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The penetrative mixing in the Laptev Sea coastal polynya pycnocline layer

机译:拉普捷夫海沿岸多年生多菌灵层的渗透性混合

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摘要

The large recurrent areas of open water and/or thin ice (polynyas) producing cold brine-enriched waters off the fast-ice edge are evident in the Laptev Sea in winter time. A number of abrupt positively correlated transitions in temperature and salinity were recorded in the bottom and intermediate layers at a mooring station in the West New Siberian (WNS) polynya in February-March 2008. Being in the range of -0.5 degrees C and -1.6 psu these changes are induced by horizontal motions across the polynya and correspond to temperature and salinity horizontal gradients in the range of 0.3-1.0 degrees C/10 km and 1.4-3.5 psu/10 km, respectively. The events of distinct freshening and temperature decrease coincide with a northward current off the fast-ice edge, while southward currents brought saltier and warmer waters at intermediate depths. We suggest that the observed transitions are connected to altering pycnocline depths across the polynya. The source of relatively fresher waters at the intermediate depths in polynya is supposed to originate from penetrative mixing of surface low salinity waters to intermediate water depth. Several forcing processes that could be responsible for a penetrative mixing through the density interface in polynya are discussed. These are penetrative convection and shear-driven mixing that originates from two-layer water dynamics and/or baroclinic tidal motions. The heavily ridged seaward fast-ice edge could produce an additional source of turbulent mixing even through a shear-free density interface due to the increased roughness at the ice-water interface
机译:冬季在拉普捷夫海中,经常会出现大量的开阔水域和/或稀薄的冰(polynyas)地区,这些地区会在快冰边缘附近产生富含盐水的冷水。 2008年2月至3月,在西新西伯利亚(WNS)多年生植物的系泊站的底层和中间层记录了许多温度和盐度的突然正相关转变。温度范围在-0.5摄氏度和-1.6之间psu这些变化是由跨过多年生动物的水平运动引起的,分别对应于温度范围和盐度水平梯度在0.3-1.0摄氏度/ 10 km和1.4-3.5 psu / 10 km范围内。明显的清新和温度下降的事件与快冰边缘的北向洋流相吻合,而南向洋流则使中等深度的咸水和温暖水域增加了。我们建议观察到的过渡与改变多面体的比诺可可深度有关。 polynya中深度的相对较新鲜水的来源被认为是从地表低盐度水渗透渗透到中度水深度的结果。讨论了可能导致通过多年生植物的密度界面进行渗透性混合的几种强迫过程。这些是渗透对流和剪切驱动混合,其起源于两层水动力学和/或斜压潮汐运动。由于冰水界面处的粗糙度增加,即使是通过无剪切密度界面,重度脊状的沿海快速冰边缘也可能产生额外的湍流混合源

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