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    • 4. 发明授权
    • System, method and apparatus for enhancing wellbore treatment fluid flexibility
    • 用于增强井眼处理液灵活性的系统,方法和装置
    • US08397816B2
    • 2013-03-19
    • US13398120
    • 2012-02-16
    • Carlos AbadHemant K. LadvaLijun LinYiyan Chen
    • Carlos AbadHemant K. LadvaLijun LinYiyan Chen
    • E21B43/22
    • E21B43/24C09K8/03E21B21/06Y10S507/904Y10T137/85978
    • A method includes performing a chemical process to create a chemical product and an amount of heat, and transferring the heat to a first fluid. The method further includes hydrating a polymer in the first fluid, and adding the chemical product from the chemical process to the first fluid to create a treatment fluid. The method further includes diluting the treatment fluid with respect to at least one constituent of the treatment fluid. The method includes treating a formation of interest in a wellbore with the treatment fluid. The method includes changing a formulation of the treatment fluid during the treating. The method also includes extending the treating beyond a design amount, or ending the treatment before the design amount and preserving some reagents of the chemical process.
    • 一种方法包括执行化学过程以产生化学产品和一定量的热量,并将热量传递给第一流体。 该方法还包括将第一流体中的聚合物水合,并将化学产物从化学过程加入到第一流体中以产生处理流体。 该方法还包括相对于处理流体的至少一种成分稀释处理流体。 该方法包括用处理流体处理在井眼中的感兴趣的形成。 该方法包括在处理期间改变处理液的配方。 该方法还包括将处理延伸超过设计量,或在设计量之前结束处理并保留化学过程的一些试剂。
    • 5. 发明授权
    • System, method and apparatus for enhancing wellbore treatment fluid flexibility
    • 用于增强井眼处理液灵活性的系统,方法和装置
    • US08322410B2
    • 2012-12-04
    • US13398094
    • 2012-02-16
    • Carlos AbadHemant K. LadvaLijun LinYiyan Chen
    • Carlos AbadHemant K. LadvaLijun LinYiyan Chen
    • E21B43/12
    • E21B43/24C09K8/03E21B21/06Y10S507/904Y10T137/85978
    • An apparatus including at least four different modules, the first module being a treatment conditions module structured to interpret a specified pumping rate and a specified salt concentration. The second is a hydration requirements module structured to determine at least one of a hydration vessel fluid volume and a specified temperature in response to the specified pumping rate. The third is a dynamic brine generation module structured to control a flow rate of a first fluid, at least one of a clay stabilizer precursor, an acid precursor and a base precursor; and a polymer material into a hydration vessel in response to the specified salt concentration and the at least one of the hydration vessel fluid volume and the specified temperature. The fourth is a treatment fluid flow module structured to control a flow rate of a treatment fluid from the hydration vessel in response to the specified pumping rate.
    • 一种包括至少四个不同模块的装置,所述第一模块是结构化以解释指定的泵送速率和指定的盐浓度的处理条件模块。 第二个是水合要求模块,其被构造成响应于指定的泵送速率来确定水合容器流体体积和指定温度中的至少一个。 第三是动态盐水产生模块,其被构造成控制第一流体,粘土稳定剂前体,酸前体和碱前体中的至少一种的流速; 以及响应于指定的盐浓度和水合容器流体体积和指定温度中的至少一个,将聚合物材料转化成水合容器。 第四是处理流体流动模块,其被构造成响应于指定的泵送速率来控制来自水化容器的处理流体的流速。
    • 6. 发明授权
    • System, method and apparatus for enhancing wellbore treatment fluid flexibility
    • 用于增强井眼处理液灵活性的系统,方法和装置
    • US08141640B2
    • 2012-03-27
    • US12511182
    • 2009-07-29
    • Carlos AbadHemant K. LadvaLijun LinYiyan Chen
    • Carlos AbadHemant K. LadvaLijun LinYiyan Chen
    • E21B43/22
    • E21B43/24C09K8/03E21B21/06Y10S507/904Y10T137/85978
    • A method includes performing a chemical process to create a chemical product and an amount of heat, and transferring the heat to a first fluid. The method further includes hydrating a polymer in the first fluid, and adding the chemical product from the chemical process to the first fluid to create a treatment fluid. The method further includes diluting the treatment fluid with respect to at least one constituent of the treatment fluid. The method includes treating a formation of interest in a wellbore with the treatment fluid. The method includes changing a formulation of the treatment fluid during the treating. The method also includes extending the treating beyond a design amount, or ending the treatment before the design amount and preserving some reagents of the chemical process.
