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Naeoparticles: Promising Solution to Overcome Stern Drilling Problems

机译:naeoparticles:有希望的解决方案来克服严厉的钻井问题

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General solution to overcome stern and frequently occurring drilling problems lies in controlling the rheology of drilling fluids. Pipe sticking, lost circulation, erosion, formation damage, thermal instability, poor hole cleaning, high torque and drag are few problems that incurs enormous costs on overall drilling operations in form of expensive drilling fluids, breakdowns, fluid loss, high power requirement, and mainly limited functionality. The nanotechnological research leading to create tailored made nanoparticles is a promising step change research for smart fluids development. The nano particles based drilling mud enables the design and development of new drilling muds for efficient drilling operations at significantly low cost. Use of nano based drilling muds has long been in discussion and some researchers have tested in laboratory but no mathematical and analytical model reported. Based on initial studies and easy availability we selected Attapulgite and after milling, characterization, surface treatment, and adding into drilling muds showed useful results. We initiated developing a scheme, starting from synthesis and characterization of nanoparticles, measurement and optimization of properties by response surface technique, establishing correlation between rheological properties, ultimately leading to performance tests at well simulators. Preliminary results of Attapulgite crop up hopes of testing more nanomaterials for further improvement.
机译:克服船尾的一般解决方案和经常发生的钻井问题在于控制钻井液的流变学。管道粘贴,失去循环,腐蚀,形成损坏,热不稳定,孔清洁,高扭矩和阻力很少有问题,以昂贵的钻孔流体,故障,流体损失,高功率要求的形式导致整体钻井作业的巨大成本。主要是有限的功能。导致创造量身定制的纳米粒子的纳米技术研究是智能流体开发的有希望的步骤变化研究。基于纳米颗粒的钻井泥浆能够设计和开发新的钻井泥浆,以显着低成本。使用纳米钻井泥浆长期以来一直在讨论中,一些研究人员在实验室进行了测试,但没有报道数学和分析模型。基于初步研究和易于可用性,我们选择了爬山石和研磨后,表征,表面处理,并进入钻井泥浆显示出有用的结果。我们开始开发一种方案,从纳米颗粒的合成和表征开始,通过响应面技术的性能测量和优化,建立流变性质之间的相关性,最终导致井模拟器的性能测试。 Attapulgite作物的初步结果希望测试更多纳米材料以进一步改进。

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