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Vital Roles of Nano Silica in Synthetic Based Mud for High Temperature Drilling Operation

机译:纳米二氧化硅在高温钻井操​​作中纳米二氧化硅的作用

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At high temperature drilling, chemicals degradation occurs which reduce the effectiveness of the drilling fluid. There is a potential that by using nano sized particles which have thermal stability up to 2500°F to be used as a stabilizer to withstand the harsh condition. Therefore, this project aims to identify the performance of synthetic-based mud (SBM) with nano silica for high temperature drilling operation. A conventional SBM performance has been compared with additional percentages of nano silica. 20% and 40% of nano silica out of fluid loss weight has been added into the SBM and analyzed the rheological properties and other drilling fluid properties. The conventional SBM formulation has lost some amount of weighting material or solids in the mud and has been replaced by lighter and smaller size of nanoparticles. It has reduced the rheological properties of the mud but the gelation formed by nano silica material has given higher gel strength. Also, nano silica potentially plugs the porous media, resulted in lower filtration loss measurement and thinner mud cake ranged 20% to 50% respectively.
机译:在高温钻井中,发生化学品降解,从而降低了钻井液的有效性。通过使用具有高达2500°F的热稳定性的纳米尺寸颗粒,可以用作稳定剂以承受苛刻条件。因此,该项目旨在确定具有纳米二氧化硅的合成基泥浆(SBM)的性能,用于高温钻孔操作。将传统的SBM性能与纳米二氧化硅的另外的百分比进行了比较。已经添加了20%和40%的纳米二氧化硅,从而进入SBM中并分析了流变性能和其他钻井液性质。传统的SBM制剂在泥浆中损失了一定量的加重材料或固体,并被较轻且较小的纳米颗粒所取代。它减少了泥浆的流变性质,但是通过纳米二氧化硅材料形成的凝胶化具有更高的凝胶强度。此外,纳米二氧化硅潜在地堵塞多孔介质,导致较低的过滤损失测量和较薄的泥浆蛋糕分别为20%至50%。

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