    • 一种方法包括执行化学过程以产生化学产品和一定量的热量,并将热量传递给第一流体。 该方法还包括将第一流体中的聚合物水合,并将化学产物从化学过程加入到第一流体中以产生处理流体。 该方法还包括相对于处理流体的至少一种成分稀释处理流体。 该方法包括用处理流体处理在井眼中的感兴趣的形成。 该方法包括在处理期间改变处理液的配方。 该方法还包括将处理延伸超过设计量,或在设计量之前结束处理并保留化学过程的一些试剂。
    • 7. 发明申请
    • Methods of Limiting Leak Off and Damage In Hydraulic Fractures
    • 限制泄漏和水力破裂损伤的方法
    • US20080289828A1
    • 2008-11-27
    • US12139226
    • 2008-06-13
    • Richard D. HutchinsHemant K. LadvaDon WilliamsonSylvie Daniel
    • Richard D. HutchinsHemant K. LadvaDon WilliamsonSylvie Daniel
    • E21B43/267
    • C09K8/68C09K8/685C09K8/88C09K2208/26C09K2208/30
    • Methods for treating a formation penetrated by a wellbore which improves fluid loss control during treatment. In some aspects, the treatments include preparing an aqueous fluid including one or more water inert degradable polymers and an optional viscosifier, injecting the aqueous fluid into the wellbore at a pressure equal to or greater than the formation's fracture initiation pressure, and thereafter injecting into the wellbore a proppant laden fluid at a pressure equal to or greater than the formation's fracture initiation pressure. The water inert degradable polymer may be a polymer such as an emulsion polymer or a latex polymer. Some methods of the invention use a fluid which may have a normalized leak off coefficient (Cw/sqrt(K)) equal to or less than about 0.0022, 0.0014, or 0.0010. A conventional fluid loss additive may or may not be used in conjunction with the treatment fluid and/or the proppant laden fluid. The water inert degradable polymer may or may not substantially enter formation pores. In another aspect, methods for reducing matrix damage to a formation during a treatment operation include preparing an aqueous treatment fluid formed of at least one water inert degradable polymer, and injecting the fluid at a pressure equal or greater than the formation's fracture initiation pressure.
    • 用于处理由井眼穿透的地层的方法,其改善处理期间的流体损失控制。 在一些方面,处理包括制备包含一种或多种水惰性可降解聚合物和任选的增粘剂的含水流体,其在等于或大于地层断裂开始压力的压力下将水性流体注入井眼,然后注入 在等于或大于地层断裂开始压力的压力下钻井支撑剂载液。 水惰性可降解聚合物可以是聚合物,例如乳液聚合物或胶乳聚合物。 本发明的一些方法使用可具有等于或小于约0.0022,0.0014或0.0010的归一化泄漏系数(Cw / sqrt(K))的流体。 常规的流体损失添加剂可以或可以不与处理流体和/或负载载体一起使用。 水惰性可降解聚合物可能基本上不会进入地层孔隙。 在另一方面,用于在处理操作期间减少对地层的基质损伤的方法包括制备由至少一种水惰性可降解聚合物形成的水性处理流体,并且在等于或大于地层断裂开始压力的压力下注入流体。
    • 9. 发明授权
    • Methods of limiting leak off and damage in hydraulic fractures
    • 限制水力裂缝泄漏和破坏的方法
    • US07779915B2
    • 2010-08-24
    • US12139226
    • 2008-06-13
    • Richard D. HutchinsHemant K. LadvaDon WilliamsonSylvie Daniel
    • Richard D. HutchinsHemant K. LadvaDon WilliamsonSylvie Daniel
    • E21B43/267
    • C09K8/68C09K8/685C09K8/88C09K2208/26C09K2208/30
    • Methods for treating a formation penetrated by a wellbore which improves fluid loss control during treatment. In some aspects, the treatments include preparing an aqueous fluid including one or more water inert degradable polymers and an optional viscosifier, injecting the aqueous fluid into the wellbore at a pressure equal to or greater than the formation's fracture initiation pressure, and thereafter injecting into the wellbore a proppant laden fluid at a pressure equal to or greater than the formation's fracture initiation pressure. The water inert degradable polymer may be a polymer such as an emulsion polymer or a latex polymer. Some methods of the invention use a fluid which may have a normalized leak off coefficient (Cw/sqrt(K)) equal to or less than about 0.0022, 0.0014, or 0.0010. A conventional fluid loss additive may or may not be used in conjunction with the treatment fluid and/or the proppant laden fluid. The water inert degradable polymer may or may not substantially enter formation pores. In another aspect, methods for reducing matrix damage to a formation during a treatment operation include preparing an aqueous treatment fluid formed of at least one water inert degradable polymer, and injecting the fluid at a pressure equal or greater than the formation's fracture initiation pressure.
    • 用于处理由井眼穿透的地层的方法,其改善处理期间的流体损失控制。 在一些方面,处理包括制备包含一种或多种水惰性可降解聚合物和任选的增粘剂的含水流体,其在等于或大于地层断裂开始压力的压力下将水性流体注入井眼,然后注入 在等于或大于地层断裂开始压力的压力下钻井支撑剂载液。 水惰性可降解聚合物可以是聚合物,例如乳液聚合物或胶乳聚合物。 本发明的一些方法使用可具有等于或小于约0.0022,0.0014或0.0010的归一化泄漏系数(Cw / sqrt(K))的流体。 常规的流体损失添加剂可以或可以不与处理流体和/或负载载体一起使用。 水惰性可降解聚合物可能基本上不会进入地层孔隙。 在另一方面,用于在处理操作期间减少对地层的基质损伤的方法包括制备由至少一种水惰性可降解聚合物形成的水性处理流体,并且在等于或大于地层断裂开始压力的压力下注入流体。