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Achieving Savings Through Reliability Using Real Time Data

机译:使用实时数据通过可靠性实现节省

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Historically, the drilling industry has utilized real time data (RTD) for improving drilling efficiencies, documenting occurred events, and reactive decision-making. RTD should promote situational awareness with respect to wellbore instability and hazards. Drilling trends identifiable in RTD change over time as abnormal trends leading to hazards and rarely occur instantaneously. These destabilizing events such as cuttings loading, barrier compromise, kicks, pack-offs, wellbore collapse, or other mechanical and pressure-related causes, whether in rotating or flat-time operations, can be avoided or mitigated. Accepting these hazards as a necessary outcome of drilling operations can be a dangerous proposition and denies risk accountability. Enhancing the systemic approach to process safety represents a paradigm shift in the industry and requires changing behaviors through proactively managing and controlling the pace of the drilling process. A new paradigm suggests the use of a deterministic, physics-based model of real time force-balance in the wellbore during the construction process. Identifying the trends of these forces become predictors of hazards. Mitigating and correcting the trends, in real time avoids process safety failures and consistently results in improvements in non-productive time (NPT) and removable lost time (RLT), notwithstanding the large associated costs. The drilling trend behaviors that predict hazards can facilitate leading as opposed to lagging Key Performance Indicators (KPIs). The new paradigm suggested enables hazards avoidance and thus significantly reduces the costs of drilling. This paper describes and explains these predictive techniques as well as offers suggestions for industry training with respect to surveillance and hazards avoidance using RTD simulators, much as airline pilots would use for continual training.
机译:从历史上看,钻井业已经利用了用于改善钻井效率的实时数据(RTD),记录发生事件和反应决策。 RTD应促进朝井眼不稳定和危害方面的情境意识。钻探趋势在RTD变化中随着时间的推移而变化,导致危险的异常趋势并且很少瞬间发生。这些不稳定的事件,如切割负载,屏障损害,踢,送液,井筒塌陷或其他机械和压力相关的原因,无论是在旋转还是平稳的操作中,可以避免或减轻。接受这些危害作为钻井业务的必要结果可能是一个危险的主张,并否认风险责任。增强加工安全性的系统方法代表行业的范式转变,并通过主动管理和控制钻井过程的步伐,更改行为。新的范式建议在施工过程中使用基于确定性的物理基础的实时力量平衡。确定这些力量的趋势成为危害的预测因素。减轻和纠正趋势,实时避免了过程安全失败,并且尽管有大的相关成本,但始终如一地导致不生产时间(NPT)和可移动丢失时间(RLT)的改进。预测危险的钻探趋势行为可以促进导致滞后的关键绩效指标(KPI)。新的范式建议使避免危害,从而显着降低钻井的成本。本文介绍了这些预测技术,以及使用RTD模拟器避免监视和危险的行业培训的提出建议,因为航空公司飞行员将用于持续培训。

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