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    • 7. 发明申请
    • Self-Viscosifying and Self-Breaking Gels
    • 自我敏感和自我破裂的凝胶
    • US20100093891A1
    • 2010-04-15
    • US12578209
    • 2009-10-13
    • Leiming LiSyed AliRichard D. HutchinsLijun LinCurtis L. BoneyCarlos AbadJavier Sanchez ReyesPaul R. Howard
    • Leiming LiSyed AliRichard D. HutchinsLijun LinCurtis L. BoneyCarlos AbadJavier Sanchez ReyesPaul R. Howard
    • C09K8/44C08F20/00
    • C09K8/5083C09K8/512C09K8/685C09K8/882C09K8/887
    • The invention provides a method. The method injects into a wellbore, a fluid comprising at least one of an acrylamide polymer and an acrylamide copolymer, and at least one of an oxidizing agent and a radical initiator; and allows viscosity of the fluid to increase for a first period of time; and subsequently, allows viscosity of the fluid to decrease for a second period of time. In a further aspect the invention provides a fluid for use in a well within a subterranean formation penetrated by a wellbore. The fluid is in a first embodiment, made of an acrylamide polymer and/or copolymer and an oxidizing agent or radical initiator, wherein concentration of the oxidizing agent or radical initiator is such that the fluid increases its viscosity for a period of time and after said period of time decreases its viscosity. The fluid is in a second embodiment, made of an acrylamide polymer and/or copolymer and an oxidizing agent or radical initiator, wherein the oxidizing agent or radical initiator is such that the fluid increases its viscosity for a period of time and after said period of time decreases its viscosity.
    • 本发明提供了一种方法。 该方法注入井眼,包含丙烯酰胺聚合物和丙烯酰胺共聚物中的至少一种以及氧化剂和自由基引发剂中的至少一种的流体; 并且允许流体的粘度在第一时间段内增加; 并且随后允许流体的粘度在第二时间段内降低。 在另一方面,本发明提供一种用于井眼穿透的地层内的井中的流体。 在第一实施方案中,流体由丙烯酰胺聚合物和/或共聚物和氧化剂或自由基引发剂制成,其中氧化剂或自由基引发剂的浓度使得流体在一段时间内增加其粘度,并且在所述 一段时间降低其粘度。 在第二实施方案中,流体由丙烯酰胺聚合物和/或共聚物和氧化剂或自由基引发剂制成,其中氧化剂或自由基引发剂使得流体在其一段时间内增加其粘度,并且在所述时间段 时间降低其粘度。
    • 10. 发明授权
    • Traced chemicals and method to verify and control formulation composition
    • 追溯化学品和方法来验证和控制配方组成
    • US08893784B2
    • 2014-11-25
    • US12826840
    • 2010-06-30
    • Carlos Abad
    • Carlos Abad
    • E21B47/00G05D11/13E21B43/26E21B47/10C09K8/03G01N21/64G01N30/88
    • G05D11/138C09K8/03E21B43/26E21B47/1015G01N2021/6439G01N2030/8854
    • Methods and apparatus to control the additives to a chemical composition for use in the oil field services industry. Specifically, a method and apparatus to determine fluid parameters for a fluid, including introducing an inert tracer in a component; forming a fluid comprising the component; observing the concentration of the tracer in the fluid; calculating the concentration of the component in the fluid; and introducing the fluid into a subterranean formation. An apparatus and method to control fluid parameters of interest for an oilfield formulation fluid such as chemical composition including introducing an inert tracer in a component; forming a fluid comprising the component; observing the concentration of the tracer in the fluid; calculating the concentration of the component in the fluid; adjusting a flow rate when forming the fluid in response to the calculating; and introducing the fluid into a subterranean formation.
    • 控制添加剂用于油田服务业的化学成分的方法和装置。 具体地说,一种确定流体的流体参数的方法和装置,包括在组件中引入惰性示踪剂; 形成包含该组分的流体; 观察流体中示踪剂的浓度; 计算流体中组分的浓度; 并将流体引入地下地层。 控制油田制剂流体感兴趣的流体参数的装置和方法,例如包括在组分中引入惰性示踪剂的化学组成; 形成包含该组分的流体; 观察流体中示踪剂的浓度; 计算流体中组分的浓度; 响应于计算,调节形成流体时的流量; 并将流体引入地下地层。