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    • 12. 发明授权
    • System and method for low damage gravel packing
    • 低破碎砾石包装的系统和方法
    • US07789146B2
    • 2010-09-07
    • US12124910
    • 2008-05-21
    • Mohan K. R. PangaBalkrishna GadiyarRyan HartmanBruno DrochonJohn W. StillBryan Stamm
    • Mohan K. R. PangaBalkrishna GadiyarRyan HartmanBruno DrochonJohn W. StillBryan Stamm
    • E21B43/04
    • E21B43/04C09K8/80C09K8/805Y10S507/925
    • A method is disclosed for low damage gravel packing. The method includes combining a carrier fluid, a first amount of particulates, and a second amount of particulates into a slurry. The first amount of particulates have a first average size distribution and the second amount of particulates have a second average size distribution, and the first average size distribution is at least three times larger than the second average size distribution. The slurry includes particles which are at least partially degradable material, and with reactive solid constituents. The reactive solid reacts with the degradable material and/or a hydrolysis product of the degradable material. The method further includes positioning a screen in a wellbore, and circulating the slurry through the wellbore such that the first amount of particulates and the second amount of particulates are deposited on an outer surface of the screen.
    • 公开了一种低损伤砾石包装的方法。 该方法包括将载体流体,第一量的微粒和第二量的微粒组合成浆料。 第一量的颗粒具有第一平均尺寸分​​布,第二量的颗粒具有第二平均尺寸分​​布,并且第一平均尺寸分​​布比第二平均尺寸分​​布大至少三倍。 浆料包括至少部分可降解材料的颗粒和具有反应性固体成分的颗粒。 反应性固体与可降解材料和/或可降解材料的水解产物反应。 该方法还包括将筛网定位在井眼中,并使浆料循环通过井筒,使得第一量的微粒和第二量的微粒沉积在筛网的外表面上。
    • 13. 发明申请
    • SYSTEM AND METHOD FOR LOW DAMAGE GRAVEL PACKING
    • 低损耗GRAVEL包装的系统和方法
    • US20110265985A1
    • 2011-11-03
    • US13182191
    • 2011-07-13
    • Mohan K. R. PangaBalkrishna GadiyarRyan HartmanBruno DrochonJohn W. StillBryan Stamm
    • Mohan K. R. PangaBalkrishna GadiyarRyan HartmanBruno DrochonJohn W. StillBryan Stamm
    • E21B43/04
    • E21B43/04C09K8/80C09K8/805Y10S507/925
    • A method is disclosed for low damage gravel packing. The method includes combining a carrier fluid, a first amount of particulates, and a second amount of particulates into a slurry. The first amount of particulates have a first average size distribution and the second amount of particulates have a second average size distribution, and the first average size distribution is at least three times larger than the second average size distribution. The slurry includes particles which are at least partially degradable material, and with reactive solid constituents. The reactive solid reacts with the degradable material and/or a hydrolysis product of the degradable material. The method further includes positioning a screen in a wellbore, and circulating the slurry through the wellbore such that the first amount of particulates and the second amount of particulates are deposited on an outer surface of the screen.
