Contains Inorganic Component Other Than Water Or Clay Patents (Class 507/269)
-
Patent number: 7867954Abstract: A cement composition comprises fine pumice particles, for use in cementing subterranean wells, and oil and gas wells in particular. The pumice containing cement blends feature enhanced compressive strength, and favorable compressive strength to Young's Modulus ratios. Lightweight cement blends containing pumice, and their use in cementing oil and gas wells are also described.Type: GrantFiled: October 22, 2008Date of Patent: January 11, 2011Assignee: Sanjel Limited PartnershipInventors: Neil Warrender, Amir Mahmoudkhani, Nga Tu Huynh, Charles Sylvestre
-
Publication number: 20110000672Abstract: A treating fluid may contain an effective amount of a particulate additive to stabilize clays, such as clays in a subterranean formation, by inhibiting or preventing them from swelling and/or migrating, where the particulate additive is an alkaline earth metal oxide, alkaline earth metal hydroxide, alkali metal oxide, alkali metal hydroxide, transition metal oxide, transition metal hydroxide, post-transition metal oxide, post-transition metal hydroxide, piezoelectric crystal, and/or pyroelectric crystal. The particle size of the magnesium oxide or other agent may be nanometer scale, which scale may provide unique particle charges that help stabilize the clays. These treating fluids may be used as treatment fluids for subterranean hydrocarbon formations, such as in hydraulic fracturing, completion fluids, gravel packing fluids and fluid loss pills. The carrier fluid used in the treating fluid may be aqueous, brine, alcoholic or hydrocarbon-based.Type: ApplicationFiled: November 25, 2008Publication date: January 6, 2011Applicant: BAKER HUGHES INCORPORATEDInventor: Tianping Huang
-
Patent number: 7863225Abstract: Embodiments of the present invention are directed to defoaming methods and compositions for well treatment fluids. An exemplary embodiment of the present invention provides a method of defoaming a well treatment fluid, comprising combining a defoaming composition with the well treatment fluid, wherein the defoaming composition comprises an amide of a carboxylic acid, a polypropylene glycol, an ethoxylated and propoxylated fatty alcohol, an ethoxylated alcohol comprising from 3 carbons to 6 carbons, and a hydrophobic silica in an amount of up to about 3% by weight of the defoaming composition.Type: GrantFiled: February 24, 2009Date of Patent: January 4, 2011Assignee: Halliburton Energy Services Inc.Inventors: Jiten Chatterji, Bobby J. King
-
Patent number: 7863226Abstract: Methods are provided that include a method comprising providing magnesium oxide; placing the magnesium oxide within a portion of a subterranean formation; contacting the magnesium oxide with a brine that comprises water and a divalent salt; and allowing the magnesium oxide and brine to react to form a hardened mass in the portion of the subterranean formation. In some embodiments, the methods comprise providing a subterranean drilling fluid that comprises magnesium oxide; and adding a divalent salt to the subterranean drilling fluid to form a settable composition. In other embodiments, the methods comprise providing a subterranean drilling fluid that comprises magnesium oxide; and adding a divalent salt to the subterranean drilling fluid to form a settable composition. Additional methods are also provided.Type: GrantFiled: June 4, 2007Date of Patent: January 4, 2011Assignee: Halliburton Energy Services Inc.Inventors: Stephen W. Almond, Ryan M. Foster
-
Publication number: 20100331223Abstract: The invention discloses method of treating a subterranean formation of a well bore, the method comprising: providing a treatment fluid comprising: an aqueous base fluid; a viscosity enhancer; and a viscoelastic surfactant, wherein the enhancer is acid in the aqueous base fluid and co-operates with the viscoelastic surfactant to enhance viscosity compared to viscoelastic surfactant alone in the aqueous base fluid; and introducing the treatment fluid into the well bore.Type: ApplicationFiled: June 25, 2009Publication date: December 30, 2010Inventors: Leiming Li, Lijun Lin, Mathew M. Samuel, Syed Ali, Paul R. Howard
-
Patent number: 7858563Abstract: A treatment of a subterranean formation which contains a hydrocarbon-bearing zone, is carried out using a hydrocarbon-responsive fluid thickened with an oligomeric surfactant consisting of from 2 to 8_linked surfactant monomer subunits. The process of treatment comprises (i) mixing a thickening amount of oligomeric surfactant with an aqueous liquid to make a viscoelastic treatment fluid, (ii) pumping said viscoelastic treatment fluid through a wellbore and into the subterranean formation, where (iii) contact with hydrocarbons within the formation dissipates the viscosity of the treatment fluid.Type: GrantFiled: January 14, 2010Date of Patent: December 28, 2010Assignee: Schlumberger Technology CorporationInventors: Trevor Hughes, Timothy Gareth John Jones, Gary John Tustin, Jian Zhou
