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    • 73. 发明授权
    • Methods for completing and stimulating a well bore
    • 完井和刺激井眼的方法
    • US07882894B2
    • 2011-02-08
    • US12378932
    • 2009-02-20
    • Philip D. NguyenRonald G. DusterhoftLoyd East
    • Philip D. NguyenRonald G. DusterhoftLoyd East
    • E21B43/26
    • E21B43/267
    • Methods are providing, including methods comprising providing a liner disposed within a well bore that penetrates a subterranean formation, such that the well bore comprises an annular space between the exterior surface of the liner and the well bore wall; providing a jetting tool disposed within the liner; introducing a stimulation fluid to a treatment interval of the well bore via the jetting tool, such that the stimulation fluid is introduced with sufficient pressure to create or enhance a plurality of perforations in the liner in the treatment interval; introducing a proppant slurry comprising a plurality of resin-coated particulates to the treatment interval of the well bore; and allowing the resin-coated particulates to fill at least a portion of the liner in the treatment interval and at least a portion of the annular space in the treatment interval.
    • 提供的方法包括提供设置在穿透地下地层的井眼内的衬套的方法,使得井筒包括在衬套的外表面和井眼壁之间的环形空间; 提供设置在所述衬套内的喷射工具; 通过所述喷射工具将刺激流体引入所述井眼的治疗间隔,使得所述刺激流体以足够的压力被引入以在所述治疗间隔中产生或增强所述内衬中的多个穿孔; 将包含多个树脂涂覆的颗粒的支撑剂浆料引入井眼的处理间隔; 并且允许树脂涂覆的颗粒在处理间隔内填充衬垫的至少一部分以及处理间隔中的环形空间的至少一部分。
    • 75. 发明授权
    • Methods for controlling migration of particulates in a subterranean formation
    • 控制地层中颗粒迁移的方法
    • US07448451B2
    • 2008-11-11
    • US11092210
    • 2005-03-29
    • Philip D. NguyenRichard D. RickmanRonald G. DusterhoftJohnny A. Barton
    • Philip D. NguyenRichard D. RickmanRonald G. DusterhoftJohnny A. Barton
    • E21B33/138E21B43/26
    • C09K8/5753C09K8/5083C09K8/5086C09K8/5755
    • Methods of controlling particulate migration in a portion of a subterranean formation comprising placing a pre-flush fluid into the portion of the subterranean formation; and then, placing a low-viscosity adhesive substance diluted with an aqueous dissolvable solvent into the portion of the subterranean formation; wherein the portion of a subterranean formation being treated has a regain permeability of at least about 70%. Methods of creating a stabilized region around a portion of a subterranean formation around a well bore having a screen or liner in place in that portion of the subterranean formation comprising placing a pre-flush fluid into the portion of the subterranean formation; and then, placing a low-viscosity adhesive substance diluted with an aqueous dissolvable solvent into that portion of the subterranean formation; wherein the portion of a subterranean formation being treated has regain permeability of at least about 70%.
    • 控制地下地层部分中的微粒迁移的方法,包括将预冲洗流体置于地层的一部分中; 然后将用水溶性溶剂稀释的低粘度粘合剂物质放置到地层的部分中; 其中被处理的地层的部分具有至少约70%的回弹渗透率。 在围绕井眼周围的地下地层的一部分周围形成稳定区域的方法,其中所述地下地层的该部分中具有筛网或衬套就位,包括将预冲洗流体放置到地下地层的该部分中; 然后将用水溶性溶剂稀释的低粘度粘合剂物质放置在该地层的该部分中; 其中被处理的地层的部分重新获得至少约70%的渗透率。
    • 77. 发明授权
    • Methods for controlling particulate migration
    • 控制微粒迁移的方法
    • US07299875B2
    • 2007-11-27
    • US10862986
    • 2004-06-08
    • Philip D. NguyenRonald G. DusterhoftJohnny A. Barton
    • Philip D. NguyenRonald G. DusterhoftJohnny A. Barton
    • E21B43/26
    • C09K8/56C09K8/50C09K8/62
    • Many methods are provided including 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. Also provided are 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.
    • 提供了许多方法,包括稳定地下地层的一部分或减少来自地下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。 还提供了压制地下地层的一部分的方法,同时控制微粒包括使地层的一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。
    • 79. 发明授权
    • Expandable sand control device and specialized completion system and method
    • 可扩展砂控装置及专用完井系统及方法
    • US06766862B2
    • 2004-07-27
    • US10342545
    • 2003-01-15
    • Jiten ChatterjiR. Ashley DonaldsonRonald G. DusterhoftTommy Frank GrigsbyTravis T. Hailey, Jr.Jackie M. LaFontainePhilip D. NguyenJohn PodowskiAlex ProcykSanjay Vitthal
    • Jiten ChatterjiR. Ashley DonaldsonRonald G. DusterhoftTommy Frank GrigsbyTravis T. Hailey, Jr.Jackie M. LaFontainePhilip D. NguyenJohn PodowskiAlex ProcykSanjay Vitthal
    • E21B4308
    • E21B43/108E21B43/04E21B43/08E21B43/103
    • In general, a method is provided for completing a subterranean wellbore, and an apparatus for using the method. The method comprises positioning an expandable sand-control device in the wellbore thereby forming an annulus between the sand-control device and the wellbore; depositing a filter media in the annulus; and after the depositing step, radially expanding the sand-control device to decrease the volume of the annulus. The sand-control device can be a sand screen or slotted or perforated liner having radially extending passageways in the walls thereof, the passageways designed to substantially prevent movement of the particulate material through the passageways and into the sand-control device. Where a slotted liner is desired, the passageways can be plugged during positioning and later unplugged for production. Another embodiment of the method and apparatus presented herein comprises positioning a well-completion device into the wellbore, thereby forming an annulus between the well-completion device and the wellbore, the well-completion device having a flexible, permeable membrane sleeve surrounding an expandable sand-control device; and thereafter radially expanding the sand-control device to decrease the volume of the annulus, thereby also expanding the membrane sleeve. The well-completion device can further include a layer of filter media encased between the membrane sleeve and the sand-control device. The filter media may be of any type known in the industry. Preferably, the membrane sleeve, when expanded, substantially fills the annular space extending between the wellbore and the sand-control device by deforming to substantially contour the wellbore.
    • 通常,提供了一种用于完成地下井眼的方法,以及使用该方法的装置。 该方法包括将可扩展的砂控装置定位在井眼中,从而在砂控装置与井眼之间形成环形空间; 在环空中沉积过滤介质; 并且在沉积步骤之后,径向扩张砂控制装置以减小环的体积。 砂控制装置可以是在其壁中具有径向延伸的通道的砂筛或开槽或穿孔的衬套,所述通道设计成基本上防止颗粒材料通过通道并进入防砂装置的运动。 在需要开槽衬管的地方,通道可以在定位期间被堵塞,并且稍后拔下来进行生产。 本文提出的方法和装置的另一个实施例包括将完井装置定位到井筒中,从而在完井装置和井筒之间形成环形空间,完井装置具有围绕可膨胀砂的柔性可渗透膜套筒 控制装置; 然后径向膨胀砂控装置以减小环形空间的体积,从而也使膜套筒膨胀。 完井装置还可以包括封装在膜套筒和防砂装置之间的一层过滤介质。 过滤介质可以是工业上已知的任何类型。 优选地,当膜膨胀时,膜套通过变形基本上填充在井筒和砂控制装置之间延伸的环形空间,从而使井眼基本上轮廓。