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Wind-driven water motions in wetlands with emergent vegetation

机译:植被萌生的湿地的风驱动水运动

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摘要

Wetland biogeochemical transformations are affected by flow and mixing in wetland surface water. We investigate the influence of wind on wetland water flow by simultaneously measuring wind and surface water velocities in an enclosed freshwater wetland during 1 day of strong-wind conditions. Water velocities are measured using a Volumetric Particle Imager while wind velocities are measured via sonic-anemometer. Our measurements indicate that the wind interacting with the vegetation canopy generates coherent billows and that these billows are the dominant source of momentum into the wetland water column. Spectral analysis of velocity time series shows that the spectral peak in water velocity is aligned with the spectral peak of in-canopy wind velocity, and that this peak corresponds with the Kelvin-Helmholtz billow frequency predicted by mixing layer theory. We also observe a strong correlation in the temporal pattern of velocity variance in the air and water, with high variance events having similar timing and duration both above and below the air-water interface. Water-side variance appears coupled with air-side variance at least down to 5 cm, while the theoretical Stokes' solution predicts momentum transfer down to only 2 mm assuming transfer via molecular viscosity alone. This suggests that the wind-driven flow contributed to significant mixing in the wetland water column.
机译:湿地生物地球化学转化受湿地表水的流动和混合影响。通过在强风条件下1天同时测量封闭的淡水湿地中的风速和地表水速,我们研究了风对湿地水流的影响。使用体积颗粒成像仪测量水速,而通过声速风速计测量风速。我们的测量表明,风与植被冠层相互作用会产生连贯的涛涛,而这些涛涛是进入湿地水柱的动量的主要来源。速度时间序列的频谱分析表明,水流速度的频谱峰值与冠层风速的频谱峰值一致,并且该峰值与混合层理论预测的开尔文-亥姆霍兹滚滚频率相对应。我们还观察到空气和水中速度变化的时间模式有很强的相关性,高变化事件在空气-水界面的上方和下方都具有相似的时间和持续时间。水侧变化似乎与空气侧变化至少低至5 cm一起出现,而理论上的Stokes解决方案则假设仅通过分子粘度传递时,动量传递仅会减小至2 mm。这表明风力驱动的流动有助于湿地水柱中的显着混合。

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  • 来源
    《Water resources research》 |2016年第4期|2571-2581|共11页
  • 作者单位

    Univ Calif Berkeley, Dept Civil & Environm Engn, Berkeley, CA 94720 USA;

    Univ Calif Berkeley, Dept Civil & Environm Engn, Berkeley, CA 94720 USA|Calif State Univ Sacramento, Dept Civil & Environm Engn, Sacramento, CA 95819 USA;

    Univ Calif Berkeley, Dept Civil & Environm Engn, Berkeley, CA 94720 USA;

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