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Riser Gas Risk Mitigation with Advanced Flow Detection and Managed Pressure Drilling Technologies in Deepwater Operations

机译:采用深水运营中的先进流动检测和管理压力钻探技术的提升管气体风险减缓

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Studies have revealed that gas kicks unintentionally entrained in oil or synthetic based mud in deepwater drilling operations at water depths greater than 3000 ft are unlikely to break out of solution until they are above the subsea BOPs.The rig diverter is conventionally used to vent riser gas with minimal control and with considerable risk and environmental impact through the uncontrolled discharge of drilling fluids. Riser gas handling(RGH)systems currently being offered provide a reactive solution to the problem by supplying a riser joint equipped with additional components for this specific purpose.This joint is normally composed of a retrofitted annular BOP and a flow spool with hoses that is installed on top of the rig marine riser.An alternative and proactive approach to riser gas handling,which we prefer to call riser gas risk mitigation,is proposed by utilizing managed pressure drilling(MPD) equipment.MPD involves the use of a rotating control device(RCD)to create a closed and pressurizable drilling system where flow out of the well is diverted to an automated MPD choke manifold with a high-resolution mass flow meter that increases the sensitivity and reaction time of the system to kicks,losses and other unwanted drilling events. Experiments and field deployments have shown that the deepwater MPD system can detect a gas influx before it dissolves in oil-based mud,allowing for management of the same using conventional well control methods.Since the MPD system has already closed the well in,automatic diversion and control of gas in the riser is also possible,if required,thereby further minimizing the likelihood of an environmental discharge should a riser gas event occur.Experience gained from deepwater MPD operations in Asia Pacific will be presented to illustrate this.
机译:研究表明,在水深的水深在深水钻井作业中无意地纳入油或合成基础的泥浆的气体踢出可能在溶液上方脱离溶液,直到它们高于海底横断面。钻机分流器通常用于排出提升管气体通过对钻井液的不受控制的放电来说,控制和极其风险和环境的风险和环境影响。目前提供的提升管气体处理(RGH)系统通过供应具有用于该特定用途的附加部件的提升单元提供了对问题的反应性解决方案。该接头通常由改装的环形BOP和安装有软管的流量线轴组成在钻机船上的顶部。通过利用托管压力钻井(MPD)设备提出了推动提升者气体处理的替代和积极主动方法,我们更喜欢调用提升管气体风险减缓..使用旋转控制装置( RCD)为了创造一个闭合和可加压的钻井系统,其中流出井的流出以具有高分辨率质量流量计的自动MPD扼流液,其增加了系统的灵敏度和反应时间,踢球,损失和其他不需要的钻井事件。实验和现场部署表明,深水MPD系统可以在溶解油基泥浆中检测气体流量,允许使用传统井控制方法管理.SINCE已关闭井,自动转移如果需要,还可以控制提升管中的气体,从而进一步最小化环境放电的可能性,如果发生的提升性气体事件,则会提出从亚太地区的深水MPD操作中获得的经验,以说明这一点。

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