黄金:Effects of heat loss and viscosity friction at walls on flame acceleration and deflagration to detonation transition论文

黄金:Effects of heat loss and viscosity friction at walls on flame acceleration and deflagration to detonation transition论文

本文主要研究内容

作者黄金,韩文虎,高向宇,王成(2019)在《Effects of heat loss and viscosity friction at walls on flame acceleration and deflagration to detonation transition》一文中研究指出:The coupled effect of wall heat loss and viscosity friction on flame propagation and deflagration to detonation transition(DDT) in micro-scale channel is investigated by high-resolution numerical simulations.The results show that when the heat loss at walls is considered, the oscillating flame presents a reciprocating motion of the flame front.The channel width and Boit number are varied to understand the effect of heat loss on the oscillating flame and DDT.It is found that the oscillating propagation is determined by the competition between wall heat loss and viscous friction.The flame retreat is led by the adverse pressure gradient caused by thermal contraction, while it is inhibited by the viscous effects of wall friction and flame boundary layer.The adverse pressure gradient formed in front of a flame, caused by the heat loss and thermal contraction, is the main reason for the flame retreat.Furthermore, the oscillating flame can develop to a detonation due to the pressure rise by thermal expansion and wall friction.The transition to detonation depends non-monotonically on the channel width.

Abstract

The coupled effect of wall heat loss and viscosity friction on flame propagation and deflagration to detonation transition(DDT) in micro-scale channel is investigated by high-resolution numerical simulations.The results show that when the heat loss at walls is considered, the oscillating flame presents a reciprocating motion of the flame front.The channel width and Boit number are varied to understand the effect of heat loss on the oscillating flame and DDT.It is found that the oscillating propagation is determined by the competition between wall heat loss and viscous friction.The flame retreat is led by the adverse pressure gradient caused by thermal contraction, while it is inhibited by the viscous effects of wall friction and flame boundary layer.The adverse pressure gradient formed in front of a flame, caused by the heat loss and thermal contraction, is the main reason for the flame retreat.Furthermore, the oscillating flame can develop to a detonation due to the pressure rise by thermal expansion and wall friction.The transition to detonation depends non-monotonically on the channel width.

论文参考文献

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  • 论文详细介绍

    论文作者分别是来自Chinese Physics B的黄金,韩文虎,高向宇,王成,发表于刊物Chinese Physics B2019年07期论文,是一篇关于,Chinese Physics B2019年07期论文的文章。本文可供学术参考使用,各位学者可以免费参考阅读下载,文章观点不代表本站观点,资料来自Chinese Physics B2019年07期论文网站,若本站收录的文献无意侵犯了您的著作版权,请联系我们删除。

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    黄金:Effects of heat loss and viscosity friction at walls on flame acceleration and deflagration to detonation transition论文
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