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poses a significant risk in the event; up to 85% of injuries from an explosion are due to flying glass. Severity of injury from flying glass depends on the peak overpressure of the blast. Potential for injury has been derived from both experiments and theoretical modeling of blast effects. Among the
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important features in models of flying glass are breaking pressure, velocity and distribution of flying fragments, fragment shape, and the distance traveled until impact. Mitigation strategies, such as the use of
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Urban
Habitat Constructions Under Catastrophic Events: Proceedings of the COST C26 Action Final Conference
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Hossein, Ataei; Anderson, James C. (2012). "Mitigating the
Injuries from Flying Glass Due to Air Blast".
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Lees' Loss
Prevention in the Process Industries: Hazard Identification, Assessment and Control
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Hooper, P. A.; Sukhram, R. A. M.; Blackman, B. R. K.; Dear, J. P. (15 March 2012).
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Forensic
Engineering: Damage Assessments for Residential and Commercial Structures
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Pieces of broken glass that become sharp projectiles
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309:Injuries
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