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Quantifying vertical mixing in estuaries

机译:量化河口的垂直混合

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Estuarine turbulence is notable in that both the dissipation rate and the buoyancy frequency extend to much higher values than in other natural environments. The high dissipation rates lead to a distinct inertial subrange in the velocity and scalar spectra, which can be exploited for quantifying the turbulence quantities. However, high buoyancy frequencies lead to small Ozmidov scales, which require high sampling rates and small spatial aperture to resolve the turbulent fluxes. A set of observations in a highly stratified estuary demonstrate the effectiveness of a vessel-mounted turbulence array for resolving turbulent processes, and for relating the turbulence to the forcing by the Reynolds-averaged flow. The observations focus on the ebb, when most of the buoyancy flux occurs. Three stages of mixing are observed: (1) intermittent and localized but intense shear instability during the early ebb; (2) continuous and relatively homogeneous shear-induced mixing during the mid-ebb, and weakly stratified, boundary-layer mixing during the late ebb. The mixing efficiency as quantified by the flux Richardson number Rf was frequently observed to be higher than the canonical value of 0.15 from Osborn (J Phys Oceanogr 10:83–89, 1980). The high efficiency may be linked to the temporal–spatial evolution of shear instabilities.
机译:河口湍流的显着之处在于耗散率和浮力频率都比其他自然环境中的值高得多。高耗散率会导致速度谱和标量谱中出现明显的惯性子范围,可用于量化湍流量。然而,高浮力频率导致较小的Ozmidov尺度,这需要较高的采样率和较小的空间孔径才能解决湍流。在高度分层的河口中的一组观测结果表明,安装在容器上的湍流阵列对于解决湍流过程以及将湍流与雷诺平均流强迫联系起来的有效性。当大多数浮力通量发生时,观察集中在退潮。观察到三个阶段的混合:(1)在早期退潮期间出现间歇性和局部性但强烈的剪切不稳定性; (2)在退潮中期进行连续且相对均匀的剪切诱导混合,在退潮后期进行弱分层的边界层混合。经常观察到由通量理查森数Rf量化的混合效率高于Osborn的标准值0.15(J Phys Oceanogr 10:83-89,1980)。高效率可能与剪切不稳定性的时空演化有关。

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