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Bottom Hole Pressure Management in a Highly Permeable and Narrow Margin MPD Operation

机译:底部孔压力管理在高渗透性和窄边缘MPD操作中

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Application of Managed pressure drilling (MPD) technology with other techniques to maintain constant Bottom Hole pressure (BHP) has been found to enhance drilling operations in applications where the margin between the pore pressure and fracture gradient is narrow and the reservoir permeability is high. Classic examples of such applications are deep water drilling, high pressure and high temperature (HPHT) regime and depleted reservoir environments. In the Niger Delta, HPHT reservoirs can be found in well depths up to 17000 ftss with a drilling window range of 0.4 to1.6ppg. Typical reservoir characteristics are formation permeability of 124 - 204mD and reservoir mobility of 112 - 1000mD/cp. Generally in this type of environment and essentially where there are high uncertainties in the reservoir pressures and formation characteristics, significant process safety incidents have been found to occur during pumps off events as a result of variations in BHP outside the allowable limits of pore pressure (lower limit) and fracture gradient (upper limit). The risks of exceeding the allowable limits are the possibility of taking significant influx volume if BHP falls below the pore pressure and loss of well bore integrity if the BHP exceeds the fracture pressure. Consequences of any of these events are high nonproductive time (NPT), well cost escalation and inability to achieve well objectives. This paper illustrates how in the recent HPHT exploration campaign carried out in Niger Delta, managing BHP was identified as a critical success factor. Hydrocarbon reserves of the exploratory objectives were successfully and safely unlocked by using MPD to maintain BHP within the allowable limits. The paper also illustrates how MPD application was enhanced by the use of high resolution pressure while drilling (PWD) technology.
机译:已经发现管理压力钻孔(MPD)技术的应用以维持恒定的底部孔压力(BHP)来增强孔隙压力和断裂梯度之间裕度窄的钻井操作,储层渗透率高。这种应用的经典例子是深水钻井,高压和高温(HPHT)制度和耗尽的储层环境。在尼日尔三角洲,HPHT水库可以在良好的深度方面找到高达17000 FTS的钻孔窗口范围为0.4至1.6ppg。典型的储层特性是124-204MD的形成渗透率,储存率为112-1000MD / CP。通常,在这种类型的环境中,基本上,在储层压力和形成特征中存在高的不确定性,已经发现在泵关闭事件期间发生了显着的工艺安全事件,导致孔隙压力的允许限制范围内的BHP(更低极限)和裂缝梯度(上限)。超过允许限制的风险是如果BHP低于孔隙压力和BHP超过断裂压力,则可能采取显着的流入量的可能性。任何这些事件的后果都是高的非生产期(NPT),成本升级和无法实现井的目标。本文说明了最近在尼日尔三角洲开展的HPHT勘探活动中,管理BHP被确定为关键成功因素。通过使用MPD将BHP维持在允许的限度内,成功和安全地解锁了探索性目标的碳氢化合物储备。本文还说明了在钻井(PWD)技术的同时使用高分辨率压力,如何提高MPD应用。

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