-
Patent number: 7858562Abstract: A powder composition comprising viscoelastic surfactant forms, in aqueous solution, a viscoelastic wellbore treatment fluid.Type: GrantFiled: April 24, 2007Date of Patent: December 28, 2010Assignee: Schlumberger Technology CorporationInventors: Timothy Gareth John Jones, Gary John Tustin
-
Patent number: 7855170Abstract: A synthetic glass family in the quaternary phase field of CaO—SiO2-Al2O3-MgO (CSAM) with hydraulic and pozzolanic properties for use in differing applications in the gas and oil well cementing area. A method of making a mud-to-cement (MTC) slurry and a method for treating oil and gas wells with the MTC slurry containing a homogenous amorphous synthetic glass made from a mixture of inorganic materials selected from the group consisting of CSAM, wherein the cementing glasses with the mixture of inorganic materials are in a 100% amorphous phase with a degree of crystallization of zero.Type: GrantFiled: May 20, 2008Date of Patent: December 21, 2010Assignee: INTEVEP, S.A.Inventors: Yibran Perera, Virginia Buccellato, George Quercia, Aiskely Blanco
-
Patent number: 7854277Abstract: Wellbore fluid containing a base fluid and a particulate bridging agent comprised of melamine. A method is also described of forming a removable filter cake on the walls of a wellbore that penetrates a porous and permeable rock formation by placing in the wellbore a wellbore fluid containing a base fluid and melamine, and permitting the melamine to deposit from the wellbore fluid onto or into the walls of the wellbore to form the filter cake, whereby fluid loss to the formation through the removable filter cake is reduced.Type: GrantFiled: January 10, 2007Date of Patent: December 21, 2010Assignee: BP Exploration Operating Company LimitedInventors: Simon Neil Duncum, Christopher Alan Sawdon
-
Patent number: 7851416Abstract: An oilfield servicing fluid composition containing an aldehyde guar produced by enzymatic oxidation of a non-derivatized, straight guar or of a guar derivative. The enzyme used to oxidize the guar to the aldehyde guar is galactose oxidase, which may be combined with catalase or catalase and peroxidase. The aldehyde guar is useful as an effective gelling agent for oilfield servicing fluids such as hydraulic fracturing fluids and stimulation fluids.Type: GrantFiled: May 18, 2007Date of Patent: December 14, 2010Assignee: Hercules IncorporatedInventors: Mohand Melbouci, Tuyen T. Nguyen, Teng-Shau Young
-
Patent number: 7849923Abstract: Elimination of sand entrainment and a significant increase in hydrodynamic permeability of the sand pack in an area near the wellbore are achieved through the use of a sand and/or proppant, and proppant material mixture at the final stage of the fracture filling process, where individual particles of the proppant material have at least one shape of plates, lattices, hollow bars, inside-hollow tubes with a closed impermeable cavity or cavities, toroidal particles, elongated particles in the form of ovals, pellets or plates, cylinders with a closed impermeable cavity or cavities, or blocks with a comb multi-channel structure with throughout channels of the ellipse or polygon cross-section.Type: GrantFiled: December 18, 2007Date of Patent: December 14, 2010Assignee: Schlumberger Technology CorporationInventors: Alexander Alexandrovich Burukhin, Anatoly Vladimirovich Matveev, Elena Mikhailovna Pershikova
-
Patent number: 7846877Abstract: Methods are provided for treating a portion of a well and include the steps of: (a) forming a treatment fluid comprising an aqueous solution, wherein the aqueous solution comprises: (i) water; (ii) a water-soluble polysaccharide; (iii) one or more water-soluble salts, wherein the one or more salts are selected and are in at least a sufficient concentration such that the water-salt solution has a density of at least 10 ppg; and (iv) urea; and (b) introducing the treatment fluid into the portion of the well. According to the inventions, the concentration of the urea in the water is in at least a sufficient concentration such that aqueous solution: (1) has a G? of at least 2 Pa, or (2) is filterable. According to the inventions, an identical aqueous solution except with less than the sufficient concentration of the urea would not satisfy the above conditions.Type: GrantFiled: May 20, 2009Date of Patent: December 7, 2010Assignee: Halliburton Energy Services, Inc.Inventor: Ian D. Robb
-
