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Clay nanoparticles modified drilling fluids for drilling of deep hydrocarbon wells

机译:粘土纳米颗粒改性钻井液,用于深部烃井钻井

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Projections of continued growth in hydrocarbon demand are driving the oil and gas industries to explore new or under-explored areas that are often challenging. Oman, being an oil reliant country, is also striving to go deep for exploration of non-conventional and deep lying oil reserves, as most of the existing fields are approaching maturity. Deep drilling poses a great challenge as the current performance of drilling fluids deteriorate due to high temperature and pressure (HPHT) conditions faced during extended reach drilling operations. Keeping in view the decisiveness of drilling fluids' impact on drilling efficiency, this work presents an approach to stabilize the drilling fluid rheology in HPHT conditions by making use of nanoparticles. Abundantly available in Oman, palygorskite (Pal) (natural hydrous clay mineral with fibrous rod-like microstructure) was purified, synthesized, characterized, functionalized, and tested for the first time in nano-form (10-20nm diameter) for its effectiveness to tailor the rheology of drilling fluids swiftly. The nanoparticles are able to retain the properties over a wide range of operating temperatures and pressure, thus ensuring efficient operation in versatile formations and operating conditions. After successive laboratory investigations, an absolute proportion of water, regular montmorillonite (Mt), and Pal nanoparticles provided consistent results at various temperatures and pressures, i.e., stable drilling fluid rheology at HPHT environment The best-recorded results are reported in this paper and the properties focused here are the plastic viscosity, yield point, gel strength, density, shear thinning, spurt lost, fluid lost, and Lubricity index.
机译:碳氢化合物需求持续增长的预测正在推动石油和天然气行业探索通常具有挑战性的新的或勘探不足的地区。阿曼是一个依赖石油的国家,随着大多数现有油田的接近成熟,阿曼也正在努力深化勘探非常规和深层石油储量。深度钻井带来了巨大的挑战,因为在大范围钻井作业过程中,高温和高压(HPHT)条件会导致钻井液的当前性能下降。考虑到钻井液对钻井效率的决定性影响,这项工作提出了一种利用纳米颗粒在HPHT条件下稳定钻井液流变性的方法。坡缕石(Pal)(具有纤维状棒状微结构的天然含水粘土矿物)在阿曼数量众多,经过纯化,合成,表征,功能化并首次以纳米形式(直径10-20nm)进行了测试,以达到快速调整钻井液的流变性。纳米颗粒能够在很宽的工作温度和压力范围内保持性能,从而确保在多种形式和工作条件下均能有效运行。经过连续的实验室研究,绝对比例的水,规则的蒙脱石(Mt)和Pal纳米颗粒在各种温度和压力下均能提供一致的结果,即在HPHT环境下稳定的钻井液流变性。此处关注的性能是塑性粘度,屈服点,凝胶强度,密度,剪切稀化,喷射损失,流体损失和润滑性指数。

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