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1.
J Hazard Mater ; 178(1-3): 635-43, 2010 Jun 15.
Artigo em Inglês | MEDLINE | ID: mdl-20189299

RESUMO

This work is part of a project for evaluating catastrophic tank failures caused by impacts with a high-speed solid body. Previous studies on shock overpressure and drag events have provided analytical predictions, but they are not sufficient to explain ejection of liquid from the tank. This study focuses on the hydrodynamic behavior of the liquid after collision to explain subsequent ejection of liquid. The study is characterized by use of high-velocity projectiles and analysis of projectile dynamics in terms of energy loss to tank contents. New tests were performed at two projectile velocities (963 and 1255 m s(-1)) and over a range of viscosities (from 1 to 23.66 mPa s) of the target liquid. Based on data obtained from a high-speed video recorder, a phenomenological description is proposed for the evolution of intense pressure waves and cavitation in the target liquids.


Assuntos
Indústria Química , Teste de Materiais , Terrorismo , Algoritmos , Pressão , Gravação em Vídeo , Viscosidade
2.
J Hazard Mater ; 172(2-3): 587-94, 2009 Dec 30.
Artigo em Inglês | MEDLINE | ID: mdl-19716654

RESUMO

We have studied the sequence of events that occurs when a high-speed projectile (from 960 ms(-1) to 1480 ms(-1)) penetrates a vessel filled with toxic liquid. We find that prior to liquid ejection several well-defined phases occur, including the phenomenon known as the "hydraulic ram." Then a catastrophic tank failure leads to liquid ejection and fragmentation. This paper focuses on this phenomenon and explains how it can be related to the initial conditions of the target.


Assuntos
Simulação por Computador , Balística Forense , Substâncias Perigosas , Acidentes de Trabalho , Planejamento em Desastres , Desastres , Substâncias Explosivas , Indústrias/instrumentação
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