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首页> 外文期刊>Boundary-Layer Meteorology >On the Time Evolution of the Turbulent Kinetic Energy Spectrum for Decaying Turbulence in the Convective Boundary Layer
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On the Time Evolution of the Turbulent Kinetic Energy Spectrum for Decaying Turbulence in the Convective Boundary Layer

机译:对流边界层中湍流衰减的湍动能谱的时间演化

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Our focus is the time evolution of the turbulent kinetic energy for decaying turbulence in the convective boundary layer. The theoretical model with buoyancy and inertial transfer terms has been extended by a source term due to mechanical energy and validated against large-eddy simulation data. The mechanical effects in a boundary layer of height z i at a convective surface-layer height z = 0.05z i are significant in the time evolution of the vertical component of the spectrum, i.e. they enhance the decay time scale by more than an order of magnitude. Our findings suggest that shear effects seem to feedback to eddies with smaller wavenumbers, preserving the original shape of the spectrum, and preventing the spectrum from shifting towards shorter wavelengths. This occurs in the case where thermal effects only are considered.
机译:我们的重点是对流边界层中湍流动能的时间演化,以衰减湍流。具有浮力和惯性传递项的理论模型由于机械能而已通过源项进行了扩展,并已针对大涡模拟数据进行了验证。对流表面层高度z = 0.05z i 时,高度z i 的边界层中的机械效应在光谱垂直分量的时间演化中很重要,即它们将衰减时间尺度提高了一个数量级以上。我们的发现表明,剪切效应似乎会反馈给较小波数的涡流,从而保留光谱的原始形状,并防止光谱向较短波长移动。在仅考虑热效应的情况下会发生这种情况。

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