首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Spatial and seasonal impacts of submerged aquatic vegetation (SAV) drag force on hydrodynamics in shallow waters
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Spatial and seasonal impacts of submerged aquatic vegetation (SAV) drag force on hydrodynamics in shallow waters

机译:淹没水生植被(SAV)拖力对浅水流体动力学的空间和季节影响

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Submerged aquatic vegetation (SAV) such as seagrass alters hydrodynamics as a drag force. Many studies have investigated the SAV drag force, but the time scales studied have been short (several days to a few weeks), ignoring seasonal variation, and the spatial scales have been small (several meters). Here, we performed field research and developed a new physical model incorporating seasonally varying SAV morphology (leaf length, leaf width, and shoot density) to investigate the effects of SAV drag force on the current field. We found that SAV attenuated the current velocity 50-70% during the 5-month computational period. Furthermore, the model showed a clear negative relationship between the leaf area index calculated from SAV morphology and current velocity. The physical model developed in this study can facilitate more accurate quantification of organic matter burial rates and the estimation of blue carbon sequestration by considering the SAV drag force.
机译:淹没水生植被(SAV),如海草改变流体动力学作为拖曳力。 许多研究已经调查了SAV拖曳力量,但学习的时间尺度短(几天到几周),忽略季节性变化,空间尺度一直很小(几米)。 在这里,我们进行了现场研究,并开发了一种新的物理模型,该物理模型包含季节性不同的扑珠(叶长度,叶宽和拍摄密度),以研究节拍拖曳力对当前场的影响。 我们发现,在5个月的计算期间,SAM衰减50-70%。 此外,该模型显示了从SAV形态和当前速度计算的叶面积指数之间的明显负相关。 本研究中开发的物理模型可以通过考虑SAV拖曳力来促进有机物质埋藏率的更准确定量有机物质埋管率和估计蓝碳封存。

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