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Predicting the dynamic response of a floating and submerged structure subjected to underwater explosion is greatly complicated by the explosion of a high explosive, propagation of shock wave, bubble-pulse and complex fluid structure interaction (FSI) phenomena.
Spatio-temporal and cluster analyses revealed that the outbreak was characterized by three distinct phases punctuated by explosive propagation of cases when the outbreak spread to a new region.
Figure 1 illustrates that there were distinct phases over the course of the outbreak, when the disease spread to new parts of the country; this would lead to an explosive propagation of cases, represented by either an increased slope in the cumulative number of cases or a spike in the weekly number of cases.
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This article presents a numerical study of the explosive wave propagations from a 40 cm long and 10.8 cm diameter cylinder to smaller 1.7 m and 2.6 m long cylinders with 36 mm diameters.
Based on the application of practical engineering, propagation processes of explosive waves in rock with water well and tunnel are simulated by ANSYS/LS-DYNA software.
Using the detonation wave front of the explosive ionization conductivity, the detonation wave propagation time in the explosive column was measured with a time-measuring instrument and an electric probe.
The process of fractures initiation and propagation in rocks due to explosive energy in horizontal wellbore is a dynamic phenomenon and three main systems involved in the study, namely, rock, explosive and boundary conditions.
First we perform the simulation of a shock wave propagation generated by a detonation of an explosive.
Experimental investigations on blast wave propagation in a complex environment using gram-range explosive charges are proposed in this paper.
In the design of explosive systems, the generic problem that one must consider is the propagation of a well-developed detonation wave sweeping through an explosive charge with a complex shape.
The downward propagation of the expansion wave superheats the water and triggers its explosive vaporization.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com