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A geomorphological mapping approach for the assessment of seabed geohazards and risk

机译:评估海床地质灾害和风险的地貌制图方法

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Exploration and development of offshore hydrocarbon resources has advanced into remote deepwater regions over the last decade and poses significant technical challenges for the design and installation of wells and facilities at extreme water depths. Seafloor and shallow subsurface processes and conditions in these areas are complex and generally poorly understood, and the geohazards to development are larger scale and fundamentally different to those encountered onshore; consequently the geohazard risk to deepwater development projects is potentially significant and requires careful evaluation and mitigation during the front-end planning and engineering design stages of projects. There are no established industry standards or methods for the assessment of geohazards and engineering-quality geophysical data at the scale of development. The paper describes an integrated and systematic map-based approach for the assessment and mitigation of seabed geohazards and risk to proposed deepwater development. The approach employs a multidisciplinary team working with engineering-quality field calibrated data to accurately map and assess seafloor ground conditions and ensure that development proposals are not exposed to intolerable geohazard risk. The approach taken is very similar to the practice of establishing geological models for land-based engineering projects, in which the complete geological history of the site is used to characterise and predict the performance of the ground. Such an approach is routine for major projects on land but so far does not seem to be common practice in the offshore industry. The paper illustrates the seafloor geomophological mapping approach developed. The products are being used to optimise development layouts to avoid geohazards where possible and to support site-specific engineering design of facilities based on a detailed understanding of the potential geohazard loadings and associated risk.
机译:在过去的十年中,海上油气资源的勘探和开发已进入偏远的深水地区,这对在极端水深的井和设施的设计和安装提出了重大的技术挑战。这些地区的海底和浅层地下过程和条件十分复杂,一般情况下人们对其了解甚少,而发展中的地质灾害规模更大,与陆上遇到的灾害根本不同。因此,对深水开发项目的地质灾害风险可能是巨大的,并且需要在项目的前端规划和工程设计阶段进行认真的评估和缓解。在发展规模上,尚无成熟的行业标准或方法来评估地质灾害和工程质量的地球物理数据。本文介绍了一种基于系统的,基于地图的综合方法,用于评估和缓解海床地质灾害和拟议深水开发的风险。该方法由一支多学科团队与工程质量的现场校准数据一起工作,以准确地绘制和评估海底地面状况,并确保开发建议不会遭受无法承受的地质灾害风险。所采用的方法与为陆基工程项目建立地质模型的做法非常相似,在该模型中,场地的完整地质历史被用来表征和预测地面的性能。对于陆地上的大型项目来说,这种方法是常规的,但是到目前为止,在海上工业中似乎还不是普遍的做法。本文说明了开发的海底地质学制图方法。该产品被用于优化开发布局,以尽可能避免地质灾害,并在详细了解潜在地质灾害负荷和相关风险的基础上,支持设施的现场特定工程设计。

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