Patent number: 7842652Abstract: Exemplary embodiments of the cement compositions comprise water, a cement, and a fluid loss control additive, the fluid loss control additive comprising a graft copolymer. The graft copolymer comprises a backbone and at least four grafted monomers selected from the group consisting of 2-acrylamido-2-methylpropanesulfonic acid, acrylamide, acrylic acid, vinylphosphonic acid, diallyldimethylammonium chloride, and salts thereof. The backbone of the graft copolymer comprises a humic acid salt. Methods of cementing using exemplary embodiments of the cement compositions are also provided.Type: GrantFiled: June 30, 2009Date of Patent: November 30, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Sam Lewis, Jiten Chatterji, Bobby J. King, D. Chad Brenneis
-
Patent number: 7836954Abstract: Methods and compositions that include a method of cementing comprising providing a cement composition comprising water, a hydraulic cement, and an additive comprising at least one additive selected from the group consisting of a stevia retarder and inulin; placing the cement composition in a subterranean formation; and permitting the cement composition to set in the formation.Type: GrantFiled: December 19, 2008Date of Patent: November 23, 2010Assignee: Halliburton Energy Services. Inc.Inventors: Ronnie G. Morgan, William J. Caveny, Rickey L. Morgan
-
Patent number: 7833947Abstract: The invention discloses a method of delivering a first chemical component to a subterranean formation in a wellbore comprising: providing a fluid comprising a carrier fluid and at least two different sizes of solid particulate materials selected from a group consisting of: very large particles, large particles, medium particles, fine particles, very fine particles and ultrafine particles; wherein the packed volume fraction (PVF) of the two sizes of solid particulate materials exceeds 0.80, and wherein first type of solid particulate materials contains the first chemical component able to be released by a first downhole trigger and second type of solid particulate materials contains the first chemical component or a second chemical component able to be released by a second downhole trigger; pumping the fluid into the wellbore; allowing the first chemical component to be released by the first downhole trigger.Type: GrantFiled: June 25, 2009Date of Patent: November 16, 2010Assignee: Schlumberger Technology CorporationInventor: Gregory Kubala
-
Patent number: 7833945Abstract: Additives and treatment fluids with improved shale inhibition, and associated methods of use in subterranean operations, are provided. The additives and treatment fluids used generally comprise a shale-inhibiting component and one or more silicates.Type: GrantFiled: July 15, 2005Date of Patent: November 16, 2010Assignee: Halliburton Energy Services Inc.Inventors: Elaine Harrower, Arthur Youngson, Colin Temple
-
Publication number: 20100286000Abstract: A fracturing fluid, gravel pack fluid and/or frac pack fluid containing particles such as proppants, gravel and/.or sand, may contain an effective amount of a nano-sized particulate additive to fixate or reduce fines migration, where the particulate additive is an alkaline earth metal oxide, alkaline earth metal hydroxide, alkali metal oxides, alkali metal hydroxides transition metal oxides, transition metal hydroxides, post-transition metal oxides, post-transition metal hydroxides piezoelectric crystals and pyroelectric crystals. The nano-sized particulate additive is optionally bound to the particles with a coating agent such as an oil, alcohol, glycol, glycol ethers, ketones, terpenes, etc. The particle size of the magnesium oxide or other agent may be nanometer scale but may be a larger scale than nanometer but still relatively small, which scale may provide unique particle charges that help fixate the formation fines.Type: ApplicationFiled: May 10, 2010Publication date: November 11, 2010Applicant: Baker Hughes IncorporatedInventors: Tianping Huang, James B. Crews, John R. Willingham, James R. Pace, Christopher K. Belcher
-
Patent number: 7829508Abstract: The invention provides a method for treating a subterranean formation penetrated by a wellbore, the method comprising the steps of formulating a treatment fluid and introducing the treatment fluid through the wellbore. The treatment fluid comprises water; diutan; and a sufficient amount of salt to increase the density of the treatment fluid to at least 8.5 lb/gal, wherein at least 50% by weight of the salt is selected from the group consisting of: bromide salts, non-bromide salts having a higher salting-in effect than bromide according to the Hofmeister series as measured by the salt's effect on the cloud point of poly(ethylene oxide) that has a molecular weight of 4×106, and any combination in any proportion thereof. The invention also provides a treatment fluid for use in a subterranean formation penetrated by a wellbore, the treatment fluid comprising: water; diutan; and a sufficient amount of salt to increase the density of the treatment fluid to at least 8.Type: GrantFiled: August 18, 2009Date of Patent: November 9, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Richard W. Pauls, Ian D. Robb, Bobby J. Burns
