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    • 3. 发明申请
    • Method of formulating and using a drilling mud with fragile gels
    • 配制和使用具有脆性凝胶的钻井泥浆的方法
    • US20080032900A1
    • 2008-02-07
    • US11893195
    • 2007-08-15
    • Jeff KirsnerDon SiemsKimberly Burrows-LawsonDavid Carbajal
    • Jeff KirsnerDon SiemsKimberly Burrows-LawsonDavid Carbajal
    • C09K8/00E21B43/00
    • C09K8/34C09K8/32C09K8/36
    • A method for drilling, running casing in, and/or cementing a borehole in a subterranean formation without significant loss of drilling fluid is disclosed, as well as compositions for use in such method. The method employs a drilling fluid comprising a fragile gel or having fragile gel behavior and providing superior oil mud rheology and overall performance. The fluid is especially advantageous for use in deep water wells because the fluid exhibits minimal difference between downhole equivalent circulating density and surface density notwithstanding differences in drilling or penetration rates. When an ester and isomerized olefin blend is used for the base of the fluid, the fluid makes an environmentally acceptable and regulatory compliant invert emulsion drilling fluid. The fluid preferably contains no organophilic clays.
    • 公开了一种用于在地下地层中钻孔,运行壳体和/或固井钻孔而不显着损失钻井液的方法,以及用于这种方法的组合物。 该方法采用包含脆性凝胶或具有脆性凝胶行为的钻井液,并提供优异的油泥流变性和整体性能。 该流体特别有利于在深水井中使用,因为即使钻井或穿透速度不同,流体表现出井下当量循环密度和表面密度之间的最小差异。 当酯和异构化的烯烃共混物用于流体的基底时,流体使环境可接受和调节顺从的乳化液钻井液。 流体优选不含有亲力性粘土。
    • 4. 发明授权
    • Method of drilling using invert emulsion drilling fluids
    • 使用反相乳液钻井液钻井的方法
    • US07645723B2
    • 2010-01-12
    • US11893195
    • 2007-08-15
    • Jeff KirsnerDon SiemsKimberly Burrows-LawsonDavid Carbajal
    • Jeff KirsnerDon SiemsKimberly Burrows-LawsonDavid Carbajal
    • E21B21/00B01F3/08C09K8/32C09K8/06
    • C09K8/34C09K8/32C09K8/36
    • A method for drilling, running casing in, and/or cementing a borehole in a subterranean formation without significant loss of drilling fluid is disclosed, as well as compositions for use in such method. The method employs a drilling fluid comprising a fragile gel or having fragile gel behavior and providing superior oil mud rheology and overall performance. The fluid is especially advantageous for use in deep water wells because the fluid exhibits minimal difference between downhole equivalent circulating density and surface density notwithstanding differences in drilling or penetration rates. When an ester and isomerized olefin blend is used for the base of the fluid, the fluid makes an environmentally acceptable and regulatory compliant invert emulsion drilling fluid. The fluid preferably contains no organophilic clays.
    • 公开了一种用于在地下地层中钻孔,运行壳体和/或固井钻孔而不显着损失钻井液的方法,以及用于这种方法的组合物。 该方法采用包含脆性凝胶或具有脆性凝胶行为的钻井液,并提供优异的油泥流变性和整体性能。 该流体特别有利于在深水井中使用,因为即使钻井或穿透速度不同,流体表现出井下当量循环密度和表面密度之间的最小差异。 当酯和异构化的烯烃共混物用于流体的基底时,流体使环境可接受和调节顺从的乳化液钻井液。 流体优选不含有亲力性粘土。
    • 9. 发明授权
    • Method of formulating and using a drilling mud with fragile gels
    • 配制和使用具有脆性凝胶的钻井泥浆的方法
    • US07278485B2
    • 2007-10-09
    • US10933560
    • 2004-09-04
    • Jeff KirsnerDon SiemsKimberly Burrows-LawsonDavid Carbajal
    • Jeff KirsnerDon SiemsKimberly Burrows-LawsonDavid Carbajal
    • E21B43/00C09K8/36C09K8/035C09K8/04
    • C09K8/34C09K8/32C09K8/36
    • A method for drilling, running casing in, and/or cementing a borehole in a subterranean formation without significant loss of drilling fluid is disclosed, as well as compositions for use in such method. The method employs a drilling fluid comprising a fragile gel or having fragile gel behavior and providing superior oil mud rheology and overall performance. The fluid is especially advantageous for use in deep water wells because the fluid exhibits minimal difference between downhole equivalent circulating density and surface density notwithstanding differences in drilling or penetration rates. When an ester and isomerized olefin blend is used for the base of the fluid, the fluid makes an environmentally acceptable and regulatory compliant invert emulsion drilling fluid. The fluid preferably contains no organophilic clays.
    • 公开了一种用于在地下地层中钻孔,运行壳体和/或固井钻孔而不显着损失钻井液的方法,以及用于这种方法的组合物。 该方法采用包含脆性凝胶或具有脆性凝胶行为的钻井液,并提供优异的油泥流变性和整体性能。 该流体特别有利于在深水井中使用,因为即使钻井或穿透速度不同,流体表现出井下当量循环密度和表面密度之间的最小差异。 当酯和异构化的烯烃共混物用于流体的基底时,流体使环境可接受和调节顺从的乳化液钻井液。 流体优选不含有亲力性粘土。