Novel Microemulsion Breaker System Remove Drill-in-Fluids Filter Cake and Remediate Near Wellbore Damage to Enhance Productivity of Horizontal Wells of Offshore Sabah, Malaysia

Nurul Amyra Jaffar, Nan Luan, Edo Arisandi
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Abstract

In a case study of four wells located in offshore Sabah Malaysia, a field application using microemulsion technology to develop a customized in-situ breaker solution enhanced production rate by removing oil-based mud (OBM) and synthetic based mud (SBM) filter cake and remediating near-wellbore damage. All wells were completed as open–hole horizontal wells. Key challenges of the field are the multiple sand layers interbedded with intra-reservoir shale intervals necessitating a complex well trajectory and an operational preference for drilling with SBM drill-in fluid (SBM DIF). Lower than expected production rates were associated a water-impermeable SBM DIF filter cake and solids residue resulting from a conventional breaker system being unable to fully remove emulsion damage and effectively disrupt the filtercake. A series of laboratory tests for return permeability using formation cores from the offset wells and ceramic discs were completed as part of a feasibility study prior to field trials of the new microemulsion breaker system - a customized formulation consisting of a proprietary surfactant blend, organic acid, corrosion inhibitor and brine designed to remove the damage caused by the SBM DIF and restore open-hole flow conditions. The new breaker system has ultra-low interfacial tension which, when pumped into the open-hole section and allowed to soak for a sufficient period of time, diffuses into the rock matrix and forms an in-situ microemulsion completely and uniformly cleaning the near wellbore environment of SBM DIF residue, dispersing solids and leaving all surfaces water-wet. Laboratory results described in this paper show that the customized microemulsion breaker has the capability to remove SBM DIF filter cake, remediate emulsion damage caused by SBM-DIF, and restores the rock matrix back to its original permeability and predrilled state. All four wells in this field application have exceeded their expected production rate. The customized microemulsion breaker is the major contributing factor.
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新型微乳化破胶系统去除钻井液滤饼,修复近井损害,提高马来西亚Sabah海上水平井产能
在马来西亚Sabah海上的四口井的案例研究中,利用微乳液技术开发了一种定制的原位破胶剂解决方案,通过去除油基泥浆(OBM)和合成基泥浆(SBM)滤饼并修复近井损害,提高了产量。所有井均以裸眼水平井完井。该油田面临的主要挑战是多砂层与储层内页岩层段相互作用,需要复杂的井眼轨迹,并且作业时更倾向于使用SBM入井液(SBM DIF)。低于预期的产量与不透水的SBM DIF滤饼和固体残留物有关,这是由于传统的破碎系统无法完全去除乳液损害并有效破坏滤饼造成的。在对新型微乳液破乳系统进行现场试验之前,已经完成了一系列的实验室测试,使用了从井中提取的地层岩心和陶瓷盘进行回渗测试,作为可行性研究的一部分。新型微乳液破乳系统是一种定制配方,由专有的表面活性剂混合物、有机酸、缓蚀剂和盐水组成,旨在消除SBM DIF造成的损害,恢复裸眼流动状况。新型破胶剂系统具有超低界面张力,当泵入裸眼段并浸泡足够时间后,它会扩散到岩石基质中,形成原位微乳液,完全均匀地清洁SBM DIF残留的近井环境,分散固体,使所有表面都保持湿润。实验结果表明,定制的微破乳剂能够去除SBM-DIF滤饼,修复SBM-DIF造成的乳液破坏,使岩石基质恢复到原始渗透率和钻前状态。该油田的4口井均超过了预期产量。定制的微破乳剂是主要因素。
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