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    • 3. 发明申请
    • Methods and compositions for consolidating proppant in fractures
    • 用于巩固支撑剂骨折的方法和组合物
    • US20050230111A1
    • 2005-10-20
    • US11135566
    • 2005-05-23
    • Philip NguyenJohnny BartonO. Isenberg
    • Philip NguyenJohnny BartonO. Isenberg
    • E21B20060101E21B33/138E21B43/26E21B43/267
    • E21B43/267C09K8/68C09K8/805C09K8/90C09K2208/26E21B43/26Y10S507/924Y10T428/2998
    • Improved methods and compositions for consolidating proppant in subterranean fractures are provided. In certain embodiments, the hardenable resin compositions may be especially suited for consolidating proppant in subterranean fractures having temperatures above about 200° F. Improved methods include providing proppant particles coated with a hardenable resin composition mixed with a gelled liquid fracturing fluid, and introducing the fracturing fluid into a subterranean zone. The fracturing fluid may form one or more fractures in the subterranean zone and deposit the proppant particles coated with the resin composition therein. Thereafter, the hardenable resin composition on the proppant particles is allowed to harden by heat and to consolidate the proppant particles into degradation resistant permeable packs. The hardenable resin composition may include a liquid bisphenol A-epichlorohydrin resin, a 4,4′-diaminodiphenyl sulfone hardening agent, a solvent, a silane coupling agent, and a surfactant. The solvent may include diethylene glycol monomethyl ether or dimethyl sulfoxide.
    • 提供了用于巩固地下裂缝中支撑剂的改进方法和组合物。 在某些实施方案中,可硬化树脂组合物可以特别适用于在高于约200°F的温度的地下裂缝中固结支撑剂。改进的方法包括提供涂覆有与可凝胶化液体压裂液混合的可硬化树脂组合物的支撑剂颗粒,以及引入压裂 流体进入地下区域。 压裂液可能在地下区域中形成一个或多个裂缝,并将涂覆有树脂组合物的支撑剂颗粒沉积在其中。 此后,将支撑剂颗粒上的可硬化树脂组合物通过加热硬化并将支撑剂颗粒固结成耐腐蚀的渗透性包装。 可硬化树脂组合物可以包括液体双酚A-表氯醇树脂,4,4'-二氨基二苯砜硬化剂,溶剂,硅烷偶联剂和表面活性剂。 溶剂可以包括二甘醇单甲醚或​​二甲基亚砜。
    • 6. 发明申请
    • Compositions and methods for particulate consolidation
    • 颗粒固结的组成和方法
    • US20050051331A1
    • 2005-03-10
    • US10944973
    • 2004-09-20
    • Philip NguyenJohnny BartonJimmie Weaver
    • Philip NguyenJohnny BartonJimmie Weaver
    • E21B33/138E21B37/00E21B43/02E21B43/267
    • E21B43/025C09K8/56
    • A method of consolidating a proppant particulates comprising substantially coating proppant particulates with an integrated consolidation fluid comprising a hardening agent that itself comprises a piperazine, a derivative of piperazine, or a combination thereof; placing the coated proppant particulates into a portion of a subterranean formation; and, allowing the integrated consolidation fluid to substantially cure. A method of stabilizing a portion of a subterranean formation comprising applying a preflush solution to the subterranean formation; applying an integrated consolidation fluid to the subterranean formation, wherein the integrated consolidation fluid comprises a hardening agent component itself comprising a piperazine, a derivative of piperazine, or a combination thereof; and, allowing the integrated consolidation fluid to substantially cure. An integrated consolidation fluid capable of consolidating a subterranean formation comprising a hardenable resin component and a hardening agent component itself comprising a piperazine, a derivative of piperazine, or a combination thereof.
