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    • 1. 发明申请
    • BREAKING THE RHEOLOGY OF A WELLBORE FLUID BY CREATING PHASE SEPARATION
    • 通过创建相分离破坏井筒流体的流变学
    • US20100184630A1
    • 2010-07-22
    • US12354931
    • 2009-01-16
    • Philip F. SullivanGary John TustinMark TurnerStephania Poulis Cruz
    • Philip F. SullivanGary John TustinMark TurnerStephania Poulis Cruz
    • C09K8/60C09K8/588
    • C09K8/52C09K8/685C09K2208/08
    • Embodiments of this invention relate to compositions and methods of treating a subterranean formation penetrated by a well bore including introducing a Theological polymer into a subterranean formation, introducing a partitioning agent into a subterranean formation and forming a heterogeneous mixture comprising a dispersed Theological polymer-rich phase and a partitioning agent-rich phase, wherein the viscosity of the mixture is lower than the viscosity of the mixture when no partitioning agent is present. Embodiments of this invention relate to compositions and methods of treating a surface in contact with a wellbore and/or a subterranean formation penetrated by a well bore including forming a heterogeneous mixture comprising a dispersed Theological polymer-rich phase and a partitioning agent-rich phase at the surface of the subterranean formation, and introducing the mixture into a subterranean formation, wherein the viscosity of the mixture within the subterranean formation is lower than the viscosity of the mixture when no partitioning agent is present and wherein the viscosity of the mixture within the subterranean formation is lower than the viscosity of the mixture when the mixture is formed at the surface of the subterranean formation.
    • 本发明的实施方案涉及处理由井眼渗透的地下地层的组合物和方法,包括将神学聚合物引入地下地层,将分配剂引入地下地层并形成包含分散的神经聚合物丰富相的不均匀混合物 和分配剂富集相,其中当不存在分配剂时,混合物的粘度低于混合物的粘度。 本发明的实施方案涉及处理与井眼和/或穿透井眼的地层接触的表面的组合物和方法,包括形成包含分散的神经聚合物丰富相和富分配剂相的不均匀混合物 地下地层的表面,并将混合物引入地下地层,其中当没有分配剂时,地层内的混合物的粘度低于混合物的粘度,并且其中地下混合物的粘度 当在地层表面形成混合物时,其形成比混合物的粘度低。
    • 4. 发明授权
    • Polymeric microspheres as degradable fluid loss additives in oilfield applications
    • 聚合微球作为油田应用中的可降解流体损失添加剂
    • US07703521B2
    • 2010-04-27
    • US12353810
    • 2009-01-14
    • Philip F. SullivanGary John TustinDon WilliamsonHemant K. Ladva
    • Philip F. SullivanGary John TustinDon WilliamsonHemant K. Ladva
    • E21B33/13E21B43/267
    • C09K8/512C09K8/516C09K8/685C09K8/887
    • Methods and apparatus for forming a fluid for use within in a subterranean formation including crosslinking a polymer along the surface of microspheres in a water-in-water emulsion and introducing the microspheres into the subterranean formation. Methods and apparatus for forming a fluid for use within in a subterranean formation including crosslinking a polymer along the surface of microspheres in a water in water emulsion, isolating the microspheres from the emulsion, and introducing the microspheres into the subterranean formation. Methods and apparatus for forming a fluid to treat a subterranean formation including introducing a crosslinkable polymer, partitioning agent, and crosslinker into a solvent, crosslinking the crosslinkable polymer, isolating beads of the crosslinkable polymer from the partitioning agent, introducing the beads into a fluid for treating a subterranean formation.
    • 用于形成在地下地层内使用的流体的方法和装置,包括在水包油乳液中沿着微球表面交联聚合物,并将微球引入地下地层。 用于形成在地层内使用的流体的方法和装置,包括在水包油乳液中沿着微球表面交联聚合物,从微乳液中分离出微球体,并将微球引入到地层中。 用于形成用于处理地下地层的流体的方法和装置,包括将可交联聚合物,分配剂和交联剂引入溶剂中,交联可交联聚合物,将可交联聚合物的珠子与分配剂隔离,将珠粒引入用于 处理地层。
    • 10. 发明申请
    • Aqueous Two-Phase Emulsion Gel Systems for Zone Isolation
    • 用于区域隔离的水性两相乳液凝胶体系
    • US20090133868A1
    • 2009-05-28
    • US11944681
    • 2007-11-26
    • Philip F. SullivanGary John TustinYenny ChristantiGregory KubalaBruno DrochonTrevor LLoyd Hughes
    • Philip F. SullivanGary John TustinYenny ChristantiGregory KubalaBruno DrochonTrevor LLoyd Hughes
    • E21B33/124
    • C09K8/514C09K8/501C09K8/508C09K8/52C09K8/5751C09K8/588C09K8/68C09K8/88
    • A low viscosity wellbore polymer fluid gelling system comprising an aqueous medium and a water-in-water emulsion comprising a plurality of polymers or oligomers, including at least one removable polymer or oligomer, and at least one gelling polymer or oligomer, wherein said fluid has a low viscosity when injected, and the gelling polymer forms a gel downhole which has a storage modulus of at least about 60 Pa after the removable polymer is removed from the fluid. The invention also provides a method of isolating at least one zone of a subterranean formation penetrated by a wellbore, including the steps of preparing a water-in-water emulsion comprising a plurality of polymers or oligomers including at least one removable polymer or oligomer, and at least one gellable polymer or oligomer; combining the water-in-water emulsion with an aqueous medium to prepare a low viscosity polymer fluid; introducing the fluid into a zone in the formation, removing the at least one removable polymer or oligomer, and allowing a remaining gellable oligomer, polymer or polymers to form a gel, isolating the zone from at least one other zone in the formation.
    • 一种低粘度井筒聚合物流体胶凝体系,其包含含水介质和包含多种聚合物或低聚物(包括至少一种可除去的聚合物或低聚物)和至少一种胶凝聚合物或低聚物的水包油乳液,其中所述流体具有 注射时具有低粘度,并且胶凝聚合物形成凝胶井下,其中可除去的聚合物从流体中除去后具有至少约60Pa的储能模量。 本发明还提供了一种分离由井筒渗透的地层的至少一个区域的方法,包括以下步骤:制备包含多个聚合物或低聚物的水包油乳液,所述聚合物或低聚物包括至少一种可除去的聚合物或低聚物,以及 至少一种可凝胶聚合物或低聚物; 将水包油乳液与水性介质结合以制备低粘度聚合物流体; 将流体引入地层中的区域,除去至少一种可除去的聚合物或低聚物,并允许剩余的可凝胶低聚物,聚合物或聚合物形成凝胶,将该区域与地层中的至少一个其它区域隔离。