由于多管柱坍塌,拦截井使用树脂和微水泥进行特殊弃井作业

G. Campos, T. Piedade, A. Ramos, J. Anjos, A. Azevedo, João Paulo Sanseverino Abdu, F. Terra, Leonardo Pacheco da Silva
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引用次数: 1

摘要

在PW1井的生产阶段,一次无意的作业使环空A的降压低于设计极限,导致套管从地面套管到油管的逐渐坍塌。因此,常规弃井是不可能的。这种复杂的弃井情况需要钻机钻一口干预井(IW1)并设置安全屏障。IW1井成功钻井,通过1.10米长的槽窗在3056米(TD)处拦截了生产井PW1。整个作业过程通过PW1的PDG进行监控,可以确定拦截发生的确切时刻,并安全地置换固井液,同时避免暴露地层破裂的风险。数值模拟和注入压力的实时监测表明,在计划和执行阶段之间具有良好的一致性,操作是成功的。由于PW1油藏、生产油管及其附件(如开槽尾管、ESP、NRV和DHSV)的特性限制,有必要评估在不达到IW1套管鞋处地层破裂极限的情况下,可以通过这些限制取代的堵漏材料。选择超细水泥、纯树脂或两者的组合,是因为它们能够通过限制条件,抵抗井中流体的污染,同时还能提高抗压强度,实现层间隔离。通过模拟PW1井的限制条件,将优化后的封堵配方通过人工多孔介质进行评估。经过87天的作业,PW1井成功弃井。在环空A和油管内坐封一个79米长的水泥塞。根据国家石油、天然气和生物燃料局(ANP)规定的监管标准,建立了安全屏障,并进行了压力测试。
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Special P&A with Resin and Microcement Pumped from Interception Well Due to Multi-String Collapse
During the production phase of the PW1 well, an unintentional operation depressurized the annulus A below its design limit, resulting in a progressive casing collapse from the surface casing to the tubing. Therefore, it was not possible to abandon the well conventionally. This complex abandonment scenario demanded for a rig to drill an intervention well (IW1) and set up the safety barriers. The IW1 well was successfully drilled, intercepting the production well (PW1) at 3,056-m (TD) through a 1.10-m long slotted window. The whole operation was monitored via PDG from the PW1, making possible to identify the exact moment that the interception occurred and safely displacing the cementing fluids, while avoiding the risk of fracturing exposed formations. Numerical simulations and real time monitoring of the injection pressure demonstrated the success of the operation with excellent adherence between the plan and the execution phases. Due to the restrictions imposed by the characteristics of the PW1 reservoir, production tubing and its accessories, such as, slotted liner, ESP, NRV and DHSV, it was necessary to evaluate plugging materials that could be displaced through those restrictions without reaching the fracture limit of formation at the IW1 casing shoe. Ultrafine cement, pure resin and combinations of both were selected for their ability to pass through restrictions and resist to contamination by fluids present in the well, while also developing compressive strength to provide zonal isolation. Optimized plugging formulations were evaluated by passing them through artificial porous media, which simulated the PW1 well restrictions. After 87 operational days, the PW1 well was successfully abandoned. A 79-m long cement plug was set in the annulus A and inside the tubing. The safety barrier was established and verified with pressure tests according to the regulatory criteria imposed by the National Agency of Petroleum, Natural Gas and Biofuels (ANP).
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