DEVICE AND METHOD FOR MEASURING ACCELERATION ON AN OPTICAL DISCHARGE WITH THERMAL IMAGERS Russian patent published in 2022 - IPC G01P15/00 

Abstract RU 2781745 C1

FIELD: instrumentation.

SUBSTANCE: group of inventions relates to the field of instrumentation. An optical discharge acceleration measuring device with two thermal imagers consists of a spherical chamber transparent to the laser radiation of the lasers used, filled with a gas mixture; one or more lasers located outside the spherical chamber, the radiation of which is focused in the center of the spherical chamber; thermal imager lenses are installed from two opposite sides of the spherical camera outside the zone of laser radiation from one or more lasers, each of which covers the inner part of the surface through a hole in the spherical chamber body in such a way that the lenses of two thermal imagers can see the entire inner surface of the spherical chamber in total.

EFFECT: extension of the acceleration measurement range and an improvement in the speed of acceleration measurement.

2 cl, 3 dwg

Similar patents RU2781745C1

Title Year Author Number
DEVICE AND METHOD FOR MEASURING ACCELERATION ON AN OPTICAL DISCHARGE WITH LASER IGNITION 2022
  • Solovev Nikolai Germanovich
  • Kotov Mikhail Altaevich
  • Lavrentev Sergei Iurevich
  • Shemiakin Andrei Nikolaevich
  • Iakimov Mikhail Iurevich
RU2780300C1
DEVICE AND METHOD FOR MEASURING ACCELERATION ON AN OPTICAL DISCHARGE WITH THERMAL INDICATOR PAINT 2022
  • Solovev Nikolai Germanovich
  • Kotov Mikhail Altaevich
  • Lavrentev Sergei Iurevich
  • Shemiakin Andrei Nikolaevich
  • Iakimov Mikhail Iurevich
RU2781746C1
DEVICE AND METHOD FOR MEASURING ACCELERATION ON AN OPTICAL DISCHARGE WITH ELECTRODE IGNITION 2022
  • Solovev Nikolai Germanovich
  • Kotov Mikhail Altaevich
  • Shemiakin Andrei Nikolaevich
  • Iakimov Mikhail Iurevich
RU2781365C1
DEVICE AND METHOD FOR MEASURING ACCELERATION ON AN OPTICAL DISCHARGE BY THE SHADOW METHOD 2022
  • Solovev Nikolai Germanovich
  • Kotov Mikhail Altaevich
  • Lavrentev Sergei Iurevich
  • Shemiakin Andrei Nikolaevich
  • Iakimov Mikhail Iurevich
RU2781747C1
DEVICE AND METHOD FOR MEASURING ACCELERATION ON AN OPTICAL DISCHARGE WITH A PHOTOLUMINOPHOR 2022
  • Solovev Nikolai Germanovich
  • Kotov Mikhail Altaevich
  • Shemiakin Andrei Nikolaevich
  • Iakimov Mikhail Iurevich
RU2781362C1
DEVICE AND METHOD FOR MEASURING ACCELERATION ON AN OPTICAL DISCHARGE BY THE ELECTRODE AND SHADOW METHOD 2022
  • Solovev Nikolai Germanovich
  • Kotov Mikhail Altaevich
  • Shemiakin Andrei Nikolaevich
  • Iakimov Mikhail Iurevich
RU2781363C1
DEVICE AND METHOD FOR MEASURING VERTICAL ACCELERATION ON AN OPTICAL DISCHARGE 2022
  • Solovev Nikolai Germanovich
  • Kotov Mikhail Altaevich
  • Shemiakin Andrei Nikolaevich
  • Iakimov Mikhail Iurevich
RU2781753C1
DEVICE AND METHOD FOR DISPOSAL OF OPTICAL DISCHARGE OSCILLATIONS 2020
  • Solovev Nikolaj Germanovich
  • Shemyakin Andrej Nikolaevich
  • Yakimov Mikhail Yurevich
RU2734026C1
DEVICE AND METHOD FOR ELIMINATION OF OPTICAL DISCHARGE INSTABILITIES 2020
  • Solovev Nikolaj Germanovich
  • Shemyakin Andrej Nikolaevich
  • Yakimov Mikhail Yurevich
RU2738462C1
METHOD OF PREVENTING OSCILLATIONS OF OPTICAL DISCHARGE 2020
  • Solovev Nikolaj Germanovich
  • Lavrentev Sergej Yurevich
  • Shemyakin Andrej Nikolaevich
  • Yakimov Mikhail Yurevich
RU2734111C1

RU 2 781 745 C1

Authors

Solovev Nikolai Germanovich

Kotov Mikhail Altaevich

Lavrentev Sergei Iurevich

Shemiakin Andrei Nikolaevich

Iakimov Mikhail Iurevich

Dates

2022-10-17Published

2022-02-08Filed