Surfactant compositions and uses therefor
    1.
    发明授权
    Surfactant compositions and uses therefor 失效
    表面活性剂组合物及其用途

    公开(公告)号:US06302209B1

    公开(公告)日:2001-10-16

    申请号:US09151169

    申请日:1998-09-10

    IPC分类号: E21B4300

    摘要: Solid surfactant suspension compositions are formed by combining solid surfactants, such as alpha-olefin sulfonates, with an organic base fluid, such as diesel. Solid surfactant suspensions may be combined with an aqueous carrier fluid to form surfactant-containing fluids suitable for, among other things, forming foams or for water wetting surfaces. Solid surfactant suspensions may also be combined with additive materials, such as polymer particles, to form a dispersion or emulsion. Polymer-containing solid surfactant suspensions may also be combined with aqueous carrier fluids to form, for example, viscosified, gelled, or foamed fluids. Concentration of solid surfactant materials contained in a solid surfactant suspension may be varied to affect the function the solid surfactant suspension. For example, the solid surfactant material may function as a polymer surface wetting agent, an emulsifier, a dispersant, a viscosifier, and/or a foamer in well completion and remedial and/or workover fluids.

    摘要翻译: 固体表面活性剂悬浮液组合物通过将固体表面活性剂如α-烯烃磺酸盐与有机基础流体如柴油混合而形成。 固体表面活性剂悬浮液可以与含水载体流体组合以形成适于尤其形成泡沫或用于水润湿表面的含表面活性剂的流体。 固体表面活性剂悬浮液也可以与添加剂材料如聚合物颗粒结合以形成分散体或乳液。 含聚合物的固体表面活性剂悬浮液也可以与含水载体流体混合以形成例如粘稠的,胶凝的或发泡的流体。 包含在固体表面活性剂悬浮液中的固体表面活性剂材料的浓度可以变化以影响固体表面活性剂悬浮液的功能。 例如,固体表面活性剂材料可用作完井和补救和/或修井液中的聚合物表面润湿剂,乳化剂,分散剂,增粘剂和/或起泡剂。

    Controlled degradation of polysaccharides
    2.
    发明授权
    Controlled degradation of polysaccharides 失效
    多糖的控制降解

    公开(公告)号:US5624886A

    公开(公告)日:1997-04-29

    申请号:US922129

    申请日:1992-07-29

    IPC分类号: C09K8/68 E21B43/27

    CPC分类号: C09K8/685 Y10S507/921

    摘要: A method is shown for fracturing a subterranean formation in which a hydratable polymer, crosslinking agent and breaker are combined in an aqueous carrier to form a gelled fracturing fluid. The breaker is comprised of a substantially insoluble oxidant which is granulated and formed into a pellet or prill with a suitable binder. The pellet so formed can also contain a chelating agent and an activator in order to enhance the rate of breaking. The substantially insoluble oxidant is selected from the group consisting of alkaline earth and zinc salts of peroxide, perphosphate, perborate, and percarbonate.

    摘要翻译: 示出了用于压裂地下地层的方法,其中可水合的聚合物,交联剂和破坏剂在水性载体中组合以形成胶凝的压裂液。 断路器由基本上不溶的氧化剂组成,其被造粒并用合适的粘合剂形成颗粒或颗粒。 如此形成的颗粒也可以含有螯合剂和活化剂以提高断裂率。 基本上不溶的氧化剂选自过氧化物,过磷酸盐,过硼酸盐和过碳酸盐的碱土金属盐和锌盐。

    Methods and Compositions for Fracturing Subterranean Formations
    4.
    发明申请
    Methods and Compositions for Fracturing Subterranean Formations 有权
    压裂地下地层的方法和组成

    公开(公告)号:US20080202744A1

    公开(公告)日:2008-08-28

    申请号:US11679018

    申请日:2007-02-26

    IPC分类号: C09K8/00

    摘要: Viscoelastic surfactant (VES) gelled aqueous fluids containing water, a VES, an internal breaker, a VES stabilizer, a fluid loss control agent and a viscosity enhancer are useful as treating fluids and particularly as fracturing fluids for subterranean formations. These VES-based fluids have faster and more complete clean-up than polymer-based fracturing fluids. The use of an internal breaker permits ready removal of the unique VES micelle based pseudo-filter cake with several advantages including reducing the typical VES loading and total fluid volume since more VES fluid stays within the fracture, generating a more optimum fracture geometry for enhanced reservoir productivity, and treating reservoirs with permeability above the present VES limit of approximately 400 md to at least 2000 md.