-
Patent number: 7825053Abstract: Sintered, spherical composite pellets or particles comprising alumina fines, at least one of clay and bauxite and optionally a sintering aid, are described, along with a process for their manufacture. The use of such pellets in hydraulic fracturing of subterranean formations and in grinding is also described.Type: GrantFiled: January 25, 2010Date of Patent: November 2, 2010Assignee: Carbo Ceramics Inc.Inventors: Robert Duenckel, Mark Edmunds, Steve Canova, Benjamin Eldred, Brett Allen Wilson
-
Publication number: 20100267593Abstract: An aqueous slurry composition for use in industries such as petroleum and pipeline industries that includes: a particulate, an aqueous carrier fluid, a chemical compound that renders the particulate surface hydrophobic, and a small amount of an oil. The slurry is produced by rendering the surface of the particulate hydrophobic during or before the making of the slurry. The addition of the oil greatly enhances the aggregation potential of the hydrophobically modified particulates once placed in the well bore.Type: ApplicationFiled: April 25, 2008Publication date: October 21, 2010Applicant: Trican Well Service Ltd.Inventor: Kewei Zhang
-
Publication number: 20100263867Abstract: A downhole wellbore filtercake breaker is disclosed comprising one or more breaker chemicals (or activators thereof) capable of being activated with radiation to form one or more breaker reaction products which in turn are capable of reacting with the filtercake to chemically break down the filtercake. There is also disclosed a conventional reservoir drilling fluid modified to include an inactive, delayed, or sequestered breaker chemical or an activator thereof, wherein the breaker chemical (or activator) may be activated directly or indirectly by radiation, such as, microwave, visible, uV, soft x-ray, or other electromagnetic radiation. Also disclosed are methods for creating these filtercakes, and then breaking them via deploying a source of radiation that can be energized proximate to the filtercake. The breaker may be regenerated downhole by reaction with the filtercake breakdown products, and subjected again to a source of radiation to continue the breakdown of filtercake.Type: ApplicationFiled: April 20, 2010Publication date: October 21, 2010Inventors: Amy C. Horton, Robert L. Horton
-
Publication number: 20100252264Abstract: A method of treating a subterranean formation penetrated by a wellbore is accomplished by introducing a fluid into the wellbore containing a combined fluid loss additive and breaker. The combined fluid loss additive and breaker is formed from particles of an organic peroxide provided on a substrate. The particles are sized to facilitate fluid loss control. A treatment operation is carried out wherein a treatment fluid viscosified with a polymer is introduced into the formation through the wellbore.Type: ApplicationFiled: March 24, 2010Publication date: October 7, 2010Inventors: Richard D. Hutchins, Joseph A. Ayoub, Andrey Mirakyan, Micheal D. Parris, Stephen D. Mason, Ann M.W. Hoefer
-
Publication number: 20100252263Abstract: This invention refers to the oil and gas production industry and can be employed to enhance the productivity of wells by preventing the closure of fractures through application of proppant granular material during the formation fracturing operation.Type: ApplicationFiled: September 18, 2007Publication date: October 7, 2010Inventors: Jose Rafael Silva Ferrero, Elena Mikhaylovna Pershikova
-
Patent number: 7806183Abstract: Disclosed embodiments relate to well treatment fluids and methods that utilize nano-particles. Exemplary nano-particles are selected from the group consisting of particulate nano-silica, nano-alumina, nano-zinc oxide, nano-boron, nano-iron oxide, and combinations thereof. Embodiments also relate to methods of cementing that include the use of nano-particles. An exemplary method of cementing comprises introducing a cement composition into a subterranean formation, wherein the cement composition comprises cement, water and a particulate nano-silica. Embodiments also relate to use of nano-particles in drilling fluids, completion fluids, stimulation fluids, and well clean-up fluids.Type: GrantFiled: April 20, 2009Date of Patent: October 5, 2010Assignee: Halliburton Energy Services Inc.Inventors: Craig W. Roddy, Jiten Chatterji, Roger Cromwell
-
