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Scalings for unsteady natural convection boundary layer under time-varying heating flux in a small Prandtl number fluid

机译:在小Prandtl数流体中的时变热通量下的不稳定自然对流边界层的缩放

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The unsteady natural convection boundary layer (NCBL) on a vertical wall heated by time-varying flux in initially quiescent homogeneous fluid with a small Prandtl number (Pr) was studied. Scalings for the parameters typifying NCBL behavior, including plate temperature, maximum vertical velocity, thermal boundary-layer thickness, and velocity boundary-layer thickness, at different development stages, and the time for the transition from the start-up stage to the quasi-steady state, were developed by scaling analysis. The obtained scalings were compared to and validated by the numerical results with different values of Pr, the Rayleigh number Ra and the dimensionless time-varying heat flux frequency fn, over 106 ≤ Ra ≤ 109, 0.01 ≤ Pr ≤ 0.5, and 0.001 ≤ fn ≤ 0.025. It is also found that the development of the boundary layer at the start-up stage is one-dimensional and but becomes two-dimensional at the quasi-steady state.
机译:研究了在最初静态均匀流体中通过时变焊的垂直壁上加热的垂直壁上的不稳定自然对流边界层(NCBL)进行了研究。 用于分别NCBL行为的参数的缩放,包括板温度,最大垂直速度,热边界层厚度和速度边界层厚度,在不同的开发阶段,以及从启动阶段转换到准则的时间 通过缩放分析开发了稳定状态。 将获得的缩放进行比较,并通过使用PR的不同值,瑞利数Ra和无量纲时变热通量Fn的数值结果进行比较和验证,超过106≤RA≤109,0.01≤Pr≤0.5,0.001≤fn ≤0.025。 还发现,启动阶段的边界层的开发是一维的,但是在准稳态处变得二维。

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