Group for the Study of Reactive Motion
Leningrad and other locations | |
Dissolved | in 1933 became RNII |
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Part of a series of articles on the |
Soviet space program |
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The Moscow-based Group for the Study of Reactive Motion (also known as the Group for the Investigation of Reactive Engines and Reactive Flight or Jet Propulsion Study Group; Russian: Группа изучения реактивного движения, Gruppa izucheniya reaktivnogo dvizheniya), abbreviated as GIRD (ГИРД), was a Soviet research bureau founded in 1931 to study various aspects of rocketry. GIRD launched the first Soviet liquid propellant rocket in August 1933. In November 1933 it was incorporated into the Reactive Scientific Research Institute (Реактивный научно-исследовательский институт, Reaktivnyy nauchno-issledovatel’skiy institut, РНИИ, RNII).
History
The inspiration for establishing the organisation came from Fredrich Tsander, a scientist, inventor, and romantic who dreamed of space travel.[1] Tsander had begun to consider rocket-powered interplanetary flight as early as 1907 and was one of the founding members of the Society for the Study of Interplanetary Communication in 1924. In September 1931 Tsander formed the Moscow-based 'Group for the Study of Reactive Motion',[1] better known by its Russian acronym “GIRD”.[2] Initial funding was provided by Osoaviakhim however it was insufficient to cover production costs. In April 1932 Tsander began working full time for GIRD, however most other personnel worked at night or in their spare time. The personnel jokingly referred to GIRD as “Gruppa inzhenerov, rabotayushchaya darom” (group of engineers working for nothing).[3]
Local GIRDs also developed in other cities, particularly Leningrad, but also in Kharkiv, Baku, Tiflis, Arkhangelsk, Novocherkassk and Bryansk.[2]
A key contributor to GIRD came from a young aircraft engineer
In May 1932, Sergey Korolev replaced the ailing Tsander as the head of GIRD. At this time the group was organized as four brigades to further optimise their efforts, as follows:[4][5]
- 1st brigade: Head Tsander (rocket engines).
- 2nd brigade: head Mikhail Tikhonravov (rockets / missiles).
- 3rd brigade: head Yuriy Pobedonostsev (direct-precision air-jet engines and gas-dynamic test units).
- 4th brigade: head Korolev (rocket planes and cruise missiles).
Under Korolev's leadership GIRD began to attract additional funding from the
Tsander died unexpectedly from an illness on March 28, 1933, and his engineer, Leonid Konstantinovich Korneev, became the new leader of his Brigade. An exact copy of the GIRD-X can be found on Tsander's headstone in Kislovodsk.[5]
OR-1 and OR-2 engines

Tsander had begun work on the OR-1 experimental engine in 1929 while working at the Central Institute for Aircraft Motor Construction;[3] this subsequently became GIRD Project 01. It ran on compressed air and gasoline and Tsander used it to investigate high-energy fuels including powdered metals mixed with gasoline. The chamber was cooled regeneratively by air entering at the nozzle end and also by water circulating through a coil.
Project 02, the OR-2 engine, was designed for Korolev's RP-1 rocket-powered glider. It burned oxygen and gasoline, and its nozzle was made from heat-resistant graphite. The engine was later modified to burn alcohol, which generated less heat than gasoline, and its thrust was increased. After cooling the engine walls, the compressed oxygen entered the top end of the chamber in a swirling pattern. Fuel was injected through an atomizer at the center, to create efficient mixing and combustion.
GIRD-9 rocket

GIRD-X rocket
In January 1933 Tsander began development of the GIRD-X rocket (Note: "X" is the Roman numeral 10). It was originally to use a metallic propellant, but after various metals had been tested without success it was designed without a metallic propellant, and was powered by the Project 10 engine which was first bench tested in March 1933. This design burned liquid oxygen and gasoline and was one of the first engines to be regeneratively cooled by the liquid oxygen, which flowed around the inner wall of the combustion chamber before entering it. Problems with burn-through during testing prompted a switch from gasoline to less energetic alcohol. The final missile, 2.2 metres (7.2 ft) long by 140 millimetres (5.5 in) in diameter, had a mass of 30 kilograms (66 lb), and it was anticipated that it could carry a 2 kilograms (4.4 lb) payload to an altitude of 5.5 kilometres (3.4 mi).[9] The GIRD X rocket was launched on 25 November 1933 and flew to a height of 80 meters.[3]
Project 05
Tikhonravov was also responsible for the Project 05 rocket in a joint effort with the Gas Dynamics Lab (GDL) in Leningrad. Project 05 used the ORM-50 engine developed by
RNII
By 1931 there were two Soviet organisations focusing on rocket technology; GIRD and the
Lunar craters named after GIRD personnel
For their contribution to spaceflight the following GIRD personnel have craters on the far side of the Moon named after them;
See also
References
- ^ a b Chertok 2005, p. 165 Vol 1.
- ^ a b c d Siddiqi 2000, p. 4.
- ^ a b c Tsander, F. A. (1964). Problems of Flight by Jet Propulsion-Interplanetary Flights (Translated from Russian) (PDF). Israel Program for Scientific Translations. pp. 32, 38–39, 58–59. Retrieved 13 June 2022.
- ^ Koroleva, Natalya Sergeevna. "GIRD: organization and structure 1931". Family History (in Russian). Retrieved 14 June 2022.
- ^ a b c Siddiqi 2000, p. 6.
- ^ Chertok 2005, p. 166 Vol 1.
- ^ "GIRD (Gruppa Isutcheniya Reaktivnovo Dvisheniya)". WEEBAU. Retrieved 26 July 2022.
- S2CID 244899773.
- ISBN 3-7186-5313-3.
- ^ Baker & Zak 2013, p. 6.
- ^ Siddiqi 2000, p. 7.
- ^ Brief chronology of rocket engine building in the USSR
Sources cited
- Baker, David; Zak, Anatoly (9 September 2013). Race for Space 1: Dawn of the Space Age. RHK. Retrieved 20 May 2022.
- Chertok, Boris (2005). Rockets and People Volumes 1-4. National Aeronautics and Space Administration. Retrieved 29 May 2022.
- Siddiqi, Asif (2000). Challenge to Apollo : the Soviet Union and the space race, 1945-1974 (PDF). Washington, D.C.: National Aeronautics and Space Administration, NASA History Div. Retrieved 22 May 2022.