Publication number: 20100236783Abstract: An in situ extraction process for the recovery of hydrocarbons from a hydrocarbon bearing formation, including the steps of injecting a solvent consisting substantially of one of the group of H2S, Ammonia or COS into the formation to mobilize the hydrocarbons for extraction by forming a mobile in situ extraction fluid; and lifting the extraction fluid containing the mobilized hydrocarbons from the underground formation to the surface. In a further aspect an extraction method for a specific reservoir is provided including the steps of: establishing a minimum desired extraction rate, based on a value for the porosity, permeability and dead oil viscosity of the in situ bitumen in the specific reservoir, determining a desired minimum operating extraction temperature determining a desirable range of operating pressures identifying solvents predicted to deliver the operating extraction temperature within the range of operating pressures, and selecting a preferred solvent to use in the process.Type: ApplicationFiled: May 29, 2008Publication date: September 23, 2010Applicant: N-SOLV CORPORATIONInventors: John Nenniger, Stephen Dunn
-
Patent number: 7795186Abstract: Provided herein are methods and compositions for generating acids for use downhole, for example, to break fluid-loss control pills. The delayed-release acid breakers of the present invention comprise orthoesters and/or poly(orthoesters).Type: GrantFiled: June 22, 2009Date of Patent: September 14, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Rajesh K. Saini, Karen Savery, Bradley L. Todd
-
Patent number: 7795185Abstract: One example of the many methods provided includes a method comprising: providing a fluid loss control pill that comprises an aqueous base fluid, a cellulose derivative and a dual functional component, the fluid loss control pill having a first viscosity; allowing the dual functional component to interact with the cellulose derivative in the fluid loss control pill such that the viscosity of the fluid loss control pill increases to a second viscosity, the second viscosity being greater than the first viscosity; placing the fluid loss control pill in a subterranean formation; and allowing the dual functional component to interact with the cellulose derivative so as to reduce the second viscosity of the fluid loss control pill to a third viscosity, the third viscosity being less than the second viscosity.Type: GrantFiled: July 27, 2006Date of Patent: September 14, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Bradley L. Todd, Karen Savery
-
Patent number: 7789150Abstract: The present invention includes methods and compositions that include a latex, and at least one of a natural pozzolan or cement kiln dust. An embodiment includes a method comprising: placing a latex composition in a subterranean formation, wherein the latex composition comprises: latex, a component selected from the group consisting of a natural pozzolan, cement kiln dust, and a combination thereof, and water; and allowing the latex composition to set. Another embodiment of the present invention includes a latex composition comprising: latex, a component selected from the group consisting of a natural pozzolan, cement kiln dust, and a combination thereof.Type: GrantFiled: October 30, 2009Date of Patent: September 7, 2010Inventors: Craig W. Roddy, Jiten Chatterji, D. Chad Brenneis, Ronnie G. Morgan, Callie R. Hudgins
-
Publication number: 20100222243Abstract: Methods and compositions useful for subterranean formation treatments, such as hydraulic fracturing treatments and sand control that include porous materials. Such porous materials may be selectively configured porous material particles manufactured and/or treated with selected glazing materials, coating materials and/or penetrating materials to have desired strength and/or apparent density to fit particular downhole conditions for well treating such as hydraulic fracturing treatments and sand control treatments. Porous materials may also be employed in selected combinations to optimize fracture or sand control performance, and/or may be employed as relatively lightweight materials in liquid carbon dioxide-based well treatment systems.Type: ApplicationFiled: May 10, 2010Publication date: September 2, 2010Inventors: Christopher John Stephenson, Allan Ray Rickards, Harold Dean Brannon, D.V. Satyanarayana Gupta
-
Patent number: 7786049Abstract: The present invention relates to subterranean drilling operations, and more particularly, to drilling fluids that may be used to drill a well bore in a subterranean formation that may demonstrate improved shale inhibition and methods of using such drilling fluids in subterranean formations. One embodiment of the methods of the present invention provides a method of drilling a well bore in a subterranean formation comprising providing a drilling fluid comprising an aqueous-based fluid and a shale inhibiting component comprising a nanoparticle source; and placing the drilling fluid in the well bore in the subterranean formation. Another embodiment of the present invention provides a method of flocculation comprising providing a fluid comprising suspended particles, and adding a shale inhibiting component comprising a nanoparticle source to the fluid comprising suspended particles to form flocculated particles.Type: GrantFiled: February 11, 2004Date of Patent: August 31, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Colin Temple, Arthur Youngson
