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Stationary regimes of cooling porous objects with periodically distributed energy-release sources

机译:具有定期分布的能量释放源的冷却多孔对象的固定制度

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摘要

AbstractUnder study is the one-dimensional stationary regime of gas motion through porous objects with periodically distributed intensity of energyrelease and some given pressure difference on the open boundaries of the object, i.e. under a kind of self-regulation of the gas flow rate through the object. The obtained numerical-analytical solution of the problem is analyzed in a wide range of key parameters, and the basic regularities of the process under study are revealed. It is shown that, under a periodical distribution of the energyrelease sources, the dependence of the phase temperatures, filtration rate, and gas density on the height of the object is also oscillatory; however, pressure changes monotonically.We show that the local maxima of the solidmedium temperature and energy release do not coincide, whereas their local minima can coincide only at those points where the heat release is absent. We show that, under a periodical distribution of the energyrelease sources, the maximum heating and other parameters can differ substantially from those for the uniform energyrelease with the same total heat release.We demonstrate that, as the frequency of oscillations increases of the heat-release intensity, the values of all defined parameters converge to those under the uniform energyrelease with the same total heat release as in the case of all frequencies that are even integer.
机译:<标题>抽象 ara>在研究中是通过多孔对象具有定期分布的能量释放强度和对象的开放边界的一些给定压力差的一维静止制度,即在某种之下通过物体自调节气体流速。在各种关键参数中分析了该问题的所得数值分析解决方案,并揭示了研究过程的基本规律。结果表明,在能量释放源的周期性分布下,相温度,过滤速率和气体密度对物体高度的依赖性也是振荡的;然而,压力变化单调。我们表明,固体温度和能量释放的局部最大值不一致,而它们的局部最小值只能在不存在热释放的那些点处重合。我们表明,在能量释放源的周期性分布下,最大加热和其他参数可以基本上与具有相同总热释放的均匀能量释放的加热和其他参数不同。我们证明了,随着振荡频率的频率增加了热释放的增加强度,所有定义参数的值会聚到均匀的能量释放下的那些与偶数整数的频率相同的总热量释放。

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