Patents by Inventor Bernhard Rudolf Lungwitz

Bernhard Rudolf Lungwitz has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11008844
    Abstract: A method of stimulating the inflow of oil and/or gas from the wellbore, in particular, a hydraulic fracturing method, is disclosed. The method of hydraulic fracturing comprises the stages: injecting a slug of a proppant-free fluid through the well into a formation for hydraulic fracture creation and propagation; injecting a slug of proppant-laden slurry into the formation to create a proppant pack in the hydraulic fracture; injecting a slug of slurry that contains a fluid and the polyelectrolyte complex-based proppant aggregates to create permeable channels in the near-wellbore area of the hydraulic fracture; injecting a slug of a displacement fluid into the well. This sequence of operations allows avoiding the proppant slurry overdisplacement deep into the hydraulic fracture, maintaining high fracture conductivity, and increasing the well productivity.
    Type: Grant
    Filed: November 2, 2015
    Date of Patent: May 18, 2021
    Assignee: Schlumberger Technology Corporation
    Inventors: Chad Kraemer, Fedor Nikolaevich Litvinets, Sergey Vladimirovich Semenov, Mohan Kanaka Raju Panga, Maxim Pavlovich Yutkin, Ksenia Mikhailovna Kaprielova, Sergey Sergeevich Skiba, Bernhard Rudolf Lungwitz, Denis Viktorovich Bannikov
  • Patent number: 10421897
    Abstract: This method is designed to facilitate the well treatment with the possibilities for non-uniform/heterogeneous proppant placement in the extended and branched fractures produced by hydraulic fracturing. The essence of the method is to inject a proppant-bearing gel into the wellbore drilled into a productive formation. The low-viscosity fracturing fluid is injected into the wellbore together with the gel fluid (simultaneously or in turns). The method also provides for the injection of gas into the proppant-bearing gel and/or the low-viscosity fluid. The gas can be injected upstream of the junction point, at the junction point, or downstream of the junction point of the flows of the proppant-bearing gel and the low-viscosity fluid. The method further provides for the division of the gel fluid into the separate agglomerates with their subsequent injection into the fractures in the subterranean formation to form the proppant structures in the fracture.
    Type: Grant
    Filed: November 30, 2015
    Date of Patent: September 24, 2019
    Assignee: SCHLUMBERGER TECHNOLOGY CORPORATION
    Inventors: Sergey Sergeevich Skiba, Kira Vladimirovna Yudina, Maxim Pavlovich Yutkin, Bernhard Rudolf Lungwitz, Andrey Vladimirovich Yakovlev, Mohan Kanaka Raju Panga, Konstantin Viktorovich Vidma, Alexey Vladimirovich Alekseev, Chad Kraemer, Geza Horvath Szabo
  • Patent number: 10369724
    Abstract: A method for forming spheroidal particles including inducing flow of a slurry of particles and a reactant through one or more orifices, detaching an amount of the slurry from the slurry flow following exit from the one or more orifices, the detached amount forming a slurry body, forming the slurry body into a spheroidal shape, contacting the spheroidally shaped slurry body with a coagulation solution to form a stabilized spheroidal particle and drying and/or sintering the stabilized spheroidal particle.
    Type: Grant
    Filed: November 19, 2015
    Date of Patent: August 6, 2019
    Assignee: Schlumberger Technology Corporation
    Inventors: Jose Alberto Ortega Andrade, Jiangshui Huang, Bernhard Rudolf Lungwitz
  • Publication number: 20180362838
    Abstract: This method is designed to facilitate the well treatment with the possibilities for non-uniform/heterogeneous proppant placement in the extended and branched fractures produced by hydraulic fracturing. The essence of the method is to inject a proppant-bearing gel into the wellbore drilled into a productive formation. The low-viscosity fracturing fluid is injected into the wellbore together with the gel fluid (simultaneously or in turns). The method also provides for the injection of gas into the proppant-bearing gel and/or the low-viscosity fluid. The gas can be injected upstream of the junction point, at the junction point, or downstream of the junction point of the flows of the proppant-bearing gel and the low-viscosity fluid. The method further provides for the division of the gel fluid into the separate agglomerates with their subsequent injection into the fractures in the subterranean formation to form the proppant structures in the fracture.
    Type: Application
    Filed: November 30, 2015
    Publication date: December 20, 2018
    Inventors: Sergey Sergeevich SKIBA, Kira Vladimirovna YUDINA, Maxim Pavlovich YUTKIN, Bernhard Rudolf LUNGWITZ, Andrey Vladimirovich YAKOVLEV, Mohan Kanaka Raju PANGA, Konstantin Viktorovich VIDMA, Alexey Vladimirovich ALEKSEEV, Chad KRAEMER, Geza HORVATH SZABO
  • Publication number: 20180238161
    Abstract: A method of stimulating the inflow of oil and/or gas from the wellbore, in particular, a hydraulic fracturing method, is disclosed. The method of hydraulic fracturing comprises the stages: injecting a slug of a proppant-free fluid through the well into a formation for hydraulic fracture creation and propagation; injecting a slug of proppant-laden slurry into the formation to create a proppant pack in the hydraulic fracture; injecting a slug of slurry that contains a fluid and the polyelectrolyte complex-based proppant aggregates to create permeable channels in the near-wellbore area of the hydraulic fracture; injecting a slug of a displacement fluid into the well. This sequence of operations allows avoiding the proppant slurry overdisplacement deep into the hydraulic fracture, maintaining high fracture conductivity, and increasing the well productivity.
