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Pre-Drilling Prediction Techniques on the High-Temperature High-Pressure Hydrocarbon Reservoirs Offshore Hainan Island, China

机译:海南岛近海高温高压油气藏钻前预测技术

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摘要

Decreasing the risks and geohazards associated with drilling engineering in high-temperature high-pressure (HTHP) geologic settings begins with the implementation of pre-drilling prediction techniques (PPTs).To improve the accuracy of geopressure prediction in HTHP hydrocarbon reservoirs offshore Hainan Island,we made a comprehensive summary of current PPTs to identify existing problems and challenges by analyzing the global distribution of HTHP hydrocarbon reservoirs,the research status of PPTs,and the geologic setting and its HTHP formation mechanism.Our research results indicate that the HTHP formation mechanism in the study area is caused by multiple factors,including rapid loading,diapir intrusions,hydrocarbon generation,and the thermal expansion of pore fluids.Due to this multi-factor interaction,a cloud of HTHP hydrocarbon reservoirs has developed in the Ying-Qiong Basin,but only traditional PPTs have been implemented,based on the assumption of conditions that do not conform to the actual geologic environment,e.g.,Bellotti's law and Eaton's law.In this paper,we focus on these issues,identify some challenges and solutions,and call for further PPT research to address the drawbacks of previous works and meet the challenges associated with the deepwater technology gap.In this way,we hope to contribute to the improved accuracy of geopressure prediction prior to drilling and provide support for future HTHP drilling offshore Hainan Island.
机译:降低高温高压(HTHP)地质环境中与钻井工程相关的风险和地质灾害始于实施预钻井预测技术(PPT)。通过分析HTHP油气藏的全球分布,PPT的研究现状,地质背景及其HTHP​​形成机理,对当前PPT进行了综合总结,以找出存在的问题和挑战。该研究区域是由多个因素引起的,包括快速加载,dia岩侵入,生烃和孔隙流体的热膨胀。由于这种多因素的相互作用,英琼盆地已形成了HTHP油气藏云,但基于条件不符合的假设,仅实施了传统的PPT实际的地质环境,例如贝洛蒂定律和伊顿定律。在本文中,我们着重于这些问题,确定一些挑战和解决方案,并呼吁进行进一步的PPT研究,以解决先前工作的弊端并应对与深水相关的挑战因此,我们希望为提高钻探前地压预测的准确性做出贡献,并为将来在海南岛海上进行的HTHP钻探提供支持。

著录项

  • 来源
    《中国海洋大学学报(英文版)》 |2018年第1期|72-82|共11页
  • 作者单位

    Laboratory of Marine Geophysics and Georesource, Institute of Deep-Sea Science and Engineering, Chinese Academy of Science, Sanya 572000, China;

    Key Laboratory of Submarine Geosciences and Prospecting Techniques, Ministry of Education, Ocean University of China, Qingdao 266100, China;

    Laboratory of Marine Geophysics and Georesource, Institute of Deep-Sea Science and Engineering, Chinese Academy of Science, Sanya 572000, China;

    Laboratory for Marine Geology, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266061, China;

    College of Earth Sciences, University of Chinese Academy of Sciences, Beijing 100049, China;

    Laboratory of Marine Geophysics and Georesource, Institute of Deep-Sea Science and Engineering, Chinese Academy of Science, Sanya 572000, China;

    Shenzhen Branch of CNOOC, Shenzhen 518000, China;

    Laboratory of Marine Geophysics and Georesource, Institute of Deep-Sea Science and Engineering, Chinese Academy of Science, Sanya 572000, China;

    Laboratory of Marine Geophysics and Georesource, Institute of Deep-Sea Science and Engineering, Chinese Academy of Science, Sanya 572000, China;

    Laboratory of Marine Geophysics and Georesource, Institute of Deep-Sea Science and Engineering, Chinese Academy of Science, Sanya 572000, China;

    Laboratory of Marine Geophysics and Georesource, Institute of Deep-Sea Science and Engineering, Chinese Academy of Science, Sanya 572000, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-19 03:49:04
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