    摘要翻译: 粘弹性表面活性剂(VES)胶凝含水的含水流体,VES,内部破碎剂,VES稳定剂,流体损失控制剂和粘度增强剂可用作处理流体,特别是用于地下地层的压裂流体。 这些基于VES的流体比基于聚合物的压裂液具有更快和更完整的清理。 内部断路器的使用允许准备移除独特的基于VES胶束的假滤饼,具有几个优点,包括降低典型的VES载荷和总体积体积,因为更多的VES流体停留在裂缝内,为增强的储层产生更优化的裂缝几何形状 生产力,并处理渗透率高于目前VES极限约400 md至2000 md的油藏。

    Method for increasing the stability of water-based fracturing fluids
    5.
    发明授权
    Method for increasing the stability of water-based fracturing fluids 失效
    提高水性压裂液稳定性的方法

    公开(公告)号:US5226481A

    公开(公告)日:1993-07-13

    申请号:US846688

    申请日:1992-03-04

    IPC分类号: C09K8/68

    CPC分类号: C09K8/685 Y10S507/922

    摘要: A method for increasing the stability of water-based fracturing fluids is shown in which a base fracturing fluid is formulated by mixing together a hard mix water containing multivalent cations, a water soluble polymer and a cross-linking agent for the water soluble polymer. A water softener is added to the base fracturing fluid which hinders the ability of the multivalent cations present in the hard mix water to compete with the water soluble polymer for borate based cross-linking agent, thereby stabilizing the resulting fracturing fluid.

    摘要翻译: 示出了提高水性压裂液稳定性的方法,其中通过将含有多价阳离子的硬混合水,水溶性聚合物和用于水溶性聚合物的交联剂混合在一起来配制基础压裂液。 将水软化剂添加到基础压裂液中,这阻碍了硬混合水中存在的多价阳离子与硼酸盐基交联剂的水溶性聚合物竞争的能力,从而使得到的压裂液稳定。

    Methods and Compositions for Fracturing Subterranean Formations
    7.
    发明申请
    Methods and Compositions for Fracturing Subterranean Formations 有权
    压裂地下地层的方法和组成

    公开(公告)号:US20100261622A1

    公开(公告)日:2010-10-14

    申请号:US12783182

    申请日:2010-05-19

    IPC分类号: C09K8/82

    摘要: Viscoelastic surfactant (VES) gelled aqueous fluids containing water, a VES, an internal breaker, a VES stabilizer, a fluid loss control agent and a viscosity enhancer are useful as treating fluids and particularly as fracturing fluids for subterranean formations. These VES-based fluids have faster and more complete clean-up than polymer-based fracturing fluids. The use of an internal breaker permits ready removal of the unique VES micelle based pseudo-filter cake with several advantages including reducing the typical VES loading and total fluid volume since more VES fluid stays within the fracture, generating a more optimum fracture geometry for enhanced reservoir productivity, and treating reservoirs with permeability above the present VES limit of approximately 400 md to at least 2000 md.

    摘要翻译: 粘弹性表面活性剂(VES)胶凝含水的含水流体,VES,内部破碎剂,VES稳定剂,流体损失控制剂和粘度增强剂可用作处理流体,特别是用于地下地层的压裂流体。 这些基于VES的流体比基于聚合物的压裂液具有更快和更完整的清理。 内部断路器的使用允许准备移除独特的基于VES胶束的假滤饼,具有几个优点,包括降低典型的VES载荷和总体积体积,因为更多的VES流体停留在裂缝内,为增强的储层产生更优化的裂缝几何形状 生产力,并处理渗透率高于目前VES极限约400 md至2000 md的油藏。

    Self-dumping crop shield
    8.
    发明授权
    Self-dumping crop shield 失效
    自营作物盾

    公开(公告)号:US4715449A

    公开(公告)日:1987-12-29

    申请号:US884458

    申请日:1986-07-11

    IPC分类号: A01B39/26

    CPC分类号: A01B39/26

    摘要: A crop sheild is connected to the aft ends of a pair of parallel links by a bracket assembly which can pivot to permit the shield to dump trash. The bracket assembly is pivotally connected to the aft end of the lower link and includes a slot slidably received on a pin located on the aft end of the upper link to maintain the links in a generally parallel relationship. The weight of the shield normally biases the shield to a horizontal field-working position with the end of the slot stopped against the pin. When trash builds up, the shield pivots with respect to the lower link and the slot slides over the pin as the shield moves up against the bias over the trash. Dump forces are reduced since the shields pivot independently of the parallel links.