    Type: Application
    Filed: November 2, 2015
    Publication date: August 23, 2018
    Inventors: Chad KRAMER, Fedor Nikolaevich LITVINETS, Sergey Vladimirovich SEMENOV, Mohan Kanaka Raju PANGA, Maxim Pavlovich YUTKIN, Ksenia Mikhailovna KAPRIELOVA, Sergey Sergeevich SKIBA, Bernhard Rudolf LUNGWITZ, Denis Viktorovich BANNIKOV
  • Publication number: 20180223176
    Abstract: A method for forming particles having a ridge portion includes inducing flow of a slurry of particles and a reactant through one or more orifices, detaching an amount of the slurry from the slurry flow following exit from the one or more orifices, the detached amount forming a slurry body, forming the slurry body into a particle shape, contacting the particle shaped slurry body with a coagulation solution to form a stabilized particle having the ridge portion, and drying and/or sintering the particle having the ridge portion.
    Type: Application
    Filed: April 2, 2018
    Publication date: August 9, 2018
    Inventors: Jiangshui Huang, Jose Alberto Ortega Andrade, Bernhard Rudolf Lungwitz
  • Publication number: 20180135399
    Abstract: According to the claimed method, fracturing fluid is injected into a well containing a plurality of perforated intervals to create, and facilitate the propagation of, a hydraulic fracture in at least one of the perforated intervals; then, the suspension containing insoluble degradable material, oppositely charged polyelectrolytes and/or their precursors is injected into the well; at the same time, a degradable viscous phase, non-miscible with fracturing fluid, is formed from the oppositely charged polyelectrolytes and/or their precursors; a degradable plug is formed in at least one of the perforated intervals, fracture, or wellbore; diversion of the fracturing fluid flow to the next perforated interval is provided with subsequent plug degradation in at least one of the perforated intervals, fracture, or wellbore within the required time.
    Type: Application
    Filed: April 3, 2015
    Publication date: May 17, 2018
    Inventors: Sergey Vladimirovich SEMENOV, Chad KRAEMER, Mohan Kanaka Raju PANGA, Maxim Pavlovich YUTKIN, Ksenia Mikhailovna KAPRIELOVA, Sergey Sergeevich SKIBA, Bernhard Rudolf LUNGWITZ, Denis Viktorovich BANNIKOV
  • Patent number: 9932519
    Abstract: A method for forming particles having a ridge portion includes inducing flow of a slurry of particles and a reactant through one or more orifices, detaching an amount of the slurry from the slurry flow following exit from the one or more orifices, the detached amount forming a slurry body, forming the slurry body into a particle shape, contacting the particle shaped slurry body with a coagulation solution to form a stabilized particle having the ridge portion, and drying and/or sintering the particle having the ridge portion.
    Type: Grant
    Filed: November 19, 2015
    Date of Patent: April 3, 2018
    Assignee: Schlumberger Technology Corporation
    Inventors: Jiangshui Huang, Jose Alberto Ortega Andrade, Bernhard Rudolf Lungwitz
  • Patent number: 9896618
    Abstract: A method for forming rod-shaped particles includes inducing flow of a slurry of particles and a reactant through one or more orifices and into a coagulation solution, wherein the slurry exiting the one or more orifices is a continuous uninterrupted stream, coagulating the reactant in the coagulation solution to form stabilized rods, drying the stabilized rods and reducing a length of the dried stabilized rods.
    Type: Grant
    Filed: November 19, 2015
    Date of Patent: February 20, 2018
    Assignee: Schlumberger Technology Corporation
    Inventors: Jiangshui Huang, Jose Alberto Ortega Andrade, Bernhard Rudolf Lungwitz
  • Publication number: 20170144330
    Abstract: A method for forming spheroidal particles including inducing flow of a slurry of particles and a reactant through one or more orifices, detaching an amount of the slurry from the slurry flow following exit from the one or more orifices, the detached amount forming a slurry body, forming the slurry body into a spheroidal shape, contacting the spheroidally shaped slurry body with a coagulation solution to form a stabilized spheroidal particle and drying and/or sintering the stabilized spheroidal particle.
    Type: Application
    Filed: November 19, 2015
    Publication date: May 25, 2017
    Inventors: Jose Alberto Ortega Andrade, Jiangshui Huang, Bernhard Rudolf Lungwitz
  • Publication number: 20170145298
    Abstract: A method for forming rod-shaped particles includes inducing flow of a slurry of particles and a reactant through one or more orifices and into a coagulation solution, wherein the slurry exiting the one or more orifices is a continuous uninterrupted stream, coagulating the reactant in the coagulation solution to form stabilized rods, drying the stabilized rods and reducing a length of the dried stabilized rods.
    Type: Application
    Filed: November 19, 2015
    Publication date: May 25, 2017
    Inventors: Jiangshui Huang, Jose Alberto Ortega Andrade, Bernhard Rudolf Lungwitz
  • Publication number: 20170145297
    Abstract: A method for forming particles having a ridge portion includes inducing flow of a slurry of particles and a reactant through one or more orifices, detaching an amount of the slurry from the slurry flow following exit from the one or more orifices, the detached amount forming a slurry body, forming the slurry body into a particle shape, contacting the particle shaped slurry body with a coagulation solution to form a stabilized particle having the ridge portion, and drying and/or sintering the particle having the ridge portion.
    Type: Application
    Filed: November 19, 2015
    Publication date: May 25, 2017
    Inventors: Jiangshui Huang, Jose Alberto Ortega Andrade, Bernhard Rudolf Lungwitz