Journal Article10.1023/A:1024726619703
Gas detonation and its application in engineering and technologies (review)
89
TL;DR: The most relevant aspects of advanced experimental investigations of gas detonation and its mathematical simulation are presented in this article, along with some examples of the engineering use of gas explosion and its applications.
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Abstract: The most relevant aspects of advanced experimental investigations of gas detonation and its mathematical simulation are presented. Examples of the engineering use of gas detonation are given.
read more
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Citations
Computer-Controlled Detonation Spraying: From Process Fundamentals Toward Advanced Applications
TL;DR: In this paper, computer-controlled detonation spraying is applied for deposition of diverse powders, in particular cermets, to form various protective coatings and its application in nontraditional domains as development of composite and graded coatings or metallization of plastics.
131
Flame acceleration and deflagration-to-detonation transition in micro- and macro-channels: An integrated mechanistic study
TL;DR: In this paper, the integrated processes of flame acceleration, deflagration-to-detonation transition (DDT), and the resulting detonation propagation in micro- and macro-scale channels are simulated.
114
Spinning detonation and velocity deficit in small diameter tubes
S. Kitano,M. Fukao,Akio Susa,N. Tsuboi,A.K. Hayashi,Mitsuo Koshi +5 more
- 01 Jan 2009
TL;DR: In this article, the transition from a multi-head to a spinning detonation occurred at the pressure where the cell size is equal to the length of circumference, and the velocity was 95% of the C-J detonation.
65
Computer-Controlled Detonation Spraying: Flexible Control of the Coating Chemistry and Microstructure
Vladimir Yu. Ulianitsky,Dina V. Dudina,Alexandr A. Shtertser,Igor Smurov +3 more
- 20 Nov 2019
TL;DR: In this article, the potential of computer-controlled detonation spraying (CCDS) for producing and designing coatings with variable chemical and phase compositions and microstructure and promising properties is described.
Effect of chemically inert particles on parameters and suppression of detonation in gases
TL;DR: In this paper, an algorithm for calculating the parameters of a steady one-dimensional detonation wave in mixtures of a gas with chemically inert particles and estimating the detonation-cell size in such mixtures is proposed.
40
References
Initiation of detonation in hydrogen-air mixture by explosion of a spherical tnt charge
TL;DR: In this article, the critical mass of the initiating charge is determined numerically using a finite-difference method based on the Godunov scheme, taking into account the real chemical kinetics of combustion of hydrogen in air and the real equation of state for gaseous detonation products of TNT.