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    • 1. 发明申请
    • Methods and compositions for altering the viscosity of treatment fluids used in subterranean operations
    • 用于改变地下作业中使用的处理液的粘度的方法和组合物
    • US20090181866A1
    • 2009-07-16
    • US12009027
    • 2008-01-16
    • B. Raghava ReddyNarongsak Tonmukayakul
    • B. Raghava ReddyNarongsak Tonmukayakul
    • C09K8/68
    • C09K8/86C09K8/035C09K8/502C09K8/506C09K8/5083C09K8/64C09K8/68C09K8/82C09K8/882C09K2208/30
    • An embodiment of the present invention includes a method comprising introducing a cyclodextrin modifier into a well bore penetrating a subterranean formation. Another embodiment of the present invention includes a method of reducing viscosity of a treatment fluid comprising contacting a treatment fluid comprising a base fluid and a viscosifying agent with at least a cyclodextrin modifier wherein the cyclodextrin modifier interacts with the viscosifying agent to reduce viscosity of the treatment fluid. Another embodiment of the present invention includes a method of increasing viscosity of an aqueous fluid comprising contacting at least a hydrophobically modified polymer and a cyclodextrin modifier in the presence of at least the aqueous fluid, wherein the cyclodextrin modifier interacts with the hydrophobically modified polymer to viscosify the aqueous fluid. Another embodiment of the present invention includes a subterranean treatment fluid comprising a base fluid and a cyclodextrin modifier.
    • 本发明的一个实施方案包括一种方法,其包括将环糊精改性剂引入穿透地层的井筒中。 本发明的另一个实施方案包括降低处理流体的粘度的方法,包括使包含基础流体和增粘剂的处理流体与至少一种环糊精改性剂接触,其中环糊精改性剂与增粘剂相互作用以降低处理粘度 流体。 本发明的另一个实施方案包括增加含水流体粘度的方法,包括在至少含水流体存在下使至少一种疏水改性的聚合物和环糊精改性剂接触,其中该环糊精改性剂与该疏水改性的聚合物相互作用以进行粘合 含水液体。 本发明的另一个实施方案包括含有基础流体和环糊精改性剂的地下处理流体。
    • 2. 发明授权
    • Methods and compositions for altering the viscosity of treatment fluids used in subterranean operations
    • 用于改变地下作业中使用的处理液的粘度的方法和组合物
    • US08114818B2
    • 2012-02-14
    • US12009027
    • 2008-01-16
    • B. Raghava ReddyNarongsak Tonmukayakul
    • B. Raghava ReddyNarongsak Tonmukayakul
    • C09K8/68
    • C09K8/86C09K8/035C09K8/502C09K8/506C09K8/5083C09K8/64C09K8/68C09K8/82C09K8/882C09K2208/30
    • An embodiment of the present invention includes a method comprising introducing a cyclodextrin modifier into a well bore penetrating a subterranean formation. Another embodiment of the present invention includes a method of reducing viscosity of a treatment fluid comprising contacting a treatment fluid comprising a base fluid and a viscosifying agent with at least a cyclodextrin modifier wherein the cyclodextrin modifier interacts with the viscosifying agent to reduce viscosity of the treatment fluid. Another embodiment of the present invention includes a method of increasing viscosity of an aqueous fluid comprising contacting at least a hydrophobically modified polymer and a cyclodextrin modifier in the presence of at least the aqueous fluid, wherein the cyclodextrin modifier interacts with the hydrophobically modified polymer to viscosify the aqueous fluid. Another embodiment of the present invention includes a subterranean treatment fluid comprising a base fluid and a cyclodextrin modifier.
    • 本发明的一个实施方案包括一种方法,其包括将环糊精改性剂引入穿透地层的井筒中。 本发明的另一个实施方案包括降低处理流体的粘度的方法,包括使包含基础流体和增粘剂的处理流体与至少一种环糊精改性剂接触,其中环糊精改性剂与增粘剂相互作用以降低处理粘度 流体。 本发明的另一个实施方案包括增加含水流体的粘度的方法,包括在至少含水流体存在下使至少一种疏水改性聚合物和环糊精改性剂接触,其中该环糊精改性剂与该疏水改性聚合物相互作用以进行粘合 含水液体。 本发明的另一个实施方案包括含有基础流体和环糊精改性剂的地下处理流体。
    • 7. 发明申请
    • Device and method for testing friction reduction efficiency and suspension systems
    • 用于测试摩擦降低效率和悬挂系统的装置和方法
    • US20100004890A1
    • 2010-01-07
    • US12166992
    • 2008-07-02
    • Narongsak TonmukayakulJason BryantRobert Pipkin
    • Narongsak TonmukayakulJason BryantRobert Pipkin
    • G01L25/00
    • G01N11/14G01N33/30
    • Methods and devices for testing friction reduction systems are described herein. Embodiments of the disclosed devices allow direct measurement of fluid or rheological properties of friction reduction systems in a “one pot” or integrated device while maintaining the particles in suspension. In an embodiment, a device for testing a friction reduction system comprises an outer chamber. The device also comprises an impeller disposed at the bottom of the outer chamber for mixing the friction reduction system. In addition, the device comprises an inner chamber fixedly disposed within the outer chamber. The inner chamber has an inlet and an outlet such that the inner chamber is in fluid communication with the outer chamber. The device further comprises a bob rotatably disposed within the inner chamber.
    • 本文描述了用于测试摩擦减小系统的方法和装置。 所公开的装置的实施例允许在“一锅”或一体化装置中直接测量摩擦减小系统的流体或流变特性,同时保持颗粒处于悬浮状态。 在一个实施例中,用于测试摩擦减小系统的装置包括外室。 该装置还包括设置在外室底部的用于混合摩擦减小系统的叶轮。 此外,该装置包括固定地设置在外室内的内室。 内室具有入口和出口,使得内室与外室流体连通。 该装置还包括可旋转地设置在内腔内的摇摆杆。