An Environmentally Friendly Wbm System Can Prevent Hard Brittle Shale Instability

C. Peng, W. Feng, Xiaohu Luo, Shujiao Li, C. Riji
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Abstract

In the Weizhou Southwest oilfields, drilling delays and suspension of wells prior to reaching the targets due to wellbore instability had occurred frequently. The hard brittle shale played a problematic role. Conventional water-based drilling fluids didn’t conquer the problematic formation due to intrinsically performance deficiencies. While Oil based drilling fluids are routinely preferred in the more technically demanding applications, they are cause for increasing concern due to offshore environmental restrictions and expensive disposal costs. An environmentally acceptable water-based drilling fluid was developed to challenge the problematic formation based on the combination of methylglucoside-silicate concept. It stabilized the reactive shale by the same mechanism as did oil-based drilling fluid in preventing shale hydration, pore pressure increase and weakening of shale by effectively developing sufficient osmotic force to offset hydraulic and chemical forces acting to cause filtration flux into the hard brittle shale. A field trial was initiated on the CNOOC 931 platform in Weizhou oilfield. The data from the pilot well showed that the novel drilling fluid exhibited excellent inhibition and lubricity which approached or even exceeded oil-based fluids.
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环境友好型Wbm系统可防止硬脆页岩不稳定
在涠洲西南油田,由于井筒不稳定导致钻井延期、未达目标井停工的情况屡屡发生。硬脆的页岩起了一个问题。由于固有的性能缺陷,常规水基钻井液无法攻克有问题的地层。虽然油基钻井液在技术要求较高的应用中通常是首选,但由于海上环境的限制和昂贵的处理成本,油基钻井液引起了越来越多的关注。基于甲基葡萄糖苷-硅酸盐组合的概念,开发了一种环境可接受的水基钻井液来挑战有问题的地层。它稳定活性页岩的机制与油基钻井液相同,通过有效地产生足够的渗透力来抵消导致过滤通量进入硬脆页岩的水力和化学力,从而防止页岩水化、孔隙压力升高和页岩弱化。在涠洲油田中海油931平台上进行了现场试验。试验井的数据表明,新型钻井液具有优异的缓蚀性和润滑性,接近甚至超过了油基钻井液。
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