    • 公开了一种低损伤砾石包装的方法。 该方法包括将载体流体,第一量的微粒和第二量的微粒组合成浆料。 第一量的颗粒具有第一平均尺寸分​​布,第二量的颗粒具有第二平均尺寸分​​布,并且第一平均尺寸分​​布比第二平均尺寸分​​布大至少三倍。 浆料包括至少部分可降解材料的颗粒和具有反应性固体成分的颗粒。 反应性固体与可降解材料和/或可降解材料的水解产物反应。 该方法还包括将筛网定位在井眼中,并使浆料循环通过井筒,使得第一量的微粒和第二量的微粒沉积在筛网的外表面上。
    • 15. 发明授权
    • Toe-to-heel gravel packing methods
    • 脚跟砾石包装方法
    • US08322420B2
    • 2012-12-04
    • US12569983
    • 2009-09-30
    • Mehmet ParlarRaymond TibblesBalkrishna GadiyarBryan Stamm
    • Mehmet ParlarRaymond TibblesBalkrishna GadiyarBryan Stamm
    • E21B43/04E21B21/00
    • C09K8/04C09K2208/12E21B43/04
    • Gravel packing of a wellbore penetrating a subterranean formation is carried out in a wellbore having a cased section and an uncased section that contains water-based drilling fluids. A first water-based displacement fluid that contains a shale inhibitor is introduced into the wellbore to displace the water-based drilling fluids from the uncased section of the wellbore. A second water-based displacement fluid is introduced into the wellbore to displace fluids within the cased section of the wellbore. A sand control screen assembly is run to a selected depth within the uncased section of the wellbore to facilitate a gravel packing operation. A gravel pack slurry containing gravel and a viscosified carrier fluid is introduced into the wellbore to facilitate gravel packing of the uncased section. The gravel packing operation may be carried without the use of shunt flow paths and with the use of a sand screen assembly having at least one diverter valve to divert fluid returns to facilitate prevention of pressure build up.
    • 穿透地下地层的井筒的砾石填充是在具有套管段和含有水基钻井液的未套管段的井眼中进行的。 将含有页岩抑制剂的第一种水基置换流体引入井筒中以从井筒的未被封装的部分移位水基钻井液。 第二个水基置换流体被引入到井眼中以置换井筒的套管段内的流体。 防砂筛管组件运行到井筒的未固化部分内的选定深度,以便于砾石包装操作。 将含有砾石和粘稠载体流体的砾石填充浆料引入井眼中以促进未加封段的砾石填充。 砾石填充操作可以在不使用分流流动路径的情况下进行,并且使用具有至少一个分流阀的砂筛组件来转移流体返回以便于防止压力积聚。
    • 16. 发明申请
    • TOE-TO-HEEL GRAVEL PACKING METHODS
    • TOE TO HEEL GRAVEL包装方法
    • US20100096130A1
    • 2010-04-22
    • US12569983
    • 2009-09-30
    • Mehmet ParlarRaymond TibblesBalkrishna GadiyarBryan Stamm
    • Mehmet ParlarRaymond TibblesBalkrishna GadiyarBryan Stamm
    • E21B43/04
    • C09K8/04C09K2208/12E21B43/04
    • Gravel packing of a wellbore penetrating a subterranean formation is carried out in a wellbore having a cased section and an uncased section that contains water-based drilling fluids. A first water-based displacement fluid that contains a shale inhibitor is introduced into the wellbore to displace the water-based drilling fluids from the uncased section of the wellbore. A second water-based displacement fluid is introduced into the wellbore to displace fluids within the cased section of the wellbore. A sand control screen assembly is run to a selected depth within the uncased section of the wellbore to facilitate a gravel packing operation. A gravel pack slurry containing gravel and a viscosified carrier fluid is introduced into the wellbore to facilitate gravel packing of the uncased section. The gravel packing operation may be carried without the use of shunt flow paths and with the use of a sand screen assembly having at least one diverter valve to divert fluid returns to facilitate prevention of pressure build up.
    • 穿透地下地层的井筒的砾石填充是在具有套管段和含有水基钻井液的未套管段的井眼中进行的。 将含有页岩抑制剂的第一种水基置换流体引入井筒中以从井筒的未被封装的部分移位水基钻井液。 第二个水基置换流体被引入到井眼中以置换井筒的套管段内的流体。 防砂筛管组件运行到井筒的未固化部分内的选定深度,以便于砾石包装操作。 将含有砾石和粘稠载体流体的砾石填充浆料引入井眼中以促进未加封段的砾石填充。 砾石填充操作可以在不使用分流流动路径的情况下进行,并且使用具有至少一个分流阀的砂筛组件来转移流体返回以便于防止压力积聚。