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Laboratory Experiments on Eddy Generation by a Buoyant Coastal Current Flowing over Variable Bathymetry

机译:可变测深仪上浮流产生的涡流产生的室内实验

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Irminger rings are warm-core eddies formed off the west coast of Greenland. Recent studies suggest that these eddies, which are implicated in the rapid springtime restratification of the Labrador Sea, are formed by an internal instability of the West Greenland Current (WGC), triggered by bathymetric variations. This study seeks to explore the effect of the magnitude and downstream length scale of bathymetric variations on the stability of a simple model of the WGC in a series of laboratory experiments in which a buoyant coastal current was allowed to flow over bathymetry consisting of piecewise constant slopes of varying magnitude. The currents did not form eddies over gently sloping bathymetry and only formed eddies over steep bathymetry if the current width exceeded the width of the sloping bathymetry. Eddying currents were immediately stabilized if they flowed onto gently sloping topography. Bathymetric variations that persisted only a short distance downstream perturbed the flow locally but did not lead to eddy formation. Eddies formed only once the downstream length of the bathymetric variations exceeded a critical scale of about 8 Rossby radii. These results are consistent with the observed behavior of the WGC, which begins to form Irminger rings after entering a region where the continental slope abruptly steepens and becomes narrower than the WGC itself in a region spanning about 20-80 Rossby radii of downstream distance.
机译:Irminger环是格陵兰岛西海岸外形成的暖核涡流。最近的研究表明,这些漩涡与拉布拉多海的春季快速重新定殖有关,是由测深变化引起的西格陵兰洋流(WGC)的内部不稳定性形成的。这项研究试图通过一系列实验室实验探索测深变化的大小和下游长度尺度对WGC简单模型稳定性的影响,在该实验中,允许沿海浮力流过由分段恒定斜率组成的测深大小各异。如果电流宽度超过倾斜测深仪的宽度,则电流不会在平缓的测深仪上形成涡流,而只会在陡峭的测深仪上形成涡流。如果涡流流入平缓倾斜的地形,涡流将立即稳定。在下游仅持续很短距离的测深变化会局部扰动水流,但不会导致涡流形成。仅当测深变化的下游长度超过约8 Rossby半径的临界范围时,才形成涡流。这些结果与WGC的观察到的行为一致,WGC进入大陆倾斜突然陡峭并比WGC本身窄的区域后,在下游距离约20-80的Rossby半径的区域开始形成艾明格环。

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