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Propagation of combustion waves in the shell-core energetic materials with external heat losses

机译:燃烧波在外壳核心能量材料中的传播与外部热损失

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In this paper, the properties and stability of combustion waves propagating in the composite solid energetic material of the shell-core type are numerically investigated within the one-dimensional diffusive-thermal model with heat losses to the surroundings. The flame speed is calculated as a function of the parameters of the model. The boundaries of stability are determined in the space of parameters by solving the linear stability problem and direct integration of the governing non-stationary equations. The results are compared with the characteristics of the combustion waves in pure solid fuel. It is demonstrated that a stable travelling combustion wave solution can exist for the parameters of the model for which the flame front propagation is unstable in pure solid fuel and it can propagate several times faster even in the presence of significant heat losses.
机译:在本文中,在壳体核心类型的复合固体能量材料中传播的燃烧波的性质和稳定性在与周围的热损失的一维扩散 - 热模型中进行了数量地研究。 火焰速度是根据模型参数的函数计算的。 通过求解线性稳定性问题并直接集成控制非固定式方程,在参数的空间中确定稳定性的边界。 将结果与纯固体燃料中的燃烧波的特性进行比较。 据证明,对于纯固体燃料中的火焰前传播不稳定的模型的参数,可以存在稳定的行驶燃烧波解决方案,即使在存在显着的热损失,它也可以快速传播多次。

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