-
Patent number: 7784542Abstract: Methods and compositions are provided that may comprise cement, a nano-particle, latex, and water. An embodiment of the present invention includes a method of cementing in a subterranean formation. The method may include introducing a cement composition into the subterranean formation, wherein the cement composition comprises cement, a nano-particle, latex, and water. The method further may include allowing the cement composition to set in the subterranean formation. Another embodiment of the present invention include a cement composition. The cement composition may comprise cement, a nano-particle, latex, and water.Type: GrantFiled: May 27, 2009Date of Patent: August 31, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Craig W. Roddy, Jiten Chatterji, Roger Cromwell, Rahul Chandrakant Patil, Abhijit Tarafdar, Abhimanyu Deshpande, Christopher Lynn Gordon
-
Patent number: 7772166Abstract: Method for cementing a well comprising a hydraulic cement, water, carbon fiber and graphite are provided. The synergy achieved from combining fibers and particulates into the same sample results in a composite slurry with improved electrical properties and easy-to-optimize rheologies. Method for measuring resistivity through casing thanks to the nature of the cement composition is also provided.Type: GrantFiled: May 4, 2010Date of Patent: August 10, 2010Assignee: Schlumberger Technology CorporationInventors: Robert Williams, Emmanuel Therond, Terry Dammel, Mitchell Gentry
-
Patent number: 7772165Abstract: Viscoelastic compositions are disclosed herein containing an effective amount of one or more random or structurally defined polycationic quaternary ammonium compounds for controlling the viscoelasticity of the composition. In at least one aspect, the present technology provides polycationic quaternary ammonium compounds comprising dissymmetric bis-quaternary compounds. In another aspect, the present technology provides viscoelastic compositions comprising polycationic quaternary ammonium compounds that comprise dissymmetric bis-quaternary compounds. In yet another aspect, the present technology provides polycationic quaternary ammonium compounds comprising a carboxylate functional polycationic quaternary ammonium compound. Preferred viscoelastic compositions of the present technology maintain viscoelasticity at a temperature greater than about 80° C., preferably greater than about 100° C. or about 110° C.Type: GrantFiled: April 7, 2008Date of Patent: August 10, 2010Assignee: Stephan CompanyInventor: Paul Knox
-
Publication number: 20100197532Abstract: Method and system for making a spherical proppant having a selected grade from a naturally occurring mined mineral having a hardness of over 6.0 Mohs. The method and system involves preprocessing the mineral mechanically into a semi-dry feedstock comprising a mass of particles with initial sphericity values generally less than 0.60; subjecting the semi-dry feedstock to an aggressive abrasive attrition operation for a process time; and, controlling the process time to a value wherein the particles of the feedstock are converted to final processed particles having a sphericity greater than 0.60 by increasing the sphericity of the feedstock particles by at least 0.10. In addition, the processed particles are screened to obtain a proppant having a selected grade.Type: ApplicationFiled: November 20, 2009Publication date: August 5, 2010Inventors: David John Rush, Juan Leal Gonzalez
-
Publication number: 20100197528Abstract: A method of treating a formation that includes emplacing an oxidizing breaker fluid into a region of the formation occupied by a gel; and allowing sufficient time for the oxidizing breaker fluid to degrade the gel is disclosed.Type: ApplicationFiled: June 27, 2008Publication date: August 5, 2010Applicant: M-I L.L.C.Inventors: Mark Sanders, David Antony Ballard
-
Publication number: 20100186956Abstract: Methods for servicing well bores with hardenable resin compositions are provided. In one embodiment, a method of servicing a well bore includes providing a hydrophobic well bore servicing composition comprising a liquid hardenable resin, a hardening agent, and a weighting material selected to impart a desired first density to the well bore servicing composition; introducing the well bore servicing composition into a well bore comprising a well bore fluid having a second density; allowing the well bore servicing composition to migrate through the well bore fluid to a desired location in the well bore based at least in part upon a difference between the first and second densities; and allowing the liquid hardenable resin to at least partially harden to form a well bore plug at the desired location in the well bore.Type: ApplicationFiled: January 27, 2009Publication date: July 29, 2010Inventors: Rickey Lynn Morgan, D. Chad Brenneis, Jeffery Karcher
