首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >INFLUENCE OF VIBRATIONAL EXCITATION OF THE GAS ON THE POSITION OF THE LAMINAR-TURBULENT TRANSITION REGION ON A FLAT PLATE
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INFLUENCE OF VIBRATIONAL EXCITATION OF THE GAS ON THE POSITION OF THE LAMINAR-TURBULENT TRANSITION REGION ON A FLAT PLATE

机译:气体振动激发对平板上的层状湍流过渡区域位置的影响

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The influence of thermal nonequilibrium on the laminar-turbulent transition is studied with the use of the e(N)-method for two widespread flow regimes in a supersonic boundary layer at the Mach number M = 4.5. The set of the actual frequencies of spatial disturbances is determined on the basis of the neutral curves for temporal disturbances. Families of the curves of N-factors are calculated for selected frequencies. Then, based on the envelopes of these curves, the transition Reynolds number Re-delta T for a given transition factor N-T is determined. The calculations show that the transition region in the case with N-T = 8 and vibrational excitation level below the dissociation limit is located 12-14% downstream as compared to the transition region in a perfect gas.
机译:利用E(n) - 在马赫数M = 4.5处的超声波边界层中的两个广泛的流动调节,研究了热非预测对层状湍流转变的影响。 基于用于时间扰动的中性曲线来确定空间扰动的实际频率集。 针对所选频率计算N因子的曲线曲线。 然后,基于这些曲线的信封,确定给定转换因子N-T的转换雷诺数RE-DELTA T. 计算结果表明,与完美气体中的过渡区域相比,在解离限制下方的情况下的过渡区域和低于解离限制的振动激发水平位于12-14%下游。

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