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Mathematical simulation of three-dimensional spin regimes of gasless combustion

机译:无气燃烧的三维自旋态的数学模拟

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A three-dimensional mathematical model is constructed for the gasless combustion of a solid circular cyindrical specimen.The steady-stated spin regimes obtained were studied gy numerical methods.The structure and mechanism of spin combustion are liiustrated and discussed.It is shown how the space-time pattern of spin-wave propagation is complicated as the radius of the cylinder increases.Spin propagation of the front can proceed in a regime in which the structure of the front does not change(for small radii of the sample)or in an unsteady regime,in which the structure of the front undergoes numerous changes over a period.In the second case,a synchronous or alternate“flicker”of the sites is observed on the surface of the cylinder.The ninuniqueness of the comustion regimes is detected.It is shown that the average velocity of propagation of the spin-combustion front is of the order of the velocity of steady front propagation under adiabatic conditions.
机译:建立了固体圆形圆柱试样无气燃烧的三维数学模型,采用数值方法研究了稳态的自旋态,并对自旋燃烧的结构和机理进行了探讨和探讨,并说明了空间如何圆柱半径增大时,自旋波传播的时间模式变得复杂。锋面的自旋传播可以在这样一种状态下进行:前锋的结构不发生变化(对于样品的半径很小),或者不稳定在第二种情况下,在圆柱体表面观察到同步或交替的“闪烁”位。检测到了燃烧方式的非唯一性。结果表明,在绝热条件下,自旋燃烧锋面的平均传播速度约为稳定锋面传播的速度。

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