gaseous detonation
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Materials ◽  
2021 ◽  
Vol 14 (23) ◽  
pp. 7443
Author(s):  
Cezary Senderowski ◽  
Andrzej J. Panas ◽  
Bartosz Fikus ◽  
Dariusz Zasada ◽  
Mateusz Kopec ◽  
...  

In this paper, dynamic interactions between the FeAl particles and the gaseous detonation stream during supersonic D-gun spraying (DGS) conditions into the water are discussed in detail. Analytical and numerical models for the prediction of momentum and complex heat exchange, that includes radiative effects of heat transfer between the FeAl particle and the D-gun barrel wall and phase transformations due to melting and evaporation of the FeAl phase, are analyzed. Phase transformations identified during the DGS process impose the limit of FeAl grain size, which is required to maintain a solid state of aggregation during a collision with the substrate material. The identification of the characteristic time values for particle acceleration in the supersonic gas detonation flux, their convective heating and heat diffusion enable to assess the aggregation state of FeAl particles sprayed into water under certain DGS conditions.


Author(s):  
S.A. Kozyrev ◽  
E.A. Vlasova

Reducing emissions of hazardous pollutants that have a negative impact on the environment and human health has been approved as one of the strategic objectives of Russia's development. More than 90% of minerals in mined using blast energy. Despite an increase in the share of non-explosive component mixtures used in mining, blasting still poses a hazard to miners as the gaseous detonation products are potentially dangerous. The composition of blast gaseous products is extremely important in underground blasting because air exchange is difficult under these conditions and the blast products can contaminate the atmosphere of underground excavations, causing illness or poisoning of miners. Currently, there are no uniform requirements for obtaining information on the amount of gaseous blast products that would be hazardous to the human organism. Available documents do not contain information on the permissible amounts of toxic oxides per 1 kg of explosive detonated. The article compares the results of studying gas toxic hazard of industrial explosives obtained by different methods and based on different criteria.


Fluids ◽  
2021 ◽  
Vol 6 (6) ◽  
pp. 224
Author(s):  
Pavel N. Krivosheyev ◽  
Alexey O. Novitski ◽  
Kirill L. Sevrouk ◽  
Oleg G. Penyazkov ◽  
Ivan I. But ◽  
...  

Gaseous detonation propagation in a thin channel with regularly spaced cylindrical obstacles was investigated experimentally and numerically. The wave propagation with substantial velocity deficits is observed and the details of its propagation mechanism are described based on experimental measurements of the luminosity and pressure and on three-dimensional flow fields obtained by numerical simulations. Both experiments and simulations indicate a significant role of shock–shock and shock–obstacle interactions in providing high-temperature conditions necessary to sustain the reaction wave propagation.


2021 ◽  
Vol 11 (9) ◽  
pp. 3951
Author(s):  
Hui Zhao ◽  
Huiyuan Li ◽  
Haitao Zhao ◽  
Leisheng Li ◽  
Jian Li

The influence of different bend curvatures on the detonation wave propagation was analyzed by an advanced numerical simulation system. The mechanism of propagation properties is revealed by cellular structure, internal and external boundary pressure distribution, propagation process of detonation wave and chemical reaction. The cellular structure and detonation wave front of bend with different curvature are very different. The simulation results show that the detonation wave with regular cell structure propagating through the curved parts induces detonation cell size increased by diffraction near the inner wall while detonation reflected on the bottom surface resulting in decrease of cell size. Detonation wave was affected by the rarefaction wave and compression wave in the bent pipe. The pressure distribution of the bend shows that the peak pressure in the 450 curvature is the largest, which should be paid more attention in industrial design. The chemical reaction could indicate the propagation characteristics of detonation wave, and different propagation characteristics have different profiles of chemical components.


2021 ◽  
Vol 259 ◽  
pp. 124037
Author(s):  
Tiejun Zhao ◽  
Honghao Yan ◽  
Jianwei Yue ◽  
Jianqi Wang ◽  
Jianwei Zhang ◽  
...  

2021 ◽  
Vol 57 (6) ◽  
pp. 77-86
Author(s):  
T.-J. Zhao ◽  
X.-H. Wang ◽  
S. Kang ◽  
Z.-F. Wang ◽  
H.-H. Yan

Author(s):  
H. QUINTENS ◽  
◽  
Q. MICHALSKI ◽  
F. VIROT ◽  
J. SOTTON ◽  
...  

This study experimentally investigates the wall heat transfer due to gaseous detonation propagation in a cylindrical tube. Type-E thermocouples, embedded into the wall, flushed at the surface and aligned along the last part of the tube, measured successively the temperature lift in the wall during detonation propagation.


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