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    • 1. 发明授权
    • Surfactant compositions and uses therefor
    • 表面活性剂组合物及其用途
    • US06302209B1
    • 2001-10-16
    • US09151169
    • 1998-09-10
    • Joseph E. Thompson, Sr.Harold D. BrannonGeorge Tso-Chih WooWilliam R. WoodJeffrey C. DawsonMarshall G. Ault
    • Joseph E. Thompson, Sr.Harold D. BrannonGeorge Tso-Chih WooWilliam R. WoodJeffrey C. DawsonMarshall G. Ault
    • E21B4300
    • B01F17/0028B01F17/0042B01F17/0057C09K8/035C09K8/602
    • Solid surfactant suspension compositions are formed by combining solid surfactants, such as alpha-olefin sulfonates, with an organic base fluid, such as diesel. Solid surfactant suspensions may be combined with an aqueous carrier fluid to form surfactant-containing fluids suitable for, among other things, forming foams or for water wetting surfaces. Solid surfactant suspensions may also be combined with additive materials, such as polymer particles, to form a dispersion or emulsion. Polymer-containing solid surfactant suspensions may also be combined with aqueous carrier fluids to form, for example, viscosified, gelled, or foamed fluids. Concentration of solid surfactant materials contained in a solid surfactant suspension may be varied to affect the function the solid surfactant suspension. For example, the solid surfactant material may function as a polymer surface wetting agent, an emulsifier, a dispersant, a viscosifier, and/or a foamer in well completion and remedial and/or workover fluids.
    • 固体表面活性剂悬浮液组合物通过将固体表面活性剂如α-烯烃磺酸盐与有机基础流体如柴油混合而形成。 固体表面活性剂悬浮液可以与含水载体流体组合以形成适于尤其形成泡沫或用于水润湿表面的含表面活性剂的流体。 固体表面活性剂悬浮液也可以与添加剂材料如聚合物颗粒结合以形成分散体或乳液。 含聚合物的固体表面活性剂悬浮液也可以与含水载体流体混合以形成例如粘稠的,胶凝的或发泡的流体。 包含在固体表面活性剂悬浮液中的固体表面活性剂材料的浓度可以变化以影响固体表面活性剂悬浮液的功能。 例如,固体表面活性剂材料可用作完井和补救和/或修井液中的聚合物表面润湿剂,乳化剂,分散剂,增粘剂和/或起泡剂。
    • 2. 发明授权
    • Stable breaker-crosslinker-polymer complex and method of use in
completion and stimulation
    • 稳定的断路器 - 交联剂 - 聚合物复合物和完成和刺激使用的方法
    • US5806597A
    • 1998-09-15
    • US640462
    • 1996-05-01
    • Robert Tjon-Joe-PinJoseph E. Thompson, Sr.Marshall G. Ault
    • Robert Tjon-Joe-PinJoseph E. Thompson, Sr.Marshall G. Ault
    • C09K8/68E21B43/26
    • C09K8/685Y10S507/921
    • A preferred novel breaker-crosslinker-polymer complex and a method for using the complex in a fracturing fluid to fracture a subterranean formation that surrounds a well bore by pumping the fluid to a desired location within the well bore under sufficient pressure to fracture the surrounding subterranean formation. The complex may be maintained in a substantially non-reactive state by maintaining specific conditions of pH and temperature, until a time at which the fluid is in place in the well bore and the desired fracture is completed. Once the fracture is completed, the specific conditions at which the complex is inactive are no longer maintained. When the conditions change sufficiently, the complex becomes active and the breaker begins to catalyze polymer degradation causing the fracturing fluid to become sufficiently fluid to be pumped from the subterranean formation to the well surface.
    • 一种优选的新型断路器 - 交联剂 - 聚合物复合物以及在压裂流体中使用该复合物来破坏围绕井眼的地下地层的方法,该方法是在足够的压力下将流体泵送到井眼内的所需位置以破坏周围的地下 形成。 通过保持pH和温度的特定条件,直到流体在井眼中就位并完成所需的裂缝,复合物可以维持在基本上非反应状态。 一旦断裂完成,复合体不活动的具体条件不再保持。 当条件发生充分变化时,复合物变得活跃,破坏剂开始催化聚合物降解,导致压裂液变得足够流体,从地下地层泵送到井表面。
    • 3. 发明授权
    • Stable breaker-crosslinker-polymer complex and method of use in completion and stimulation
    • 稳定的断路器 - 交联剂 - 聚合物复合物和完成和刺激使用的方法
    • US06186235B1
    • 2001-02-13
    • US09152581
    • 1998-09-14
    • Robert Tjon-Joe-PinJoseph E. Thompson, Sr.Marshall G. Ault
    • Robert Tjon-Joe-PinJoseph E. Thompson, Sr.Marshall G. Ault
    • E21B4326
    • C09K8/685Y10S507/921
    • A preferred novel breaker-crosslinker-polymer complex and a method for using the complex in a fracturing fluid to fracture a subterranean formation that surrounds a well bore by pumping the fluid to a desired location within the well bore under sufficient pressure to fracture the surrounding subterranean formation. The complex may be maintained in a substantially non-reactive state by maintaining specific conditions of pH and temperature, until a time at which the fluid is in place in the well bore and the desired fracture is completed. Once the fracture is completed, the specific conditions at which the complex is inactive are no longer maintained. When the conditions change sufficiently, the complex becomes active and the breaker begins to catalyze polymer degradation causing the fracturing fluid to become sufficiently fluid to be pumped from the subterranean formation to the well surface.
    • 一种优选的新型断路器 - 交联剂 - 聚合物复合物以及在压裂流体中使用该复合物来破坏围绕井眼的地下地层的方法,该方法是在足够的压力下将流体泵送到井眼内的所需位置以破坏周围的地下 形成。 通过保持pH和温度的特定条件,直到流体在井眼中就位并完成所需的裂缝,复合物可以维持在基本上非反应状态。 一旦断裂完成,复合体不活动的具体条件不再保持。 当条件发生充分变化时,复合物变得活跃,破坏剂开始催化聚合物降解,导致压裂液变得足够流体,从地下地层泵送到井表面。