Analysis of Riser Gas Pressure from Full-Scale Gas-in-Riser Experiments with Instrumentation

Mahendra R. Kunju, M. Almeida
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引用次数: 2

Abstract

As the use of adaptive drilling process like Managed Pressure Drilling (MPD) facilitates drilling of otherwise non-drillable wells with faster corrective action, the drilling industry should review some of the misconceptions to produce more efficient well control methods. This paper discusses results from full-scale experiments recently conducted in an extensively instrumented test well at Louisiana State University (LSU) and demonstrate that common expectations regarding the potential for high/damaging internal riser pressures resulting from upward transport or aggregation of riser gas are unfounded, particularly when compressibility of riser and its contents are considered. This research also demonstrates the minimal fluid bleed volumes required to reduce pressure build-up consequences of free gas migration in a fully closed riser.
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全尺寸立管内气体压力仪器分析
随着控压钻井(MPD)等自适应钻井技术的使用,可以更快地完成非钻井的钻井作业,钻井行业应该反思一些错误观念,以开发出更有效的井控方法。本文讨论了最近在路易斯安那州立大学(LSU)的一口测试井中进行的全面实验结果,并证明了有关立管气体向上输送或聚集可能导致立管内部压力过高/破坏性的普遍预期是没有根据的,特别是考虑到立管及其内容物的可压缩性。该研究还表明,在全封闭立管中,减少自由气体运移造成的压力积聚所需的最小流体放气量。
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Challenges and Opportunities Related to Use of Models in Drilling Operations Real-Time Multi-Event Anomaly Detection using Elliptic Envelope and A Deep Neural Network for Enhanced MPD Robustness Analysis of Riser Gas Pressure from Full-Scale Gas-in-Riser Experiments with Instrumentation Integrating an MPD System on a Jack-Up Rig; Why You Should and How You Can Collaborative Engineering and Design Leads to Optimized MPD Land Rig Concept
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