    • 一种固结支撑剂颗粒的方法,该支撑剂颗粒包括基本上涂覆支撑剂颗粒与包含本身包含哌嗪,哌嗪衍生物或其组合的硬化剂的整体固结流体; 将涂覆的支撑剂颗粒置于地层的一部分中; 并且允许集成的固结流体基本上固化。 一种稳定地下地层的一部分的方法,包括将预冲洗溶液施加到地下地层; 将整合的固结流体施加到所述地下地层,其中所述一体化固结流体包含本身包含哌嗪,哌嗪衍生物或其组合的固化剂组分; 并且允许集成的固结流体基本上固化。 一种能够固结包含可硬化树脂组分和固化剂组分本身的地层的综合固结液,其包含哌嗪,哌嗪衍生物或其组合。
    • 8. 发明申请
    • Compositions and methods for controlling unconsolidated particulates
    • 用于控制未固结颗粒的组合物和方法
    • US20050194142A1
    • 2005-09-08
    • US10793711
    • 2004-03-05
    • Philip NguyenJohnny BartonDavid Brown
    • Philip NguyenJohnny BartonDavid Brown
    • C09K8/50C09K8/62E21B43/267E21B33/138
    • C09K8/50C09K8/62
    • The present invention relates to methods for stabilizing an unconsolidated or weakly consolidated zone of a subterranean formation. One embodiment provides a method of stabilizing a subterranean formation comprising the steps of placing a gelable liquid composition into the subterranean formation, wherein the gelable liquid composition is capable of forming a gelled substance after placement; and, allowing the gelable liquid composition to convert into a gelled substance that stabilizes unconsolidated or weakly consolidated particles within the subterranean formation. Another embodiment provides a method of stimulating production from a subterranean formation comprising the steps of placing a gelable liquid composition into the subterranean formation; allowing the gelable liquid composition to convert into a gelled substance; creating at least one fracture in the subterranean formation extending from the well bore, through the gelled substance, and into an untreated zone of the subterranean formation; depositing proppant into at least one such fracture.
    • 本发明涉及用于稳定地层的未固结或弱固结区的方法。 一个实施方案提供了一种稳定地层的方法,包括将可胶凝液体组合物置于地层中的步骤,其中可凝胶化液体组合物能够在放置后形成凝胶物质; 并且允许可凝胶化液体组合物转化成使地下地层内未固化或弱固化的颗粒稳定的凝胶物质。 另一个实施方案提供了一种刺激地层生产的方法,包括将可胶凝液体组合物置于地层中的步骤; 使可凝胶化的液体组合物转变为凝胶状物质; 在地下地层中产生至少一个从井眼延伸穿过凝胶物质并进入地下地层的未处理区域的裂缝; 将支撑剂沉积到至少一个这样的断裂中。
    • 9. 发明申请
    • Methods for Controlling Particulate Migration
    • 控制微粒迁移的方法
    • US20070261854A1
    • 2007-11-15
    • US11828757
    • 2007-07-26
    • Philip NguyenRonald DusterhoftJohnny Barton
    • Philip NguyenRonald DusterhoftJohnny Barton
    • C09K8/56
    • C09K8/56C09K8/50C09K8/62
    • Some embodiments of the present invention provide methods of stabilizing a portion of a subterranean formation or reducing the production of particulates from a portion of a subterranean formation comprising contacting the portion of the subterranean formation with a pre-flush fluid; contacting the portion of the subterranean formation with a consolidation fluid comprising a resin and an aqueous dissolvable solvent; and, contacting the portion of the subterranean formation with an after-flush fluid. Other embodiments of the present invention provide methods of fracturing a portion of a subterranean formation while controlling particulates comprising contacting the portion of the subterranean formation with a pre-flush fluid; contacting the portion of the subterranean formation with a consolidation fluid comprising a resin and an aqueous dissolvable solvent; and, contacting the portion of the subterranean formation with a fracturing fluid at a pressure sufficient to create or enhance a fracture in the subterranean formation.
    • 本发明的一些实施方案提供了稳定地下地层的一部分或减少来自地层的一部分的颗粒的产生的方法,包括使地下地层的该部分与预冲洗流体接触; 使所述地层的所述部分与包含树脂和水溶性溶剂的固结流体接触; 并且使地下地层的一部分与后冲洗流体接触。 本发明的其它实施方案提供了压制地下地层的一部分同时控制微粒的方法,所述方法包括将所述地层的所述部分与预冲洗流体接触; 使所述地层的所述部分与包含树脂和水溶性溶剂的固结流体接触; 并且使所述地层的所述部分与压裂液接触,该压力足以产生或增强所述地层中的断裂。