首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >EMERGENCY DISCONNECT AND STORM HANG-OFF: REDUCING RISK FOR DRILLING RISERS IN HARSH ENVIRONMENTS
【24h】

EMERGENCY DISCONNECT AND STORM HANG-OFF: REDUCING RISK FOR DRILLING RISERS IN HARSH ENVIRONMENTS

机译:紧急情况断开和风暴困扰:减少恶劣环境中钻井事故的风险

获取原文

摘要

As the search for oil and gas moves to deeper waters and more challenging environments such as the Atlantic margin and South America, the operational risks and consequences of equipment failure increase significantly. Industry guidelines, such as API RP 16Q [1] and ISO 13624.1 [2], define standard scenarios to include in a riser analysis that cover many of the various phases of installation and operation of drilling risers. These scenarios include assessments of the riser in both connected and disconnected modes such as storm hang-off. It is industry practice, as per API RP 16Q/ISO 13624.1, to assess these scenarios independently. Unplanned disconnect of the drilling riser in a storm involves transitioning through intermediate stages to get to the final hang-off configuration. While recoil analysis (assessment of riser disconnect phase) of the riser is commonly addressed, standard industry approaches fail to address other key intermediate and transitional phases of operation required to position the riser into the storm hang-off configuration. This paper presents a study that highlights the importance of analyzing all pertinent stages of drilling riser disconnect and hang-off operations. The study demonstrates that these intermediate phases of operation are often limiting and, if not assessed adequately, have the potential to be catastrophic in harsh environments. A detailed set of revised riser analysis requirements are generated along with the development of a comprehensive harsh environment WSOG (Well Specific Operating Guideline) that optimizes operational performance and improves safety for harsh environment drilling. These revised analysis guidelines and associated modelling that are necessary for harsh environment locations represent a level of pre-drilling assessment that is ahead of that typically undertaken by the industry today.
机译:随着对石油和天然气的搜索转移到更深的水域和更具挑战性的环境(如大西洋边缘和南美),设备的运行风险和后果将大大增加。行业指南,例如API RP 16Q [1]和ISO 13624.1 [2],定义了标准方案,以包括在立管分析中,涵盖钻探立管的安装和操作的许多不同阶段。这些方案包括在连接模式和非连接模式(例如,暴风雨停航)下对立管的评估。根据API RP 16Q / ISO 13624.1,行业惯例是独立评估这些方案。在暴风雨中,计划外的立管断开涉及过渡到中间阶段,以达到最终的悬挂配置。虽然通常讨论立管的反冲分析(立管断开阶段的评估),但标准行业方法无法解决将立管置于风暴悬挂结构所需的其他关键的中间和过渡阶段。本文提出了一项研究,强调了分析钻探立管断开和悬挂操作的所有相关阶段的重要性。研究表明,这些中间操作阶段通常是限制性的,如果评估不充分,可能会在恶劣的环境中造成灾难性的后果。伴随着全面的恶劣环境WSOG(井井作业指南)的开发,将产生一组详细的修订后的立管分析要求,WSOG(井井作业指南)可优化作业性能并提高在恶劣环境下钻井的安全性。这些修订的分析准则和相关的建模对于恶劣的环境条件是必需的,它们代表的钻探评估水平已经超出了当今行业通常进行的评估水平。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号