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Multiplicity and stability of travelling wave solutions in a free boundary combustion-radiation problem

机译:自由边界燃烧-辐射问题中行波解的多重性和稳定性

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摘要

We study travelling wave solutions of a one-dimensional two-phase Free Boundary Problem, which models premixed flames propagating in a gaseous mixture with dust. The model combines diffusion of mass and temperature with reaction at the flame front, the reaction rate being temperature dependent. The radiative effects due to the presence of dust account for the divergence of the radiative flux entering the equation for temperature. This flux is modelled by the Eddington equation. In an appropriate limit the divergence of the flux takes the form of a nonlinear heat loss term. The resulting reduced model is able to capture a hysteresis effect that appears if the amount of fuel in front of the flame, or equivalently, the adiabatic temperature is taken as a control parameter.
机译:我们研究一维两相自由边界问题的行波解,该问题模型模拟了在含尘气体混合物中传播的预混火焰。该模型将质量和温度的扩散与火焰前沿的反应结合在一起,反应速率取决于温度。由于存在粉尘而产生的辐射效应解释了进入温度方程式的辐射通量的差异。该通量由爱丁顿方程式建模。在适当的限制下,磁通量的发散采取非线性热损失项的形式。如果将火焰前的燃料量(或等效地,将绝热温度)作为控制参数,则所得的简化模型能够捕获出现的滞后效应。

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