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contributor authorC. A. Lind
contributor authorW. J. Mitchell
contributor authorJ. L. Wilcox
contributor authorJ. P. Boris
contributor authorE. S. Oran
date accessioned2017-05-08T23:57:39Z
date available2017-05-08T23:57:39Z
date copyrightAugust, 1998
date issued1998
identifier issn0094-9930
identifier otherJPVTAS-28385#306_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/121024
description abstractIt is estimated that more than 500,000 tons of obsolete and unwanted conventional weapons exist in the United States. The disposal of these unexploded ordnances, in an environmentally sound and cost-effective way, is of paramount importance. Open-air burning and open-air detonation (OB/OD) are two of the most widely used methods to dispose of these unwanted energetic materials. This paper describes our efforts to improve OB/OD operations through the design and testing of a new, large-scale, partially confined facility that minimizes the adverse affects of far-field noise and maximizes the afterburn of explosive by-products. Several designs were evaluated by a series of axisymmetric, time-dependent numerical simulations using FAST3D, a flux-corrected transport-based code optimized for parallel processing. The simulations are used to test various facility geometries and placements and sizes of charges to determine combinations that result in acceptable environmental impact. Comparisons of the pressure and structural analyses for 50 and 100 lb of spherically shaped RDX charges show that the 50-lb spherically shaped charge placed at a height of approximately 2.0 m resulted in an efficient detonation and maintained the structural integrity of the detonation facility.
publisherThe American Society of Mechanical Engineers (ASME)
titleThe Response of a Partially Confined Detonation Facility to Blast Loading
typeJournal Paper
journal volume120
journal issue3
journal titleJournal of Pressure Vessel Technology
identifier doi10.1115/1.2842062
journal fristpage306
journal lastpage312
identifier eissn1528-8978
keywordsExplosions
keywordsStructural analysis
keywordsComputer simulation
keywordsSound
keywordsNoise (Sound)
keywordsDesign
keywordsEngineering simulation
keywordsTesting
keywordsParallel processing
keywordsWeapons
keywordsExplosives
keywordsPressure AND Combustion
treeJournal of Pressure Vessel Technology:;1998:;volume( 120 ):;issue: 003
contenttypeFulltext


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