数据可用的相似挑战的前沿环境,此工作流程为地质曲集型评估提供了模板,将提高未来科学钻井的成功。

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