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OTC 21253--Understanding Engineering Challenges Posed by Natural Hydrocarbon Infiltration and the Development of Authigenic Carbonate

机译:OTC 21253 - 了解天然碳氢化合物渗透构成的工程挑战和Authigenic碳酸盐的发展

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摘要

Infiltration of shallow soils by naturally occurring hydrocarbons has been documented in several deepwater environments worldwide. The potential for significant soil modification, such as the development of authigenic carbonates and alteration of the generally expected background geotechnical properties may provide constraints to flowline routing, foundation installation and engineering lifetime performance. This paper presents a review of the current state of knowledge of the authors with special reference to recent investigations in deepwater offshore Angola, and a suggested method for identification, characterization and prediction. Interpretation of 3D exploration seismic, enhanced by AUV (Chirp) data facilitates an initial identification of areas prone to hydrocarbon infiltration and the vertical and spatial extent of potential soil modification. A first pass geotechnical characterisation is developed by targeted seabed CPTs and soil sampling. The generation of an integrated predictive model requires a multidisciplinary advanced testing programme, including geophysical, geotechnical, geochemical and geological analyses. Once the extent, nature, and formative processes of hydrocarbon-related soil modification are understood, an assessment can be made of the challenges posed to a field development. This provides the necessary input to foundation and /or routing feasibility and determines if there is requirement to mitigate, through avoidance or design.
机译:通过天然存在的碳氢化合物渗透浅层土壤,在全球的几种深水环境中被记录。显着土壤修饰的潜力,如发育碳酸盐的发展和普遍预期的背景岩土工业的改变可以为流线路由,基础安装和工程寿命性能提供限制。本文介绍了作者目前的知识状态,特别参考深水海上安哥拉最近调查,以及用于鉴定,表征和预测的建议方法。 AUV(Chirp)数据增强了3D勘探地震的解释有助于初始识别碳氢化合物渗透的区域和潜在土壤改性的垂直和空间程度。首次通过岩土性表征是由靶向海底CPTS和土壤采样开发的。集成预测模型的生成需要多学科高级测试程序,包括地球物理,岩土工业,地球化学和地质分析。据了解碳氢化合物相关土壤改性的程度,性质和形成方法,可以评估对现场发展的挑战。这为基础和/或路由可行性提供了必要的输入,并确定是否有要求通过避免或设计减轻。

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