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首页> 外文期刊>Journal of Physical Oceanography >Upslope Internal-Wave Stokes Drift, and Compensating Downslope Eulerian Mean Currents, Observed above a Lakebed
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Upslope Internal-Wave Stokes Drift, and Compensating Downslope Eulerian Mean Currents, Observed above a Lakebed

机译:在湖床上方观测到的上坡内波斯托克斯漂移和补偿下坡欧拉平均流

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摘要

In a small lake, where flows were dominated by internal waves with 10-32-h period, slow but persistent mean transport of water over many wave periods was examined. Acoustic Doppler profilers (ADPs) and a vertical string of temperature loggers were deployed where the lower thermocline intersected the sloping lakebed. Near (<1 m above) the bed, internal waves, coherent with a lakewide seiche, propagated upslope at similar to 0.023 m s(-1). Near-bed wave-induced water velocity fluctuations had a standard deviation of <0.02 m s(-1). Near the surface, velocity fluctuations had similar magnitude, but lateral wave propagation was unclear. Averaged over many wave periods, the near-bed Eulerian velocity flowed downslope at; similar to 0.01 m s(-1), and was roughly cancelled by an upslope internal-wave Stokes drift (estimated by assuming that weakly nonlinear waves propagated without change of form). To examine net transport, while relaxing approximations used to estimate the Stokes drift, the observed temperature range (9 degrees-25 degrees C) was divided into 0.5 degrees C increments, and the depth-integrated, wave-averaged flux of water in each temperature class was calculated. The coldest (near-bed) water was slowly transported onshore, opposite the Eulerian mean velocity. Onshore flux of warm near-surface water was comparable to an Eulerian-mean flux, indicating minimal near-surface Stokes drift. Intermediate water, from the middle of the water column and the outer boundary layer, was transported offshore by an offshore Stokes drift. The downslope near-bed Eulerian mean velocity, together with intensification of mean stratification within 0.4 m of the bed, may enhance boundary layer mixing.
机译:在一个小湖中,水流以内部波浪为主,周期为10-32小时,研究了许多波浪周期中缓慢但持续的平均水输送情况。在下部温跃层与倾斜的湖床相交的地方部署了声学多普勒剖面仪(ADP)和垂直的温度记录仪串。在河床附近(上方<1 m),内波与整个湖面的干iche相干,以约0.023 m s(-1)的速度向上传播。近床波引起的水速波动的标准偏差小于0.02 m s(-1)。在地表附近,速度波动幅度相似,但侧波传播尚不清楚。在许多波周期内平均,近地层欧拉速度在处向下倾斜。类似于0.01 m s(-1),并且被上坡的内部波斯托克斯漂移所抵消(假设弱非线性波的传播没有改变形状,则可以估算)。为了检查净输运,在放宽近似值以估计斯托克斯漂移的同时,将观测到的温度范围(9摄氏度至25摄氏度)分为0.5摄氏度的增量,并在每个温度下对水进行了深度积分和波平均类已计算。与欧拉平均速度相反,最冷的(近床层)水在岸上缓慢输送。陆上温暖的近地表水通量与欧拉平均通量相当,表明近地表斯托克斯漂移最小。来自水柱中间和外边界层的中间水通过离岸斯托克斯漂流被输送到离岸。下坡近地层欧拉平均速度,加上在地层0.4 m内平均分层的增强,可能会增强边界层的混合。

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  • 来源
    《Journal of Physical Oceanography 》 |2016年第6期| 1947-1961| 共15页
  • 作者

    Henderson Stephen M.;

  • 作者单位

    Washington State Univ, Sch Environm, 14204 NE Salmon Creek Ave, Vancouver, WA 98686 USA;

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  • 正文语种 eng
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