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Sand Production Caused by Water Hammer Events: Implications for Shut-In Protocols and Design of Water Injection Wells

机译:水锤事件引起的沙子生产:对流入协议的影响和注水井的设计

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A pressure pulse, known as a water hammer, can occur immediately after water injection wells are shut-in for emergency or operational reasons. Large pressure pulses may cause wellbore integrity problems such as sand-face failure and sand production. We propose a new workflow to simulate water hammer events, the resulting wellbore failure and sand production in water injectors. Based on the results of this workflow, recommendations are made for wellbore design and shut-in protocols for water injection wells. The results presented in this paper, for the first time, allow us to quantitatively understand the role of well shut-downs and subsequent water hammer pressures on sand production. The failure of unconsolidated sands near the wellbore is affected by water hammer events, their amplitude, period, and attenuation. If a water hammer event occurs during shut-in of water injectors, the extent of the sand failure becomes larger and the failure zone continues to propagate along the stress concentration direction. The simulation results clearly show which parameters are important and suggest changes to well operations such as proper shut-in protocols that help to minimize the possibility of sand production. The results also suggest ways in which injectors can be designed to minimize the impact of water hammer events.
机译:一种压力脉冲,称为水锤,可以在注水井被关闭以进行紧急或操作原因后立即发生。大压脉冲可能导致井眼完整性问题,例如砂面部故障和砂生产。我们提出了一种新的工作流程来模拟水锤事件,由此产生的井筒失效和水喷射器中的砂生产。基于本工作流程的结果,建议采用井喷设计和流水井的闭合协议。本文提出的结果是首次允许我们定量地了解良好的关闭和随后的水锤压力在砂生产中的作用。井筒附近的未扑叠砂的失效受水锤事件,振幅,时期和衰减的影响。如果在进入水喷射器期间发生水锤事件,则砂衰竭的程度变大,并且失效区继续沿应力集中方向传播。仿真结果清楚地表明,哪些参数很重要,并建议改变良好的操作,如适当的关闭协议,有助于最大限度地减少沙子生产的可能性。结果还建议设计注射器可以最小化水锤事件的影响。

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