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RADINS equations for aerated shallow water flows over rough beds

机译:粗糙床上充气浅水流的RADINS方程

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摘要

Depth-averaged equations describing turbulent free-surface flows are usually derived assuming that the free surface is constant over a statistical ensemble of realizations. This work presents the derivation of the Reynolds-Averaged-Depth-Integrated Navier-Stokes (RADINS) equations obtained if this assumption is removed. These equations are applied to transient turbulent open-channel flow over a rough bed with an aerated free surface containing air bubbles. The RADINS equations contain terms which explicitly include the contribution of turbulent free-surface fluctuations to the large-scale volume and momentum transfer. These terms are evaluated in a laboratory experiment which involves a turbulent bore climbing up a rough slope. The new RADINS equations are compared with the conventional depth-integrated-Reynolds-averaged Navier-Stokes (DIRANS) equations. The RADINS and DIRANS equations are identical only for flows with negligible depth fluctuations. If this condition is not satisfied, the equations are different and the terms in the RADINS equations have a clearer physical meaning.
机译:通常假设假定自由表面在统计上的整体上是恒定的,则得出描述湍流自由表面流的深度平均方程。这项工作提出了雷诺平均深度积分纳维斯托克斯(RADINS)方程的推导(如果删除了该假设)。这些方程式适用于粗糙床上的瞬态湍流明渠流动,该粗糙床具有充气的自由表面,其中包含气泡。 RADINS方程包含明确包含湍流自由表面波动对大规模体积和动量传递的贡献的项。这些术语是在实验室实验中评估的,该实验涉及一个湍流孔,其爬上一个粗糙的斜坡。将新的RADINS方程与常规的深度积分-雷诺平均Navier-Stokes(DIRANS)方程进行比较。 RADINS和DIRANS方程仅对于深度波动可忽略不计的流是相同的。如果不满足此条件,则方程式将不同,并且RADINS方程式中的术语具有更清晰的物理含义。

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