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С.К. Павлов, В.В. Чугунков

10

Инженерный журнал: наука и инноваци

и

# 1

2016

Enhancing the efficiency of the propellant

cooling system using a heat exchanger and antifreeze

being cooled by liquid nitrogen

© S.K. Pavlov, V.V. Chugunkov

Bauman Moscow State Technical University, Moscow, 105005, Russia

The article describes the construction of the propellant cooling system using a heat ex-

changer and the antifreeze being cooled by liquid nitrogen, when the heat exchanger is

placed directly in the tank with antifreeze.

Cooling is performed by the circulation of

propellant from the tank of its location through the heat exchanger placed in the tank

with antifreeze being cooled by supplying dispersed liquid nitrogen. We present

the cool-

ing system circuit, equations and the results of predicting its efficiency in terms of the

relative liquid nitrogen flowrate in comparison with other variants of propellant cooling

on the space launcher complexes.

Keywords:

propellants, temperature preparation, cooling, heat exchanger, antifreeze,

liquid nitrogen, cooling efficiency.

REFERENCES

[1]

Arkharov A.M., Kunis I.D.

Kriogennye zapravochnye sistemy startovykh

raketno-kosmicheskikh kompleksov

[The Cryogenic propellant loading systems

of rocket-space launch complexes]. Barmin I.V., ed. Moscow, BMSTU Publ.,

2006, 252 p.

[2]

Komlev D.E., Solovyev V.I. Okhlazhdenie naftila metodom kriogennogo

barbotazha [Naphthyl refrigerating by cryogenic sparging].

Novosti tekhniki:

sbornik

[Engineering news: coll. pap.]. Moscow, KBTM Publ., 2004, pp. 137–141.

[3]

Aleksandrov A.A., Goncharov R.A., Igritskiy V.A., Chugunkov V.V.

Vestnik

MGTU im. N.E. Baumana. Seria Mashinostroenie — Herald of the Bauman

Moscow State Technical University. Series: Mechanical Engineering

, 2011,

no. 1, pp. 40–46.

[4]

Aleksandrov A.A., Denisov O.E., Zolin A.V., Chugunkov V.V.

Izvestiya

vysshykh uchebnykh zavedeniy. Mashinostroenie — Proceedings of Universities.

Mechanical Engineering

, 2013, no. 4, pp. 24–29.

[5]

Denisov O.E., Zolin A.V., Denisova K.I.

Nauka i obrazovanie: electronnyy

nauchno-tekhnicheskiy zhurnal — Science and Education: Electronic Scientific

and technical Journal,

2014, no. 11. Available at:

http://technomag.bmstu.ru/

doc/732218.html

[6]

Zolin A.V., Chugunkov V.V.

Aerokosmicheskiy nauchnyy zhurnal. Elektronnyy

zhurnal — Aerospace Scientific Journal. Electronic Journal

, 2015, no. 6.

Available at:

http://aerospjournal.ru/doc/826690.html

[7]

Wen D.S., Chen H.S., Ding Y.L., Dearman P. Liquid nitrogen injection into

water: Pressure build-up and heat transfer.

Cryogenics

, 2006, vol. 46, no. 10,

pp. 740–748.

[8]

Domashenko A.M., Blinova I.D.

Khimicheskoe i neftegazovoe mashinostroenie —

Chemical and Petroleum Engineering

, 2007, vol. 43, no. 11–12, pp. 720–725.

doi: 10.1007/s10556-007-0130-9