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    • 3. 发明授权
    • Cell assembly for determining conductivity and permeability
    • 用于确定电导率和渗透率的电池组件
    • US5018396A
    • 1991-05-28
    • US434459
    • 1989-11-13
    • Glenn S. Penny
    • Glenn S. Penny
    • E21B43/267E21B49/00G01N15/08G09B23/40
    • E21B43/267E21B49/00G01N15/0806G09B23/40
    • A cell assembly for determining the conductivity and permability of proppants in simulated subterranean formations comprising a plurality of vertically stacked cell units interconnected such that upon application of a compressive force the compressive force is transmitted equally throughout each of the cell units. Each of the cell units comprises a cell body member having a passageway extending therethrough; a lower piston connected to the cell body member such that one end thereof extends a selected distance into a lower portion of the passageway and an opposed second end extends outwardly therefrom for reciprocal movement within a cell body member of a second cell unit placed therebelow; and an upper piston member positionable in an upper portion of the passageway for reciprocal movement therein in response to force directed thereon, the upper piston member functioning as the lower piston member for a cell unit disposed thereabove. A plurality of shims are disposed within the passageway to define a proppant cavity therebetween. The upper and lower portions of each of the upper and lower piston members are provided with a groove about the peripheral edge portion adapted to receive a square ring such that a fluid tight seal is formed with the body member. A method and apparatus for conditioning a fracturing fluid to simulate downhole conditions are also disclosed.
    • 一种用于确定模拟地下地层中支撑剂的导电性和可渗透性的电池组件,包括互连的多个垂直堆叠的电池单元,使得在施加压缩力时,压缩力在每个电池单元中均匀地传输。 每个单元单元包括具有延伸穿过其中的通道的单元本体构件; 下活塞连接到电池本体构件,使得其一端在所述通道的下部部分中延伸出选定的距离,并且相对的第二端向外延伸,用于在放置在其下方的第二电池单元的电池主体构件内往复运动; 以及上活塞构件,其可定位在所述通道的上部中,用于响应于其上的力而往复运动,所述上活塞构件用作设置在其上方的电池单元的下活塞构件。 多个垫片设置在通道内以在其间限定支撑剂腔。 上活塞和下活塞构件中的每一个的上部和下部设置有围绕周边边缘部分的凹槽,其适于容纳方形环,使得与主体构件形成流体密封。 还公开了一种用于调节压裂液以模拟井下条件的方法和装置。
    • 6. 发明授权
    • High temperature foamer formulations for downhole injection
    • 用于井下注射的高温起泡剂配方
    • US07122509B2
    • 2006-10-17
    • US11102137
    • 2005-04-08
    • J. Todd SannerGlenn S. PennyRoger Padgham
    • J. Todd SannerGlenn S. PennyRoger Padgham
    • C11D1/94C11D1/29C11D3/30C11D7/36C11D3/44
    • B01F17/0085B01F17/0057C09K8/38C09K8/703C11D1/02C11D1/143C11D1/90C11D1/94C11D3/0073C11D3/30
    • Disclosed is a process for preparing a foamer composition having an anionic surfactant and a neutralizing amine. The process includes the steps of estimating an extent to which the anionic surfactant will decompose into acidic components under an elevated temperature range, determining an effective amount of neutralizing amine needed to sufficiently neutralize the acidic components upon the decomposition of the anionic surfactant and mixing the effective amount of neutralizing amine with the anionic surfactant. Also disclosed is a foamer composition having from about 5% to about 70% by weight anionic surfactant, from about 1% to about 20% by weight neutralizing amine, from about 2% to about 10% by weight amine-based corrosion inhibitor, from about 0% to about 20% by weight solvent, from about 1% to about 10% by weight scale inhibitor and from about 0% to about 30% water.
