A Numerical Investigation of Blast Loading and Clearing on Small Targets

Author:

Rigby Sam E.1,Tyas Andrew12,Bennett Terry3,Fay Stephen D.12,Clarke Sam D.1,Warren James A.12

Affiliation:

1. Department of Civil & Structural Engineering, University of Sheffield, Mappin Street, Sheffield, S1 3JD, UK

2. Blastech Ltd., The BioIncubator, 40 Leavygreave Road, Sheffield, S3 7RD, UK

3. School of Civil, Environmental & Mining Engineering, North N136, North Terrace Campus, The University of Adelaide, SA 5005, Australia

Abstract

When a blast wave strikes a finite target, diffraction of the blast wave around the free edge causes a rarefaction clearing wave to propagate along the loaded face and relieve the pressure acting at any point it passes over. For small targets, the time taken for this clearing wave to traverse the loaded face will be small in relation to the duration of loading. Previous studies have not shown what happens in the late-time stages of clearing relief, nor the mechanism by which the cleared reflected pressure decays to approach the incident pressure. Current design guidance assumes a series of interacting clearing waves propagate over the target face – this assumption is tested in this article by using numerical analysis to evaluate the blast pressure acting on small targets subjected to blast loads. It is shown that repeat propagations of the rarefaction waves do not occur and new model is proposed, based on an over-expanded region of air in front of the loaded face of the target.

Publisher

SAGE Publications

Subject

Mechanics of Materials,Safety, Risk, Reliability and Quality,Building and Construction

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