Modeling the Effects of Underwater Detonation Wave

Author:

Grządziela Andrzej1

Affiliation:

1. Polish Naval Academy

Abstract

Minehunters are subjected to specific sea loads due to waving and dynamical impacts associated with underwater explosion. Sea waving can be sufficiently exactly modeled by means of statistical methods. Much more problems arise from modeling impacts due to underwater explosion. Knowledge of a character of impulse loading which affects ship shaft line can make it possible to identify potential failures by means of on-line vibration measuring systems. The problem of influence of sea mine explosion on hull structure is complex and belongs to more difficult issues of ship dynamics. Underwater explosion is meant as a violent upset of balance of a given system due to detonation of explosives in water environment. A paper presents a proposal of identification of a degree of hazard the ships hull forced from underwater explosion. A theoretical analysis was made of influence of changes of hull structure in vicinity of hull. The main problem of naval vessels is a lack of dynamical requirements of stiffness of the hull. Modeled signals and hull structure were recognized within sensitive symptoms of three sub models: model of hull structure, model of impact and model of propulsion system. All sub models allow testing forces and their responses in vibration spectrum using SIMULINK software and FEM models.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference9 articles.

1. Borkowski W, Rybak P, Hryciów Z, Michałowski B: Multi-axle special-purpose vehicle in blast load conditions, Acta mechanica et automatica, vol. 1 no. 2 (2007).

2. Cudny, K., Powierża Z., Selected problems of shock resistance of ships (in Polish), Publ. Polish Naval University, Gdynia (1987).

3. Hans U. Mair: Preliminary Compilation of Underwater Explosion Benchmarks, Proceedings of the 67th Shock and Vibration Symposium, Volume I (1996), SAVIAC, 361-379.

4. Huang Hao, Jiao Qing Jie: Numerical modeling of underwater explosion by 1- Dimensional ANSYS-AUTODYN, Workshop on Energetics-Past and Present, 7-9 December 2010 Hong Kong, China.

5. M.B. Lits, G.R. Liu: Comparative Study of the Real and Artificial Detonation Models in Underwater Explosion Simulations, lSSN 0204- 3572. Elektron. modelirovanije. 2003. T. 25. Nr 2.

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