    • 公开了一种制备具有阴离子表面活性剂和中和胺的起泡组合物的方法。 该方法包括以下步骤:在升高的温度范围内估计阴离子表面活性剂将分解成酸性组分的程度,测定在阴离子表面活性剂分解时充分中和酸性组分所需的中和胺的有效量,并混合有效 中和胺与阴离子表面活性剂的用量。 还公开了一种起泡组合物,其具有约5重量%至约70重量%的阴离子表面活性剂,约1重量%至约20重量%的中和胺,约2重量%至约10重量%的胺基缓蚀剂, 约0%至约20%重量的溶剂,约1%至约10%的防垢剂和约0%至约30%的水。
    • 7. 发明授权
    • Compositions for increasing hydrocarbon production from subterranean
formations
    • 用于从地下地层增加碳氢化合物产量的组合物
    • US4594200A
    • 1986-06-10
    • US671546
    • 1984-11-15
    • Glenn S. Penny
    • Glenn S. Penny
    • C09K8/60C09K8/62C09K8/86E21B43/22C07C143/08
    • C09K8/86C07C305/00C07C309/00C09K8/60C09K8/62
    • The present invention relates to a chemical composition represented by the formula: ##STR1## and ##STR2## wherein a is a whole number or fraction thereof in the range of from about 4 to about 18;wherein b is a whole number or fraction thereof in the range of from about 0 to about 30;wherein c is a whole number or fraction thereof in the range of from about 1 to about 3;wherein d is independently a whole number or fraction thereof in the range of from about 0 to about 1 and the sum of the average values of d are less than or equal to c;R is independently selected from the group consisting of hydrogen and a methyl group whereby mixtures containing both groups may result; andX.sup.+ is an exchangeable cation; andZ is a nucleophile containing species containing at least one member selected from the group consisting of oxygen and nitrogen wherein the nitrogen is in the form of NR.sup.1 wherein R.sup.1 is independently selected from the group consisting of hydrogen and methyl radicals.
    • 本发明涉及由下式表示的化学组成:式I和式II其中a为约4至约18的整数或其分数; 其中b为约0至约30的整数或其分数; 其中c为约1至约3的整数或其分数; 其中d独立地是在约0至约1范围内的整数或其分数,并且d的平均值之和小于或等于c; R独立地选自氢和甲基,由此可能导致含有两个基团的混合物; X +是可交换阳离子; Z是含有至少一个选自氧和氮的成员的含亲核试剂的物质,其中氮是NR1的形式,其中R1独立地选自氢和甲基。
    • 9. 发明申请
    • Process for well cleaning
    • 清洗过程
    • US20080287324A1
    • 2008-11-20
    • US12156201
    • 2008-05-30
    • John Thomas PursleyDavid L. HolcombGlenn S. Penny
    • John Thomas PursleyDavid L. HolcombGlenn S. Penny
    • C09K8/52
    • C09K8/52
    • Disclosed is a method for treating an oil or gas well having a wellbore that includes the steps of forming a solvent-surfactant blend by combining a solvent and a surfactant, adding a diluent to the solvent-surfactant blend to form an emulsified solvent-surfactant blend; combining the emulsified solvent-surfactant blend with a water-based carrier fluid to form a well treatment microemulsion, and injecting the well treatment microemulsion into the oil or gas well. In a preferred embodiment, the step of forming a solvent-surfactant blend includes combining a surfactant with a solvent selected from the group consisting of terpenes and alkyl or aryl esters of short chain alcohols.
    • 公开了一种用于处理具有井眼的油井或气井的方法,其包括通过混合溶剂和表面活性剂形成溶剂 - 表面活性剂共混物的步骤,向溶剂 - 表面活性剂混合物中加入稀释剂以形成乳化溶剂 - 表面活性剂共混物 ; 将乳化溶剂 - 表面活性剂混合物与水基载体流体组合以形成良好处理的微乳液,并将井处理微乳液注入油或气井。 在优选的实施方案中,形成溶剂 - 表面活性剂共混物的步骤包括将表面活性剂与选自萜烯和短链醇的烷基或芳基酯的溶剂组合。