    摘要翻译: 作物剪刀通过支架组件连接到一对平行连杆的后端,该支架组件可枢转以允许护罩倾倒垃圾。 托架组件枢转地连接到下连杆的后端,并且包括可滑动地容纳在位于上连杆的后端上的销上的槽,以将链节保持为大致平行的关系。 屏蔽罩的重量通常会将屏蔽偏压到水平的场工作位置,同时槽的端部停止在销上。 当垃圾堆积时,屏蔽件相对于下部连杆枢转,并且当挡板向上移动以抵挡垃圾上的偏压时,狭槽在销上滑动。 倾卸力减小,因为护罩独立于平行连杆枢转。

    Methods and compositions for fracturing subterranean formations
    9.
    发明授权
    Methods and compositions for fracturing subterranean formations 有权
    压裂地下地层的方法和组成

    公开(公告)号:US08188015B2

    公开(公告)日:2012-05-29

    申请号:US12783182

    申请日:2010-05-19

    IPC分类号: C09K8/582 C09K8/584 C09K8/86

    摘要: Viscoelastic surfactant (VES) gelled aqueous fluids containing water, a VES, an internal breaker, a VES stabilizer, a fluid loss control agent and a viscosity enhancer are useful as treating fluids and particularly as fracturing fluids for subterranean formations. These VES-based fluids have faster and more complete clean-up than polymer-based fracturing fluids. The use of an internal breaker permits ready removal of the unique VES micelle based pseudo-filter cake with several advantages including reducing the typical VES loading and total fluid volume since more VES fluid stays within the fracture, generating a more optimum fracture geometry for enhanced reservoir productivity, and treating reservoirs with permeability above the present VES limit of approximately 400 md to at least 2000 md.

    摘要翻译: 粘弹性表面活性剂(VES)胶凝含水的含水流体,VES,内部破碎剂,VES稳定剂,流体损失控制剂和粘度增强剂可用作处理流体,特别是用于地下地层的压裂流体。 这些基于VES的流体比基于聚合物的压裂液具有更快和更完整的清理。 内部断路器的使用允许准备移除独特的基于VES胶束的假滤饼,具有几个优点,包括降低典型的VES载荷和总体积体积,因为更多的VES流体停留在裂缝内,为增强的储层产生更优化的断裂几何 生产力,并处理渗透率高于目前VES极限约400 md至2000 md的油藏。

    Methods and compositions for fracturing subterranean formations
    10.
    发明授权
    Methods and compositions for fracturing subterranean formations 有权
    压裂地下地层的方法和组成

    公开(公告)号:US07723272B2

    公开(公告)日:2010-05-25

    申请号:US11679018

    申请日:2007-02-26

    IPC分类号: C09K8/582 C09K8/584 C09K8/86

    摘要: Viscoelastic surfactant (VES) gelled aqueous fluids containing water, a VES, an internal breaker, a VES stabilizer, a fluid loss control agent and a viscosity enhancer are useful as treating fluids and particularly as fracturing fluids for subterranean formations. These VES-based fluids have faster and more complete clean-up than polymer-based fracturing fluids. The use of an internal breaker permits ready removal of the unique VES micelle based pseudo-filter cake with several advantages including reducing the typical VES loading and total fluid volume since more VES fluid stays within the fracture, generating a more optimum fracture geometry for enhanced reservoir productivity, and treating reservoirs with permeability above the present VES limit of approximately 400 md to at least 2000 md.

    摘要翻译: 粘弹性表面活性剂(VES)胶凝含水的含水流体,VES,内部破碎剂,VES稳定剂,流体损失控制剂和粘度增强剂可用作处理流体,特别是用于地下地层的压裂流体。 这些基于VES的流体比基于聚合物的压裂液具有更快和更完整的清理。 内部断路器的使用允许准备移除独特的基于VES胶束的假滤饼,具有几个优点,包括降低典型的VES载荷和总体积体积,因为更多的VES流体停留在裂缝内,为增强的储层产生更优化的裂缝几何形状 生产力,并处理渗透率高于目前VES极限约400 md至2000 md的油藏。