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Related papers: Deflagration-to-detonation transition in an unconf…

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We investigate the properties of mixed H/He flames in X-ray bursts using 2D hydrodynamic simulations. We find that as the initial hydrogen abundance of the atmosphere increases, the flame is less energetic and propagates slower. The…

High Energy Astrophysical Phenomena · Physics 2025-05-21 Eric T. Johnson , Michael Zingale

We present direct numerical simulations demonstrating deflagration-to-detonation transition (DDT) driven by oxygen flames in Type Ia supernova progenitors. Using the Castro hydrodynamics code coupled with the ``aprox13'' 13-isotope nuclear…

High Energy Astrophysical Phenomena · Physics 2025-10-31 Xiaoyu Zhang , Lile Wang , Yang Gao , Yao Zhou

The problem of spontaneous acceleration of premixed flames propagating in open horizontal tubes with smooth walls is revisited. It is proved that in long tubes, this process can be considered quasi-steady, and an equation for the flame…

Fluid Dynamics · Physics 2015-06-16 Kirill A. Kazakov

Multidimensional numerical simulations of a homogeneous, chemically reactive gas were used to study ignition, flame stability, and deflagration-to-detonation transition (DDT) in a supersonic combustor. The configuration studied was a…

Fluid Dynamics · Physics 2017-11-15 Gabriel B. Goodwin , Elaine S. Oran

An extension of the model described in a previous work of Maillet, Soulard and Stoltz based on a Dissipative Particule Dynamics is presented and applied to liquid nitromethane. Large scale non-equilibrium simulations of reacting…

Materials Science · Physics 2011-07-19 J. -B. Maillet , G. Vallverdu , N. Desbiens , G. Stoltz

The study on deflagration-to-detonation transition (DDT) is very important because this mechanism has relevance to safety issues in industries, where combustible premixed gases are in general use. However, the quantitative prediction of DDT…

Fluid Dynamics · Physics 2018-08-29 Yun-Feng Liu , Huan Shen , De-Liang Zhang , Zong-Lin Jiang

We study a flame propagating in the gaseous combustible mixture with suspended inert particles. The gas is assumed to be transparent for the radiation emitted by the combustion products, while particles absorb and re-emit the radiation.…

Fluid Dynamics · Physics 2015-07-03 M. F. Ivanov , A. D. Kiverin , M. A. Liberman

We address the problem of shock induced ignition and transition to detonation in a reactive medium in the presence of mechanically induced fluctuations by a moving oscillating piston. For the inert problem prior to ignition, we provide a…

Fluid Dynamics · Physics 2025-02-25 Wentian Wang , James McDonald , Matei Ioan Radulescu

The transition of shock-to-detonation is of great significance for the investigation of supernova formation, disaster prevention and supersonic propulsion technology. In this paper, the influence Equation of shock-to-detonation transition…

Fluid Dynamics · Physics 2024-08-07 Hao Yan , Haochen Xiong , Xin Han , Chongguang Shi , Yancheng You

The conventional theory of burning works well in the case of uniform media where all system parameters are spatially independent. We develop a theory of burning in disordered media. In this case, rare regions (hot spots) where the burning…

Statistical Mechanics · Physics 2017-03-06 Mauro Schiulaz , Christopher R. Laumann , Alexander V. Balatsky , Boris Z. Spivak

The role of viscous stress in heating of the fuel mixture in deflagration-to-detonation transition in tubes is studied both analytically and numerically. The analytical theory is developed in the limit of low Mach number; it determines…

The Challenger disaster and purposeful experiments with liquid hydrogen (H2) and oxygen (Ox) tanks demonstrated that cryogenic H2/Ox fluids always self-ignite in the process of their mixing. Here we propose a cavitation-induced…

Fluid Dynamics · Physics 2015-05-27 V. V. Osipov , C. B. Muratov , E. Ponizovskya-Devine , M. Foygel , V. N. Smelyanskiy

In the current study, the influence of turbulent mixing and local reaction rates on deflagration to detonation transition (DDT) was investigated using a state-of-the-art large eddy simulation (LES) strategy. Specifically, detonation…

Fluid Dynamics · Physics 2017-08-10 Brian Maxwell , Andrzej Pekalski , Matei Radulescu

The general relation between ignition and deflagration analyses was studied theoretically and computationally. Simple analysis showed that the temporal evolutions of normalized fuel mass fraction and the normalized temperature in a 0D…

Fluid Dynamics · Physics 2023-01-19 Youhi Morii , Kaoru Maruta

We show experimentally and numerically that when a weak shock interacts with a finger flame in a narrow channel, an extremely efficient mechanism for deflagration to detonation transition occurs. This is demonstrated in a 19-mm-thick…

Fluid Dynamics · Physics 2019-11-14 Hongxia Yang , Matei I. Radulescu

In this paper we formulate and analyze an elementary model for the propagation of advancing autoignition fronts in reactive co-flow fuel/oxidizer jets injected into an aqueous environment at high pressure. This work is motivated by the…

Fluid Dynamics · Physics 2024-02-27 Amanda Matson , Michael C. Hicks , Uday G. Hegde , Peter V. Gordon

Theory and computations have established that thermodynamic gradients created by hot spots in reactive gas mixtures can lead to spontaneous detonation initiation. However, the current laminar theory of the temperature-gradient mechanism for…

Fluid Dynamics · Physics 2019-11-26 Colin A. Z. Towery , Alexei Y. Poludnenko , Peter E. Hamlington

We derive the criteria for deflagration to detonation transition (DDT) in a Type Ia supernova. The theory is based on the two major assumptions: (i) detonation is triggered via the Zeldovich gradient mechanism inside a region of mixed fuel…

Astrophysics · Physics 2009-10-28 A. M. Khokhlov , E. S. Oran , J. Craig Wheeler

We build in this paper a numerical solution procedure to compute the flow induced by a spherical flame expanding from a point source at a constant expansion velocity, with an instantaneous chemical reaction. The solution is supposed to be…

Numerical Analysis · Mathematics 2020-10-19 D Grapsas , R Herbin , J. -C Latché , Y Nasseri

It is known that unconfined dust explosions consist of a relatively weak primary (turbulent) deflagrations followed by a devastating secondary explosion. The secondary explosion may propagate with a speed of up to 1000 m/s producing…

Fluid Dynamics · Physics 2020-04-17 M. Liberman , N. Kleeorin , I. Rogachevskii , N. E. L. Haugen