Design of shoulder: Launched unguided rocket with thermobaric warhead

This paper presents a calculation methodology of geometrical and mass parameters for shoulder-launched rocket with thermobaric warhead. An optimization of design rocket parameters for specified tactical and technical requirements is carried out by the criteria of the mass efficiency using two calcul...

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Main Authors: Jovančić Siniša, Simić Danica
Format: Article
Language:English
Published: Military Technical Institute, Belgrade 2015-01-01
Series:Scientific Technical Review
Subjects:
Online Access:https://scindeks-clanci.ceon.rs/data/pdf/1820-0206/2015/1820-02061504003J.pdf
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spelling doaj-dd71e4b3cb254d6f9b23a3bfe481c0832020-11-25T03:47:54ZengMilitary Technical Institute, BelgradeScientific Technical Review1820-02062683-57702015-01-016543151820-02061504003JDesign of shoulder: Launched unguided rocket with thermobaric warheadJovančić Siniša0Simić Danica1https://orcid.org/0000-0002-2170-1995Military Technical Institute (VTI), BelgradeMilitary Technical Institute (VTI), BelgradeThis paper presents a calculation methodology of geometrical and mass parameters for shoulder-launched rocket with thermobaric warhead. An optimization of design rocket parameters for specified tactical and technical requirements is carried out by the criteria of the mass efficiency using two calculation methods. According to the first method, the rocket calibre for given a maximum range is determined by the function of payload mass. The second method predicts calibre value and based on that, all rocket sub-assemblies masses can be calculated, which means that total rocket mass is determined either. An optimal calibre value for rocket motor with limited operating time is common and unique solution for both of these iterative procedures. In the concrete example the application of the exposed model is shown - for specified tactical and technical requirements and known material characteristics, carried out calculation and analysis parameters of warhead and rocket motor. For selected rocket design parameters, a simulation of motor operating time and moving rocket throughout its launching tube are done for three typical usage temperatures: -30 °C, +20 °C and +50 °C. The obtained values of the chamber pressure, operating time of the rocket motor and initial rocket velocity are analyzed considering the shooter's safety and realization of required ballistic characteristics.https://scindeks-clanci.ceon.rs/data/pdf/1820-0206/2015/1820-02061504003J.pdfrocket launchershoulder-launcherunguided rocketthermobaric warheadrocket motorimpulse rocket motorprojectionparameters optimizationnumerical simulation
collection DOAJ
language English
format Article
sources DOAJ
author Jovančić Siniša
Simić Danica
spellingShingle Jovančić Siniša
Simić Danica
Design of shoulder: Launched unguided rocket with thermobaric warhead
Scientific Technical Review
rocket launcher
shoulder-launcher
unguided rocket
thermobaric warhead
rocket motor
impulse rocket motor
projection
parameters optimization
numerical simulation
author_facet Jovančić Siniša
Simić Danica
author_sort Jovančić Siniša
title Design of shoulder: Launched unguided rocket with thermobaric warhead
title_short Design of shoulder: Launched unguided rocket with thermobaric warhead
title_full Design of shoulder: Launched unguided rocket with thermobaric warhead
title_fullStr Design of shoulder: Launched unguided rocket with thermobaric warhead
title_full_unstemmed Design of shoulder: Launched unguided rocket with thermobaric warhead
title_sort design of shoulder: launched unguided rocket with thermobaric warhead
publisher Military Technical Institute, Belgrade
series Scientific Technical Review
issn 1820-0206
2683-5770
publishDate 2015-01-01
description This paper presents a calculation methodology of geometrical and mass parameters for shoulder-launched rocket with thermobaric warhead. An optimization of design rocket parameters for specified tactical and technical requirements is carried out by the criteria of the mass efficiency using two calculation methods. According to the first method, the rocket calibre for given a maximum range is determined by the function of payload mass. The second method predicts calibre value and based on that, all rocket sub-assemblies masses can be calculated, which means that total rocket mass is determined either. An optimal calibre value for rocket motor with limited operating time is common and unique solution for both of these iterative procedures. In the concrete example the application of the exposed model is shown - for specified tactical and technical requirements and known material characteristics, carried out calculation and analysis parameters of warhead and rocket motor. For selected rocket design parameters, a simulation of motor operating time and moving rocket throughout its launching tube are done for three typical usage temperatures: -30 °C, +20 °C and +50 °C. The obtained values of the chamber pressure, operating time of the rocket motor and initial rocket velocity are analyzed considering the shooter's safety and realization of required ballistic characteristics.
topic rocket launcher
shoulder-launcher
unguided rocket
thermobaric warhead
rocket motor
impulse rocket motor
projection
parameters optimization
numerical simulation
url https://scindeks-clanci.ceon.rs/data/pdf/1820-0206/2015/1820-02061504003J.pdf
work_keys_str_mv AT jovancicsinisa designofshoulderlaunchedunguidedrocketwiththermobaricwarhead
AT simicdanica designofshoulderlaunchedunguidedrocketwiththermobaricwarhead
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