Patents by Inventor Vladimir Viktorovich BEZLEPKIN

Vladimir Viktorovich BEZLEPKIN 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: 11488733
    Abstract: The method and system for bringing a nuclear power plant to a safe state after extreme effect reduce the temperature of the coolant after extreme effect. The system includes inlet and outlet pipelines, a steam generator, a storage tank and a heat exchanger, a separation tank above the steam generator and connected by two pipelines to a storage tank, a pump, a control unit. The method involves filling the system with coolant, feeding the coolant from the steam generator through the inlet pipeline and the storage tank to the heat exchanger, and feeding the coolant through the outlet pipeline back to the steam generator, wherein the pump is turned on for feeding the coolant and subsequent operation of the system. The first air valve is used to maintain pressure in the system, ensuring the absence of boiling of the coolant.
    Type: Grant
    Filed: December 28, 2018
    Date of Patent: November 1, 2022
    Assignees: JOINT-STOCK COMPANY SCIENTIFIC RESEARCH AND DESIGN INSTITUTE FOR ENERGY TECHNOLOGIES ATOMPROEKT, JOINT STOCK COMPANY “SCIENCE AND INNOVATIONS”
    Inventors: Vladimir Viktorovich Bezlepkin, Maksim Vladimirovich Gavrilov, Evgenij Aleksandrovich Tretyakov, Vyacheslav Borisovich Kozlov, Evgenij Pavlovich Obrazcov, Evgenij Igorevich Mezenin, Anton Eduardovich Shirvanyanc, Darya Robertovna Altbregen, Lajne Vyajnovna Nosankova, Evgenij Yurevich Egorov, Anzhela Vasilevna Lukina, Dmitrij Yakovlevich Vibe
  • Publication number: 20210335511
    Abstract: The method and system for bringing a nuclear power plant to a safe state after extreme effect reduce the temperature of the coolant after extreme effect. The system includes inlet and outlet pipelines, a steam generator, a storage tank and a heat exchanger, a separation tank above the steam generator and connected by two pipelines to a storage tank, a pump, a control unit. The method involves filling the system with coolant, feeding the coolant from the steam generator through the inlet pipeline and the storage tank to the heat exchanger, and feeding the coolant through the outlet pipeline back to the steam generator, wherein the pump is turned on for feeding the coolant and subsequent operation of the system. The first air valve is used to maintain pressure in the system, ensuring the absence of boiling of the coolant.
    Type: Application
    Filed: December 28, 2018
    Publication date: October 28, 2021
    Inventors: Vladimir Viktorovich BEZLEPKIN, Maksim Vladimirovich GAVRILOV, Evgenij Aleksandrovich TRETYAKOV, Vyacheslav Borisovich KOZLOV, Evgenij Pavlovich OBRAZCOV, Evgenij Igorevich MEZENIN, Anton Eduardovich SHIRVANYANC, Darya Robertovna ALTBREGEN, Lajne Vyajnovna NOSANKOVA, Evgenij Yurevich EGOROV, Anzhela Vasilevna LUKINA, Dmitrij Yakovlevich VIBE
  • Publication number: 20210151211
    Abstract: An active strainer contains a housing with a cover, a base and side surfaces made in the form of filtering elements, pipes with channels fixed at one end at the central vertical axis of the strainer and configured to supply purified fluid from the central part of the strainer to the filtering elements from the other end of the pipe through channels, wherein the strainer housing is made of two parts, an upper and a lower one, each part is equipped with at least one filtering element, the turbine is installed between the upper and lower part and configured to rotate during the fluid flow passage through it, the turbine shaft is connected with the pipes, which are capable of sampling the purified fluid from the strainer housing during rotation of the turbine.
    Type: Application
    Filed: December 29, 2017
    Publication date: May 20, 2021
    Inventors: Vladimir Viktorovich BEZLEPKIN, Aleksey Ivanovich KURCHEVSKIY, Vladimir Olegovich KUKHTEVICH, Leonid Aleksandrovich MATYUSHEV, Andrey Gennadievich MITRYUKHIN
  • Patent number: 10718510
    Abstract: The group of inventions refers to heat exchange machinery. The device includes a tank with an outlet fitting and a steam source, a deaerator column with a cover and water inlet and vapor blowdown fittings located on the same, containing lower and upper deaeration sections. Each section includes pressure and distribution trays forming a jet chamber in the space between them, and random element packing. Deaeration sections are separated by a hydraulic seal formed by the edge of the upper section pressure tray and the projection connected to the deaerator column cover. The water inlet and vapor blowdown fittings are located inside the hydraulic seal projection with openings in it. The lower edges of the openings are located higher than the upper edge of the hydraulic seal by a value exceeding the sum of overflow height of the coolant over the edge and hydraulic resistance of the hydraulic seal channel.
    Type: Grant
    Filed: July 24, 2015
    Date of Patent: July 21, 2020
    Assignee: Joint-Stock Company Scientific Research And Design Institute For Energy Technologies Atomproekt
    Inventors: Vladimir Viktorovich Bezlepkin, Anzhella Gennadievna Amelyushina, Lidiya Dmitriyevna Litvinenko, Vladimir Olegovich Kukhtevich, Andrey Gennadievich Mitryukhin, Mikhail Sergeyevich Ustinov, Aleksey Ivanovich Kurchevskiy
  • Publication number: 20170211804
    Abstract: The group of inventions refers to heat exchange machinery. The device includes a tank with an outlet fitting and a steam source, a deaerator column with a cover and water inlet and vapor blowdown fittings located on the same, containing lower and upper deaeration sections. Each section includes pressure and distribution trays forming a jet chamber in the space between them, and random element packing. Deaeration sections are separated by a hydraulic seal formed by the edge of the upper section pressure tray and the projection connected to the deaerator column cover. The water inlet and vapor blowdown fittings are located inside the hydraulic seal projection with openings in it. The lower edges of the openings are located higher than the upper edge of the hydraulic seal by a value exceeding the sum of overflow height of the coolant over the edge and hydraulic resistance of the hydraulic seal channel.
    Type: Application
    Filed: July 24, 2015
    Publication date: July 27, 2017
    Inventors: Vladimir Viktorovich BEZLEPKIN, Anzhella Gennadievna AMELYUSHINA, Lidiya Dmitriyevna LITVINENKO, Vladimir Olegovich KUKHTEVICH, Andrey Gennadievich MITRYUKHIN, Mikhail Sergeyevich USTINOV, Aleksey Ivanovich KURCHEVSKIY