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首页> 外文期刊>Egyptian journal of petroleum >Electrical resistivity and rheological properties of sensing bentonite drilling muds modified with lightweight polymer
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Electrical resistivity and rheological properties of sensing bentonite drilling muds modified with lightweight polymer

机译:轻质聚合物改性膨润土钻探泥浆的电阻率和流变特性

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摘要

In this study, the electrical resistivity and rheological properties of a water-based bentonite clay drilling mud modified with the lightweight polymer (guar gum) under various temperature were investigated. Based on the experimental and analytical study, the electrical resistivity was identified as the sensing property of the bentonite drilling mud so that the changes in the properties can be monitored in real-time during the construction. The bentonite contents in the drilling muds were varied up to 8% by the weight of water and temperature was varied from 25°C to 85°C. The guar gum content (GG%) was varied between 0% and 1% by the weight of the drilling mud to modify the rheological properties and enhance the sensing electrical resistivity of the drilling mud. The guar gum and bentonite clay were characterized using thermal gravimetric analysis (TGA). The total weight loss at 800°C for the bentonite decreased from 12.96% to 0.7%, about 95% reduction, when the bentonite was mixed with 1% of guar gum. The results also showed that 1% guar gum decreased the electrical resistivity of the drilling mud from 50% to 90% based on the bentonite content and the temperature of the drilling mud. The guar gum modification increased the yield point (YP) and plastic viscosity (PV) by 58% to 230% and 44% to 77% respectively based on the bentonite content and temperature of the drilling mud. The rheological properties of the drilling muds have been correlated to the electrical resistivity of the drilling mud using nonlinear power and hyperbolic relationships. The model predictions agreed well with the experimental results. Hence the performance of the bentonite drilling muds with and without guar gum can be characterized based on the electrical resistivity which can be monitored real-time in the field.
机译:在这项研究中,研究了在各种温度下用轻质聚合物(瓜尔胶)改性的水基膨润土粘土钻井液的电阻率和流变特性。在实验和分析研究的基础上,电阻率被确定为膨润土钻探泥浆的感测特性,因此在施工过程中可以实时监控特性的变化。钻探泥浆中的膨润土含量以水的重量计变化为8%,温度在25°C至85°C之间变化。瓜耳胶的含量(GG%)在0%和1%之间按钻井泥浆的重量变化,以改变流变性质并增强钻井泥浆的感测电阻率。使用热重分析(TGA)对瓜耳胶和膨润土进行了表征。当膨润土与1%的瓜尔胶混合时,膨润土在800℃的总重量损失从12.96%降至0.7%,减少了约95%。结果还表明,基于膨润土含量和钻探泥浆的温度,1%的瓜尔胶将钻探泥浆的电阻率从50%降低到90%。基于膨润土含量和钻探泥浆的温度,瓜尔胶的改性分别使屈服点(YP)和塑性粘度(PV)分别提高了58%至230%和44%至77%。使用非线性功率和双曲线关系,已将钻探泥浆的流变特性与钻探泥浆的电阻率相关联。模型预测与实验结果吻合良好。因此,可以基于电阻率来表征具有或不具有瓜尔胶的膨润土钻探泥浆的性能,该电阻率可以在现场进行实时监控。

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