-
Patent number: 7762329Abstract: Methods for servicing well bores with hardenable resin compositions are provided. In one embodiment, a method of servicing a well bore includes providing a hydrophobic well bore servicing composition comprising a liquid hardenable resin, a hardening agent, and a weighting material selected to impart a desired first density to the well bore servicing composition; introducing the well bore servicing composition into a well bore comprising a well bore fluid having a second density; allowing the well bore servicing composition to migrate through the well bore fluid to a desired location in the well bore based at least in part upon a difference between the first and second densities; and allowing the liquid hardenable resin to at least partially harden to form a well bore plug at the desired location in the well bore.Type: GrantFiled: January 27, 2009Date of Patent: July 27, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Rickey Lynn Morgan, D. Chad Brenneis, Jeffery Karcher
-
Patent number: 7757766Abstract: Of the many compositions and methods provided herein, an example method includes a method of treating a subterranean formation that comprises combining components comprising water and a density-matched suspension to prepare a treatment fluid, wherein the density-matched suspension comprises a suspending liquid and a solid particle suspended in the suspending liquid, and introducing the treatment fluid into a well bore. An example composition includes a suspension that comprises a suspending liquid comprising a hydrophobic liquid, wherein the hydrophobic liquid hydrolyzes when placed in contact with an aqueous fluid to form hydrophilic products, and a solid particle suspended in the suspending liquid, wherein the suspension is a density-matched suspension.Type: GrantFiled: November 19, 2008Date of Patent: July 20, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Sam Lewis, Michael Szymanski, Christopher Gordon
-
Patent number: 7754659Abstract: A composite proppant having a proppant substrate such as a porous ceramic or silica sand coated with magnetic particles and a method of propping a subterranean formation using a composition consisting essentially of the composite proppant.Type: GrantFiled: May 15, 2007Date of Patent: July 13, 2010Assignee: Georgia-Pacific Chemicals LLCInventors: Richard Rediger, Michael J. Aron, James Wright
-
Patent number: 7749945Abstract: An invert emulsion fluid system and a method of performing petroleum recovery operations using an invert emulsion fluid system.Type: GrantFiled: September 18, 2007Date of Patent: July 6, 2010Assignee: Baker Hughes IncorporatedInventor: Tao Xiang
-
Publication number: 20100167965Abstract: Methods and compositions for forming a hydraulic fracture are disclosed herein. The methods and compositions make use of novel amphiphobic proppants. The amphiphobic properties of the disclosed proppant compositions provide several advantages over existing solutions. The hydrophobic nature of the proppant enhances recovery of fracture fluid from the fracture as well as prevents liquid build-up with the fracture. Additionally, the lipophobic nature of the proppant may enhance production of hydrocarbons from the fracture.Type: ApplicationFiled: December 17, 2009Publication date: July 1, 2010Applicant: BP CORPORATION NORTH AMERICA INC.Inventors: Herbert M. Sebastian, Mark D. Glover, Philip S. Smith
-
Publication number: 20100167962Abstract: A treatment fluid and system are disclosed for cleaning borehole filtercake using the treatment fluid, wherein the filtercake contains reservoir drilling fluid (RDF) solids. The treatment fluid comprises a fluoride source providing a 1.2 to 5 molar fluoride concentration, and another acid or combination of acids to provide a pH between 1.8 and 5. The treatment fluid is balanced for a dissolving power high enough to have significant dissolution of the filtercake, but low enough for even propagation to avoid premature leak-off.Type: ApplicationFiled: March 10, 2010Publication date: July 1, 2010Applicant: SCHLUMBERGER TECHNOLOGY CORPORATIONInventors: Laurent Pirolli, Mehmet Parlar
-
Patent number: 7743830Abstract: A process is described for replacing at least a portion of the liquid within the annular volume of a casing system within a wellbore with a second liquid. The second liquid is preselected to provide a measure of control of the pressure within the annular volume as the fluid within the volume is being heated.Type: GrantFiled: October 10, 2008Date of Patent: June 29, 2010Assignees: Chevron U.S.A. Inc., Los Alamos National SecurityInventors: Robert E. Hermes, Manuel E. Gonzalez, Brian C. Llewellyn, James B. Bloys
-
