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    • 3. 发明授权
    • Determining conductivity of aged fracture proppants for simulating flow in a fractured reservoir
    • 确定老化断裂支撑剂在断裂储层中模拟流动的电导率
    • US08880383B1
    • 2014-11-04
    • US14041339
    • 2013-09-30
    • Halliburton Energy Services, Inc.
    • Jimmie D. WeaverNeelam Deepak RaysoniWirdansyah Lubis
    • G06F17/00G06F17/50G01N15/08
    • G06F17/5009G06F2217/76
    • In one example, formation fluid flow through a fractured reservoir is simulated using conductivity of aged proppants. A first conductivity profile is received for a proppant. The first conductivity profile describes an ability of the proppant to permit formation fluid flow through a fracture network under reservoir conditions in a fractured reservoir that includes the proppant in the fracture network. The proppant is aged for a duration under the reservoir conditions of the fractured reservoir over the duration. After the duration, a second conductivity profile for the aged proppant is determined. An adjusted conductivity profile for the proppant is determined based on the first conductivity profile and the second conductivity profile. The adjusted conductivity profile is provided as an input conductivity profile for the proppant. The reservoir simulator simulates formation fluid flow through the fractured reservoir using the input conductivity profile.
    • 在一个实例中,使用老化的支撑剂的电导率模拟地层流体流过破裂的储层。 接受支撑剂的第一导电率分布。 第一导电率曲线描述了支撑剂允许地层流体在包含裂缝网络中的支撑剂的裂缝储层中的储层条件下流过裂缝网络的能力。 支撑剂在持续时间内在断裂储层的储层条件下老化一段时间。 在持续时间之后,确定老化的支撑剂的第二导电率曲线。 基于第一电导率分布和第二电导率分布确定支撑剂的调节的导电率分布。 调整的导电率曲线被提供为支撑剂的输入电导率分布。 储层模拟器使用输入电导率模拟模拟通过裂缝储层的地层流体流动。
    • 8. 发明授权
    • Wellbore servicing compositions and methods of making and using same
    • Wellbore维修组合物及其制造和使用方法
    • US09206345B2
    • 2015-12-08
    • US13765444
    • 2013-02-12
    • Halliburton Energy Services, Inc.
    • Jimmie D. WeaverPhilip D. Nguyen
    • E21B33/13E21B43/22C09K8/575C09K8/506C09K8/68C09K8/80E21B33/138
    • C09K8/5753C09K8/506C09K8/68C09K8/80E21B33/138
    • A method of servicing a wellbore in a subterranean formation comprising tethering a relative permeability modifier to one or more surfaces of the formation via a coupling agent. A method of servicing a wellbore in a subterranean formation comprising introducing into the wellbore a first wellbore servicing fluid comprising a coupling agent; allowing the coupling agent to associate with the surface of the formation; introducing into the wellbore a second wellbore servicing fluid comprising a relative permeability modifier; and allowing the relative permeability modifier to associate with the coupling agent. A method of servicing a wellbore in a subterranean formation comprising placing into the formation a wellbore servicing fluid comprising a coupling agent and a relative permeability modifier; and allowing the relative permeability modifier to associate with the formation.
    • 一种在地下地层中维护井眼的方法,包括通过偶联剂将相对渗透性改性剂连接到地层的一个或多个表面。 一种在地下地层中维护井筒的方法,包括将包含偶联剂的第一井筒维修流体引入井眼; 允许偶联剂与地层的表面缔合; 将包含相对渗透性改性剂的第二井筒维修流体引入井筒; 并允许相对渗透性改性剂与偶联剂缔合。 一种在地下地层中维护井筒的方法,包括将包含偶联剂和相对渗透率改性剂的井筒维修流体放入地层中; 并允许相对渗透率调节剂与地层相关联。