DEVICE FOR SEPARATION OF MULTICOMPONENT MEDIUM AND NOZZLE CHANNEL FOR IT Russian patent published in 2015 - IPC F25J3/00 

Abstract RU 2538992 C1

FIELD: machine building.

SUBSTANCE: separation device comprises a premix chamber with the device of twisting of medium flow installed in it, the nozzle channel connected with the premix chamber for separation, and the unit for separation of droplets and/or solid particles. The separation channel containing convergent, divergent, and located between them cylindrical sections, differing by that the cylindrical section has the length of the generatrix greater than 0.1D, where D - diameter of the cylindrical section, meanwhile the divergent section is designed with a ring ledge as a step the plane of which is perpendicular to the channel axis.

EFFECT: decrease of pulsation level in a flow and, as a result, increase of efficiency of separation and reduction of losses of total pressure of medium flow.

8 cl, 2 dwg

Similar patents RU2538992C1

Title Year Author Number
DEVICE FOR FLOW SEPARATION OF MULTI-COMPONENT MEDIUM 2022
  • Lachugin Ivan Georgievich
  • Shevtsov Aleksandr Petrovich
  • Khokhlov Vladimir Yurevich
  • Ilichev Vitalij Aleksandrovich
  • Chernichenko Vladimir Viktorovich
  • Bazykin Denis Aleksandrovich
  • Pupynin Andrej Vladimirovich
RU2799745C1
DEVICE FOR SEPARATION OF MULTICOMPONENT MEDIUM 2020
  • Shevtsov Aleksandr Petrovich
  • Gritsenko Vladimir Dmitrievich
  • Pupynin Andrej Vladimirovich
  • Orekhov Evgenij Aleksandrovich
  • Slugin Pavel Petrovich
RU2731448C1
DEVICE FOR SEPARATION OF MULTICOMPONENT MEDIUM 2020
  • Shevtsov Aleksandr Petrovich
  • Gritsenko Vladimir Dmitrievich
  • Pupynin Andrej Vladimirovich
  • Orekhov Evgenij Aleksandrovich
  • Chernichenko Vladimir Viktorovich
RU2738516C1
METHOD OF SEPARATING A MULTICOMPONENT MEDIUM 2020
  • Shevtsov Aleksandr Petrovich
  • Gritsenko Vladimir Dmitrievich
  • Chernichenko Vladimir Viktorovich
  • Chagin Sergej Borisovich
  • Slugin Pavel Petrovich
RU2736135C1
DEVICE FOR FLOW SEPARATION OF MULTI-COMPONENT MEDIUM 2022
  • Lachugin Ivan Georgievich
  • Shevtsov Aleksandr Petrovich
  • Khokhlov Vladimir Yurevich
  • Ilichev Vitalij Aleksandrovich
  • Chernichenko Vladimir Viktorovich
  • Bazykin Denis Aleksandrovich
  • Pupynin Andrej Vladimirovich
RU2799746C1
DEVICE FOR SEPARATION OF MULTICOMPONENT MEDIUM (OPTIONS) 2021
  • Lachugin Ivan Georgievich
  • Shevtsov Aleksandr Petrovich
  • Khokhlov Vladimir Yurevich
  • Ilichev Vitalij Aleksandrovich
  • Bazykin Denis Aleksandrovich
  • Pupynin Andrej Vladimirovich
RU2782072C1
METHOD FOR SEPARATION OF A FLOW OF A MULTI-COMPONENT MEDIUM (OPTIONS) 2021
  • Lachugin Ivan Georgievich
  • Shevtsov Aleksandr Petrovich
  • Khokhlov Vladimir Yurevich
  • Ilichev Vitalij Aleksandrovich
  • Bazykin Denis Aleksandrovich
  • Pupynin Andrej Vladimirovich
RU2773182C1
DEVICE FOR SEPARATION OF MULTICOMPONENT MEDIUM 2022
  • Lachugin Ivan Georgievich
  • Shevtsov Aleksandr Petrovich
  • Slugin Pavel Petrovich
  • Khokhlov Vladimir Yurevich
  • Ilichev Vitalij Aleksandrovich
  • Bazykin Denis Aleksandrovich
  • Chernichenko Vladimir Viktorovich
  • Pupynin Andrej Vladimirovich
RU2790120C1
METHOD FOR SEPARATION OF THE FLOW OF A MULTICOMPONENT MEDIUM 2022
  • Lachugin Ivan Georgievich
  • Shevtsov Aleksandr Petrovich
  • Slugin Pavel Petrovich
  • Khokhlov Vladimir Yurevich
  • Ilichev Vitalij Aleksandrovich
  • Bazykin Denis Aleksandrovich
  • Chernichenko Vladimir Viktorovich
  • Pupynin Andrej Vladimirovich
RU2790121C1
METHOD FOR SEPARATION OF FLOW OF A MULTICOMPONENT MEDIUM 2022
  • Lachugin Ivan Georgievich
  • Shevtsov Aleksandr Petrovich
  • Khokhlov Vladimir Yurevich
  • Ilichev Vitalij Aleksandrovich
  • Bazykin Denis Aleksandrovich
  • Chernichenko Vladimir Viktorovich
  • Pupynin Andrej Vladimirovich
RU2796850C1

RU 2 538 992 C1

Authors

Bagirov Lev Arkad'Evich

Dmitriev Leonard Makarovich

Fejgin Vladimir Isaakovich

Imaev Salavat Zajnetdinovich

Dates

2015-01-10Published

2013-10-18Filed