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Improving Drilling Fluid Properties at High Pressure Conditions Using Selected Nanomaterials

机译:使用选定的纳米材料改善高压条件下的钻井液性能

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Drilling fluids with conventional lubricants(including solid and liquid lubricants)will produce lubricant film between drill string and wellbore/casing,but this film will not be strong enough to protect the bit bearing surfaces subjected to high load conditions during the drilling operations,resulting in shortening the life of drill bit.In this research,the possibility of using nanomaterials as extreme pressure lubricants was investigated by adding different concentrations(0.02,0.05 and 0.1)wt.%of TiChnanoparticles(NPs)and Cu NP into water- based mud.The lubricating film strength of water based mud samples under extreme pressure conditions were measured using Extreme Pressure(EP)and Lubricity Tester.With the purpose of getting the best performance from extreme pressure lubricants,the effect of nanomaterials on rheological(including plastic viscosity,yield point,apparent viscosity,and gel strength)and filtration(including filtrate loss volume and mud cake thickness)properties were measured.TiC>2 NPs and Cu NP showed a good enhancement in lubricating film strength under extreme pressure conditions.The maximum value of lubricating film strength increasing percentage(69.6%)was obtained using TiC>2 NPs with concentration of 0.1wt.%.
机译:具有常规润滑剂(包括固体和液体润滑剂)的钻井液将在钻柱和井筒/壳体之间产生润滑剂薄膜,但是该膜不足以保护在钻井操作期间经受高负载条件的钻头承载表面,导致缩短钻头的寿命。本研究中,通过将不同浓度(0.02,05和0.1)加入到水性泥浆中,通过添加不同浓度(0.02.05和0.1)加入水性泥浆中的不同浓度(0.02.05和0.1),研究了使用纳米材料作为极压润滑剂的可能性。利用极压(EP)和润滑试验仪测量水基泥浆样品的润滑膜强度。目的是从极端压力润滑剂获得最佳性能,纳米材料对流变(包括塑料粘度,产量)的影响点,表观粘度和凝胶强度)和过滤(包括滤液损失体积和泥饼厚度)性质是测量RED.TIC> 2 NPS和Cu NP在极压条件下润滑膜强度的良好增强。使用TIC> 2 NP,浓度为0.1wt,获得润滑膜强度增加的最大值(69.6%)。%。

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