2010•Chinese Journal of High Pressure PhysicsRequires access

Numerical Simulation of Suspended RDX Dust Detonation in a Shock Tube

Wensheng Lin

Open publisher page 1 citations

Abstract

Dust detonation of of RDX particles suspended in air was numerically studied with two-phase flow model.Behind the leading shock front of detonation,RDX particles were accelerated and heated by the gas flow.Melt of RDX occurred on the surface of particles.It was assumed that melted part of particle was stripped by the gas flow and decompostion reaction happened instantaneously,during the energy is released to support the propagation of detonation wave.Development and propagation of dust detonation with different particle sizes and different concentration was numerically simulated and the parameters of detonation were obtained.Distribution of pressure,temperature,velocity behind leading shock front was calculated.Parameters of dust detonation were determined.When the concntration of RDX dust is low,pulsating mode of peak pressure history of detonation front occured.Numerical simulation results showed that when the concentration of RDX dust was between 80 g/m3 and 150 g/m3,history of peak pressure of detonation wave front was regular pulsating.When the concentration was 70 g/m3,the pulsating was irregular.

About this research paper

What this paper is about

Dust detonation of of RDX particles suspended in air was numerically studied with two-phase flow model.Behind the leading shock front of detonation,RDX particles were accelerated and heated by the gas flow.Melt of RDX occurred on the surface of particles.It was assumed that melted part of particle was stripped by the gas flow and decompostion reaction happened instantaneously,during the energy is released to support the propagation of detonation wave.Development and propagation of dust detonation with different particle sizes and different concentration was numerically simulated and the parameters of detonation were obtained.Distribution of pressure,temperature,velocity behind leading shock front was calculated.Parameters of dust detonation were determined.When the concntration of RDX dust is low,pulsating mode of peak pressure history of detonation front occured.Numerical simulation results showed that when the concentration of RDX dust was between 80 g/m3 and 150 g/m3,history of peak pressure of detonation wave front was regular pulsating.When the concentration was 70 g/m3,the pulsating was irregular.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Dust detonation of of RDX particles suspended in air was numerically studied with two-phase flow model.Behind the leading shock front of detonation,RDX particles were accelerated and heated by the gas flow.Melt of RDX occurred on the surface of particles.It was assumed that melted part of particle was stripped by the gas flow and decompostion reaction happened instantaneously,during the energy is released to support the propagation of detonation wave.Development and propagation of dust detonation with different particle sizes and different concentration was numerically simulated and the parameters of detonation were obtained.Distribution of pressure,temperature,velocity behind leading shock front was calculated.Parameters of dust detonation were determined.When the concntration of RDX dust is low,pulsating mode of peak pressure history of detonation front occured.Numerical simulation results showed that when the concentration of RDX dust was between 80 g/m3 and 150 g/m3,history of peak pressure of detonation wave front was regular pulsating.When the concentration was 70 g/m3,the pulsating was irregular.

Key concepts: Detonation, Mechanics, Shock wave, Materials science, Front (military), Particle (ecology), Flow (mathematics), Shock (circulatory)

Related papers

Back to paper searchBrowse research topicsOriginal source
Numerical Simulation of Suspended RDX Dust Detonation in a Shock Tube — Research Paper | ScholarLens