首页> 外文会议>SPE Deepwater Drilling and Completions Conference >Flow Rate and Total Discharge Estimations in Gas-Well Blowouts
【24h】

Flow Rate and Total Discharge Estimations in Gas-Well Blowouts

机译:气井井喷的流速和总排出估计

获取原文

摘要

Despite multitier safeguards in any drilling operation,blowouts occur.When such accidents take place, the total discharge of hydrocarbons becomes the focal point for all concerned,including the operator,the service provider,and the regulatory body.Rate estimation becomes a daunting task with scant information about the formation and fluids at the time of the accident.Given that new regulatory guidelines require such estimates for any offshore drilling,systematic investigation is imperative. This study presents an analytical model coupling the flow in a reservoir/wellbore system of a gas well. The model considers flow in the tubing,annulus and riser,and the attendant heat transfer in this formulation.To gauge safety concerns,plume dispersion is modeled under various wind speed scenarios when ignition sources were not present.In the event of gas ignition,the energy of the explosion of the flammable gas is estimated with an empirical method in terms of trinitrotoluene(TNT)equivalency.The energy released by the jet fire associated with flammable gas is also evaluated. Two published field cases provided insight into the model’s applicability in actual situations and some perspective on solution quality.However,given the large number of unknowns in any setting,we adopted the statistical design of experiments to understand the impact of independent variables.These variables include formation permeability,connected reservoir pore-volume,and restrictions in flow path,among others.Overall,the model results are in agreement with the previous findings.Specifically,we observed that reservoir permeability controls the flow rate;hence,the cumulative production for a given flow cross-sectional area in the well.In addition,the reservoir pore-volume connected to the well has a large impact on the rate of production decline;therefore,the total discharge volume.
机译:尽管在任何钻井操作中有多次保险,但发生了井喷。当发生这种事故时,碳氢化合物的总放电成为所有有关的焦点,包括运营商,服务提供商和监管机构.Rate估计成为令人生畏的任务关于事故时的形成和流体的速度信息。新的监管指南要求对任何海上钻井进行此类估计,系统调查势在必行。该研究介绍了耦合气井储层/井筒系统中的流量的分析模型。该模型考虑在管道,环形和提升板中的流动,以及该配方中的伴随传热。仪表安全问题,在点火源不存在时,羽流分散在各种风速场景下进行建模。在燃气点火的情况下,在Trinitro甲苯(TNT)等效方面,用经验方法估计易燃气体的爆炸能量。还评估了与易燃气体相关的射流释放的能量。提供了深入了解实际情况的模型的适用性和解决方案quality.However一些观点,鉴于大量在任何环境未知的两种出版领域的情况下,我们通过实验的统计设计,了解独立variables.These变量包括影响形成渗透性,连接的储层孔隙体积和流动路径的限制。overall,模型结果与先前的发现一致。特殊地,我们观察到储层渗透率控制流速;因此,累计生产给定流量横截面积在井中。此外,连接到井的储层孔隙体积对生产率下降的影响很大;因此,总放电体积。

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