Patent number: 7740066Abstract: The present invention includes methods and compositions that include a composition comprising a high alumina cement; a salt comprising at least one salt selected from the group consisting of an acidic salt, a neutral salt, and a low basicity salt; and a swellable clay; and methods of using that composition in subterranean formations.Type: GrantFiled: January 25, 2008Date of Patent: June 22, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Ying Xu, B. Raghava Reddy, Rickey Lynn Morgan
-
Patent number: 7740068Abstract: A method for treating a subterranean formation penetrated by a wellbore that includes injecting an alkali silicate into the wellbore; injecting a solid micronized silicate-precipitating agent into the wellbore; and allowing the alkali silicate and the solid micronized silicate-precipitating agent to react to form a silicate gel is disclosed.Type: GrantFiled: January 24, 2008Date of Patent: June 22, 2010Assignee: M-I LLCInventor: David Antony Ballard
-
Patent number: 7741252Abstract: An oilfield treatment method is given that uses fluids that contain surfactants used as foamers and/or viscosifiers such that the fluids pass the Alberta Energy and Utilities Board Directive 27 requirements for low toxicity to certain bioluminescent bacteria. Such fluids may be used in oilfield treatments, for example drilling and stimulation, near fresh water aquifers. The surfactants are certain non-ionic surfactants that are not aromatic, or certain amphoteric surfactants (that can be neutral), or certain zwitterionic surfactants, (in which both positive and negative charges are present in a single molecule so that the whole molecule is neutral).Type: GrantFiled: December 11, 2006Date of Patent: June 22, 2010Assignee: Schlumberger Technology CorporationInventors: Yiyan Chen, Richard Marcinew, Carlos Abad
-
Publication number: 20100152070Abstract: An engineered composition for reducing lost circulation in a well includes a mixture of coarse, medium and optional fine particles, and a blend of long fibers and short fibers. The long fibers are rigid and the short fibers are flexible. The long fibers form a tridimensional mat or net in the lost-circulation pathway that traps the mixture of particles and short flexible fibers to form a mudcake. The mixture of particles and blend of fibers may be added to water-based and oil-based drilling fluids. The composition, size, and concentration of each component of the mixture of particles and blend of fibers may be fine-tuned for each application.Type: ApplicationFiled: December 7, 2009Publication date: June 17, 2010Inventor: Jaleh Ghassemzadeh
-
Publication number: 20100140139Abstract: A method of absorbing gases into a liquid comprising providing a stream of at least one desirable gas and at least one undesirable gas, exposing the gas stream to a liquid, so that the liquid absorbs more of the desirable gas than the undesirable gas, and releasing the liquid and gas mixture into an underground formation.Type: ApplicationFiled: February 14, 2008Publication date: June 10, 2010Inventors: Zaida Diaz, Raymond Nicholas French, Dean Chien Wang, Geoffrey Matthew Warren
-
Patent number: 7730948Abstract: Methods for reducing wear in pumping components during fracturing operations. A coated proppant is used that causes less wear on the pumping components as the proppant is pumped into the wellbore. The proppant coating consists of a substrate having a coating thereupon which eliminates sharp edges on the substrate and functions as a lubricant to materially reduce mechanical erosion of the pumping components. The proppant substrate may consist of any of a number of materials, including sand, ceramic, resin coated sand, or resin coated ceramic particle. The coating preferably comprises one or more layers of one or more of the following materials (or the coating having low friction coefficients is part of a mixture of the coating): antimony trioxide, bismuth, boric acid, calcium barium fluoride, copper, graphite, indium, fluoropolymers (FTFE), lead oxide, lead sulfide, molybdenum disulfide, niobium dielenide, polytetrafluoroethylene, silver, tin, or tungsten disulfideor zinc oxide.Type: GrantFiled: March 7, 2006Date of Patent: June 8, 2010Assignee: Baker Hughes IncorporatedInventors: Rudolphus Johannes Cornelis de Grood, Perry D. Baycroft
-
Patent number: 7732381Abstract: The invention provides a cement slurry composition for cementing a well comprising a hydraulic cement, water, carbon fiber and graphite. Compositions of the current invention combine the benefits obtained from adding carbon fiber and graphite to the cement composite. The synergy achieved from combining fibers and particulates into the same sample results in a composite slurry with improved electrical properties and easy-to-optimize rheologies.Type: GrantFiled: November 30, 2007Date of Patent: June 8, 2010Assignee: Schlumberger Technology CorporationInventors: Robert Williams, Emmanuel Therond, Terry Dammel, Mitchell Gentry