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In this study we examine influence of the radiation heat transfer on the combustion regimes in the mixture, formed by suspension of fine inert particles in hydrogen gas. The gaseous phase is assumed to be transparent for the thermal…

Fluid Dynamics · Physics 2015-07-24 M. A. Liberman , M. F Ivanov , A. D. Kiverin

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

Thermal radiation of the hot combustion products usually does not influence noticeably the flame propagating through gaseous mixture. the situation is changed drastically in the presence even small concentration of particles, which absorb…

Fluid Dynamics · Physics 2015-09-30 M. F. Ivanov , A. D. Kiverin , M. A. Liberman

The paper is concerned with identification of the key mechanisms controlling deflagration-to-detonation transition in stellar medium. The issue of thermal runaway triggered by positive feedback between the advancing flame and the…

Fluid Dynamics · Physics 2021-04-27 Peter V. Gordon , Leonid Kagan , Gregory Sivashinsky

The current work examines regimes of the hydrogen-oxygen flame propagation and ignition of mixtures heated by radiation emitted from the flame. The gaseous phase is assumed to be transparent for the radiation, while the suspended particles…

Fluid Dynamics · Physics 2015-11-24 Michael A. Liberman M. FIvanov , A. D. Kiverin

The problem of deflagration-to-detonation transition in an unconfined environment is revisited. With a freely expanding self-accelerating hydrogen-oxygen flame as an example, it is shown that deflagration-to-detonation transition is indeed…

Fluid Dynamics · Physics 2019-06-28 Andrey Koksharov , Leonid Kagan , Gregory Sivashinsky

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 detonation behaviors during thermonuclear burning indicate a state of robust hot spot burning and are widely present in astronomical phenomena, such as supernovae. In this work, we propose an analytical model including alpha-particle…

Plasma Physics · Physics 2024-12-18 Bohan Shen , Junjue Liao , Renjie He , Zekun Xu , Fuyuan Wu , Jie Zhang

When designing high-efficiency spark-ignition (SI) engines to operate at high compression ratios, one of the main issues that have to be addressed is detonation development from a pre-ignition front. In order to control this phenomenon, it…

The inflaton must convert its energy into radiation after inflation, which, in a conventional scenario, is caused by the perturbative inflaton decay. This reheating process would be much more complicated in some cases: the decay products…

High Energy Physics - Phenomenology · Physics 2013-03-05 Kyohei Mukaida , Kazunori Nakayama

Different simplified and detailed chemical models and their impact on simulations of combustion regimes initiating by the initial temperature gradient in methane/air mixtures are studied. The limits of the regimes of reaction wave…

Chemical Physics · Physics 2018-11-20 Cheng Wang , Chengeng Qian , JianNan Liu , Mikhail A. Liberman

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

Since detonation is the only established theory that allows rapid burning producing a high pressure that can be sustained in open areas, the generally accepted opinion was that the mechanism explaining the high rate of combustion in dust…

Chemical Physics · Physics 2019-01-01 Michael Liberman , Nathan Kleeorin , Igor Rogachevskii , Nils Haugen

The deflagration-to-detonation transition (DDT) process is of great importance to both combustion theory and industry safety. In this study, the propagating mechanism of Chapman-Jouguet (C-J) deflagration is studied. Firstly, three models…

Fluid Dynamics · Physics 2020-01-15 Yunfeng Liu , Wenshuo Zhang , Zijian Zhang

The effect of gas compression at the developed stages of flame acceleration in smooth-wall and obstructed channels is studied. We demonstrate analytically that gas compression moderates the acceleration rate and perform numerical…

Fluid Dynamics · Physics 2012-09-14 Vitaly Bychkov , Damir Valiev , V'yacheslav Akkerman , Chung K. Law

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

Effects of low-temperature chemistry induced by ultrafine water droplet evaporation on reaction front development from an ignition spot with temperature gradient are studied in this work. The Eulerian-Eulerian method is used to simulate the…

Fluid Dynamics · Physics 2021-08-25 Zhou Yu , Huangwei Zhang

Today, we have a variety of reactions at hand that can be used to multi-fragment nuclei. In many of these reactions even several sources of fragments can be discerned and characterized. There is overwhelming evidence that these sources of…

Nuclear Experiment · Physics 2019-08-14 W. Trautmann

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

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
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