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Successful Replacement of Conventional Organophilic Clay with Novel Polymer as Viscosifier and Filtration Control Agent in Mineral-Oil-Based Drilling Fluids

机译:用新型聚合物作为吸粘剂和矿物油基钻井液中的过滤控制剂的成功替代常规的有机粘土

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Oil-based drilling fluids(OBDF)can enhance wellbore stability in water-sensitive reservoirs and protect metal surfaces of drilling equipment to minimize corrosion due to H2S and CO2.Components of OBDF include oil as the continuous phase and water as the dispersed phase,in conjunction with viscosifiers,emulsifiers,filtration control agents,and weighting materials.Two of the most common types of continuous phases in oil-based drilling fluids are diesel and mineral oil.Mineral oil is less toxic than diesel,and oil retention properties of OBDF with mineral oil are less than OBDF with diesel.Organophilic clays are clay minerals that have been treated with oil-wetting agents,which will make the clay oil-dispersible.Organophilic clays mixed in OBDF do not exhibit same viscosity or suspension characteristics as in waterbased drilling fluids,because electrical interaction between particles is minimal,making it difficult to build viscosity and gel strength in high pressure and high temperature(HP/HT)wellbore conditions.A new mineral-oil-based drilling fluids(MOBDF)proposed was obtained by the successful replacement of conventional organophilic clay with a novel polymer.Conventional organophilic clay and novel polymer were aged at 150°F for 16 hours.To evaluate the alteration of the wettability caused by the MBDOF and its components,surface tension and contact-angle measurements were made in the laboratory.With similar weight proportions,the apparent and kinetic viscosities of organophilic clay and cross-linked polymer were also compared.Rheological properties and filtration characteristics tests were conducted using a rotational viscometer and a HP/HT filter press,under three simulated wellbore conditions(140°F/ 300 psi,190°F/300 psi,and 250°F/500 psi).Filter cake is formed due to positive pressure between OBDF and pore throats pressure.As a barrier between wellbore and formation,it can minimize solids and fluids invasion.Core flooding test was conducted to evaluate permeability of the filter cakes and CT scan was used to measure the density distribution of the filter cakes.Emulsion droplets formed by mixing MOBDF filtrate fluids with formation water were observed to analyze emulsion plugging damage.Experimental results show that the novel polymer has a promising future of practical application,by providing thermal stability and stable rheological properties for MOBDF in HP/HT conditions.It also brings lower filtration volume,higher quality filter cake and slightly greater emulsion plugging damage to formations than organophilic clay-based drilling fluids.
机译:油基钻井液(OBDF)可以增强水敏感储层中的井眼稳定性,保护钻井设备的金属表面,以最小化由于H2S和CO2的腐蚀而最小化欧多的PONENT包括作为连续相和水作为分散阶段的腐蚀,在与粘液剂,乳化剂,过滤控制剂和加权材料相结合。油基钻井液中最常见类型的连续相是柴油和矿物油的两种连续阶段。内部油比柴油更少毒性,以及OBDF的油保留特性矿物油少于柴油。柴油粘土是用油润湿剂处理的粘土矿物,其将使粘土油分散性。在OBDF中混合的粘土粘土不会表现出与水中钻井相同的粘度或悬浮特性。流体,因为颗粒之间的电相互作用最小,使得难以在高压和高温下构建粘度和凝胶强度(H. p / ht)井眼条件。提出的新的矿物油基钻井液(MOBDF)通过成功替代常规的有机粘土与新的聚合物。转化的有机粘土和新的聚合物在150°F下老化16小时。为了评估MBDOF及其组分引起的润湿性的改变,在实验室中制定了表面张力和接触角测量。与相似的重量比例,也比较了有机粘土和交联聚合物的表观和动力学粘度。使用旋转粘度计和HP / HT滤波器,在三个模拟井眼条件下进行,使用旋转粘度计和过滤特性试验进行,进行。由于OBDF和孔喉部压力之间的正压,形成滤饼。井眼和形成之间的屏障,它可以最小化固体,流体侵袭。进行泛滥试验评估渗透过滤器蛋糕和CT扫描的IY用于测量过滤器蛋糕的密度分布。观察通过将MOBDF滤液流体混合形成水的MOBDF滤液流体来分析乳液堵塞损伤。实验结果表明,新颖的聚合物有一个有前途的未来实际应用,通过在HP / HT条件下提供MOBDF的热稳定性和稳定流变性质。它也使较低的过滤量,更高质量的滤饼和稍大的乳液堵塞对地层的乳液堵塞而不是细胞粘土基钻井液。

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