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NANOPARTICLES - ITS SIGNIFICANCE IN DRILLING FLUID DEVELOPMENT FOR ENHANCE OIL RECOVERY

机译:纳米粒子 - 其在钻井液发育方面的重要性

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During drilling often huge financial losses could incur due to severe drilling problems like lost circulation, pipe sticking, formation damage, high torque and drag. The major cause of these problems is the inefficiency of the drilling fluid in performing certain tasks that are dependent on its rheology. The control over rheology becomes more intricate due to the need of unexpected changing drilling conditions like temperature, pressure and types of formation. It is thus crucial to have drilling fluids knowledge enough to be engineered to suit particular conditions and be stable for wide range of operating conditions. Nanoparticles of two materials bentonite and ATR were tested in drilling fluids in small additive concentration and showed remarkable improvement in rheology. Rapid changes in viscosity and density were recorded that indicates the effectiveness of nanoparticles in drilling fluids for effective and versatile functionality. It is also understood that the stable nature of nanoparticles will inherit greater stability to the drilling fluids. Sufficient experimental results were generated by using different sizes and compositions of nanoparticles.
机译:在钻井期间,由于丢失的循环,管粘,地层损坏,高扭矩和拖动,因此由于严重的钻孔问题,巨大的金融损失可能会产生巨大的财务损失。这些问题的主要原因是钻井流体在执行依赖于其流变学的某些任务的效率。由于需要意外的更换钻井条件,因此,对流变学的控制变得更复杂,如温度,压力和形成的类型。因此,对钻井流体知识足以被设计成适合特定条件,并且在广泛的操作条件下稳定,这是至关重要的。两种材料膨润土和ATR的纳米颗粒以小添加剂浓度的钻井液测试,并且表现出显着的流变学改善。记录粘度和密度的快速变化,表明纳米颗粒在钻井液中的有效性,用于有效和多功能的功能。还应理解,纳米颗粒的稳定性质将引起钻井液的更大稳定性。通过使用纳米颗粒的不同尺寸和组合物产生充分的实验结果。

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