INSTALLATION FOR ASSESSING THE TENDENCY OF JET ENGINE FUELS TO FORM COKE DEPOSITS Russian patent published in 2022 - IPC G01N33/28 

Abstract RU 2774646 C1

FIELD: testing equipment.

SUBSTANCE: invention relates to laboratory methods for assessing the tendency of fuels to form coke deposits of motor fuels and can be used in petrochemical, automotive and other industries. The installation contains a flow tank, a flow stimulator, a pre-cleaning filter, a control unit with a control filter, sensors for monitoring fuel temperature, a pressure drop sensor on the control filter, a fuel pressure regulator, a drain tank, electrically controlled shut-off valves connected to a software control unit, a second control unit identical to the first with identical control and measuring devices, connected in series-parallel via shut-off valves to the first control unit and the fuel nitriding module. The nitriding module is connected to the fuel line between the flow tank and the flow stimulator, at the inlet of which a dissolved oxygen concentration sensor is installed.

EFFECT: increase in the accuracy and reliability of test results while simultaneously approaching the operating conditions of jet engine fuels.

1 cl, 1 dwg

Similar patents RU2774646C1

Title Year Author Number
DEVICE FOR DETERMINING THERMAL-OXIDATIVE STABILITY OF FUELS UNDER DYNAMIC CONDITIONS 2016
  • Astafev Valerij Aleksandrovich
  • Anisimov Denis Igorevich
  • Shatalov Konstantin Vasilevich
RU2609861C1
UNIT TO DETERMINE FUEL THERMAL-OXIDATIVE STABILITY IN DYNAMIC CONDITIONS 2011
  • Astaf'Ev Valerij Aleksandrovich
  • Kishkilev Georgij Nikolaevich
  • Nikiforov Nikolaj Petrovich
RU2453839C1
INSTALLATION FOR ASSESSMENT OF PROPENSITY OF DIESEL FUELS TO FORMATION OF DEPOSITIONS ON NOZZLE PARTS 2022
  • Ukhanov Denis Aleksandrovich
  • Glazunov Ilya Dmitrievich
  • Shatanov Konstantin Vasilevich
  • Krikun Igor Ivanovich
  • Alibekov Rufat Ismailovich
RU2785434C1
INSTALLATION FOR ASSESSING THE TENDENCY OF DIESEL FUELS TO FORM DEPOSITS ON THE INJECTING NOZZLE AND THE HIGH-PRESSURE FUEL LINE 2023
  • Ukhanov Denis Aleksandrovich
  • Glazunov Ilya Dmitrievich
  • Shatalov Konstantin Vasilevich
  • Krikun Igor Ivanovich
  • Alibekov Rufat Ismailovich
  • Goltsev Yurij Anatolevich
RU2808091C1
PLANT FOR DETERMINATION OF JET FUEL THERMAL OXIDATION STABILITY 0
  • Seregin Evgenij Petrovich
  • Gladkikh Vladlen Alekseevich
  • Astafev Valerij Aleksandrovich
  • Gorodetskij Vladimir Gennadievich
  • Sashevskij Viktor Vasilevich
  • Golenev Nikolaj Petrovich
  • Zhuravlev Vladimir Alekseevich
  • Makarov Yurij Petrovich
  • Dzagnidze Igor Georgievich
  • Sarantidi Panaet Grigorevich
  • Stepin Mikhail Danilovich
  • Pushkareva Evgeniya Ivanovna
  • Mamykin Aleksandr Petrovich
  • Shvetsov Mikhail Petrovich
SU947763A1
UNIT FOR HYDROCARBON ROCKET FUEL RESEARCH 2018
  • Danilov Vasilij Viktorovich
  • Zubkov Nikolaj Anatolevich
  • Velikanov Aleksandr Anatolevich
  • Lukoyanov Yurij Mikhajlovich
  • Sobolev Viktor Vladimirovich
  • Maklakov Nikolaj Nikolaevich
RU2664443C1
METHOD OF DETERMINING OXIDATION STABILITY OF FUELS UNDER DYNAMIC CONDITIONS 2003
  • Astaf'Ev V.A.
  • Isaev A.V.
  • Suzikov V.V.
  • Sereda A.V.
RU2236001C1
METHOD OF ESTIMATING AUTOMOTIVE GASOLINE TENDENCY TO FORM SEDIMENTS IN INJECTORS 2008
  • Nikitin Igor' Mikhajlovich
  • Shishaev Sergej Vsevolodovich
  • Kuznetsov Andrej Aleksandrovich
  • Malykhin Valerij Danilovich
RU2368899C1
STANDARD SAMPLE FOR METROLOGICAL SUPPORT OF MEASUREMENTS OF THERMOOXIDATIVE STABILITY OF JET ENGINE FUELS UNDER DYNAMIC CONDITIONS (VARIANTS) 2022
  • Shatalov Konstantin Vasilevich
  • Volgin Sergej Nikolaevich
  • Zhuravleva Vlada Dmitrievna
RU2789417C1
INSTALLATION FOR DETERMINING THERMAL-OXIDATIVE STABILITY OF AVIATION FUEL 0
  • Makarov Yurij Petrovich
  • Markov Albert Andreevich
  • Markelov Viktor Fedorovich
  • Tsibulskij Boris Vladimirovich
  • Kaeshkov Dmitrij Ignatevich
  • Zakharov Vitalij Ivanovich
  • Stepin Mikhail Danilovich
  • Dzagnidze Igor Georgievich
SU1249456A1

RU 2 774 646 C1

Authors

Anisimov Denis Igorevich

Zhuravleva Vlada Dmitrievna

Likhterova Natalya Mikhajlovna

Dates

2022-06-21Published

2021-08-27Filed