Technical gazette, Vol. 25 No. 5, 2018.
Original scientific paper
https://doi.org/10.17559/TV-20180321135212
Application of a CFD Model in Determination of the Muzzle Blast Overpressure in Small Arms and Its Validation by Measurement
Nebojša Hristov
orcid.org/0000-0002-8163-2223
; University of Defence in Belgrade, Military Academy, Veljka Lukića Kurjaka 33, Belgrade, Serbia
Aleksandar Kari
; University of Defence in Belgrade, Military Academy, Veljka Lukića Kurjaka 33, Belgrade, Serbia
Damir Jerković
orcid.org/0000-0001-5182-7057
; University of Defence in Belgrade, Military Academy, Veljka Lukića Kurjaka 33, Belgrade, Serbia
Slobodan Savić
; University in Kragujevac, Faculty of Engineering, Sestre Janjić 6, Kragujevac, Serbia
Abstract
The main subject of this paper is application of a Computational Fluid Dynamics (CFD) model in determination of the muzzle blast overpressure and its physical manifestations, as well as its validation through measurements of primary parameters. Unsteady Reynolds-averaged Navier-Stokes equations (URANS) with a corresponding turbulence model were applied for numerical simulation of complex gas-dynamic process of propellant gases release from the barrel after firing. The unstructured adaptive mesh for spatial discretization was applied, as suitable model for numerical calculation and physical interpretation of these intensive dynamic processes. The provided experimental results were compared with the results of numerical simulations, which were thus validated, according to adopted minor simplifications.
Keywords
barrel exhaust model; CFD (Computation Fluid Dynamics); experimental measurements; overpressure; URANS (Unsteady Reynolds-averaged Navier-Stokes equations) model; unstructured adaptive mesh for spatial discretization
Hrčak ID:
207440
URI
Publication date:
28.10.2018.
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