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首页> 外文期刊>Journal of natural gas science and engineering >Ultra-deepwater blowout well control analysis under worst case blowout scenario
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Ultra-deepwater blowout well control analysis under worst case blowout scenario

机译:最坏情况下的超深水井喷控制分析

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Because of the high frictional pressure losses in kill lines in ultra-deep water wells, it is challenging to control the blowout under worst case blowout scenarios. The operational parameters need to be carefully controlled to avoid exceeding the operational limitations such as breaking the formation or exceeding available pump pressure limit. In this study, dynamic kill simulations of multiphase flow are carried out to evaluate the operational parameters during the kill process. The simulations account for transient changes including frictional pressure losses, u-tube effect and fluid density variations. By optimizing the operational sequence with regards to, kill mud density, pump flow rate, pump down staging, relief well drillstring and trajectory, blowout can be controlled without exceeding the operational window. This paper shows that 10,390 bbls of the kill mud, 8000 psi pump pressure limit, optimum flow rate arrangement, and minimum 270 min required to get full kill mud return to the sea floor during the well kill operation. Through the aid of advanced transient software models, assessment of the required capacity to kill a blowout enables development of realistic contingency plans to ensure that well control can be re-established in case of an ultra-deep water worst blowout scenario. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于超深水井中压井管线的摩擦压力损失很大,因此在最坏情况下的井喷情况下控制井喷具有挑战性。需要仔细控制操作参数,以避免超出操作限制,例如破坏地层或超过可用的泵压力限制。在这项研究中,进行了多相流的动态压井模拟,以评估压井过程中的运行参数。模拟考虑了瞬态变化,包括摩擦压力损失,U型管效应和流体密度变化。通过优化操作顺序,例如消除泥浆密度,泵的流量,泵的降级,卸压井的钻柱和轨迹,可以控制井喷而不会超出操作范围。本文显示,在井压作业期间,要使10390桶的压井泥,8000 psi的泵压极限,最佳的流量安排以及使全部压井泥返回海底所需的最少270分钟。通过先进的瞬态软件模型,评估所需的消除井喷能力可以制定切合实际的应急计划,以确保在超深水最严重井喷情况下可以重新建立井控。 (C)2015 Elsevier B.V.保留所有权利。

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