Modeling the heat exchange process between the main units of modern wheeled armored troop-carrier on the basis of finite element modeling methods

Authors
Keywords:
Array, Array, Array, Array
Abstract

In the article, the authors analyzed the existing designs of wheeled armored personnel carriers based on the methods of finite element modeling of physical processes, in particular, heat transfer processes in the cooling system of modern samples of domestic military equipment BTR-4A, BTR-4V and BTR-4E-2.
When calculating the options for the layout of the engine-transmission compartment, hydropneumatic suspension and fan cooling system of the power plant, the presented mathematical model of heat fluxes allows with sufficient accuracy to determine the effectiveness of the proposed promising samples.

Author Biographies
  1. Volodymyr Andriyovych Jadan, Державне підприємство «Харківське конструкторського бюро з машинобудування ім. О.О. Морозова»

    Chief designer Kharkov Machine Building Design Bureau named after A.A. Morozov
    Kharkov, Ukraine

  2. Oleksandr Uriyovich Larin, Central Scientific Research Institute of Armament and Military Equipment of the Armed Forces of Ukraine

    Candidate of Technical Sciences,
    Head of the Scientific Research department for the development of weapons and military equipment of Armored, Mechanized and Highly Mobile Troops of the Scientific Research management of the development of Armament and Military Equipment of Land Forces Central Scientific Research Institute of Armament and Military Equipment of Armed Forces of Ukraine
    Kyiv, Ukraine

  3. Oleksandr Anatolyevich Maistrenko, Central Scientific Research Institute of Armament and Military Equipment of the Armed Forces of Ukraine

    Candidate of Technical Sciences,
    Leading Researcher of the Scientific Research department of the development of rocket and artillery Armament and Military Equipment of the Scientific Research management of the development of Armament and Military Equipment of Land Forces Central Scientific Research Institute of Armament and Military Equipment of Armed Forces of Ukraine
    Kyiv, Ukraine

  4. Oleksandr Oleksiyovych Pochechun, Central Scientific Research Institute of Armament and Military Equipment of the Armed Forces of Ukraine

    Senior Research of the Scientific Research department for the development of weapons and military equipment of Armored, Mechanized and Highly Mobile Troops of the Scientific Research management of the development of Armament and Military Equipment of Land Forces Central Scientific Research Institute of Armament and Military Equipment of Armed Forces of Ukraine
    Kyiv, Ukraine

References

Vozgrin, Yu., & Kovalev, M., Kuzminsky, V., Lazurko, A. & Mormilo Ya. (2015), “Comprehensive study of the dependence of the efficiency of heat exchange in the cooling system on the variation of input values in a wide operating range by the methods of finite element modeling” Science and Technology J. “Mechanics and Machinery”, №1, pp. 13-24.

Kalinin, E., Dreitser, G., & Yarko, S. Heat transfer intensification in the channels. M .: Mechanical Engineering, 1990. 208 p.

Schlichting, G. Boundary layer theory. M.: Nauka, 1969. 411 p.

Filipov B., & Struminsky V. Experimental studies of the origin and development of turbulence in tubes / Turbulent fl ows. M.: Nauka. 1970.

Struminsky, V. Kinetic theory of turbulence: Prep. SMNS of the USSR Academy of Sciences. M. 64 p.

Struminsky, V. Kinetic theory of turbulent flows / Problems of turbulent fl ows. M.: 1987. Рp. 14-32.

Cover Image
Downloads
Published
2020-12-03
Section
ARMORED VEHICLES
License

Copyright (c) 2020 Володимир Андрійович Жадан,Олександр Юрійович Ларін,Олександр Анатольович Майстренко,Олександр Олексійович Почечун

Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

How to Cite

Modeling the heat exchange process between the main units of modern wheeled armored troop-carrier on the basis of finite element modeling methods. (2020). Weapons and Military Equipment, 28(4), 32-37. https://doi.org/10.34169/2414-0651.2020.4(28).32-37

Most read articles by the same author(s)