首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Diurnal coastal-trapped waves on the eastern shelf of Sakhalin in the Sea of Okhotsk and their modification by sea ice
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Diurnal coastal-trapped waves on the eastern shelf of Sakhalin in the Sea of Okhotsk and their modification by sea ice

机译:鄂霍次克海萨哈林岛东部陆架上的昼夜捕获海浪及其对海冰的改造

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From July 1998 to June 2000, the first long-term mooring measurements were carried out off the east coast of Sakhalin. Using these data, we examined the characteristies of the tidal heights and currents. The tidal heights and currents are dominated by the diurnal variability with fortnightly modulation over the northern part of the shelf. The K, and 01 tidal current ellipses are clockwise with their major axes along the isobaths and their signal propagates with the coast on the right with phase speeds of 3.4 and 3.8 m s(-1), respectively. The diurnal tidal Currents are almost uniform in the vertical direction except for the bottom Ekman layer. The thickness of the bottom Ekman layer caused by the diurnal tidal currents is larger in the region of stronger tidal currents, reaching 20-30 in over the northern part of the shelf. The diurnal tidal Currents over the northern part of the shelf can be explained by the first-mode diurnal coastal-trapped waves (CTWs). The diurnal CTWs are almost independent of the seasonal variability of density stratification and contribute significantly to diurnal currents, but only slightly to sea-surface heights. The diurnal tidal Currents over the southern part of the shelf are significantly smaller than those over the northern part. This is because the diurnal CTWs cannot exist south of similar to 52 degrees N from the dispersion relation. The diurnal tidal currents are significantly reduced over the northern shelf, where the diurnal CTWs exist, during the high sea-ice concentration periods. From this result, we propose the scenario that the CTWs are damped by the spin-down effect due to the Ekman layer that would occur underneath the sea ice. (C) 2007 Elsevier Ltd. All rights reserved.
机译:从1998年7月到2000年6月,首次对萨哈林岛东海岸进行了长期的系泊测量。使用这些数据,我们检查了潮高和潮流的特征。潮高和洋流主要由架子北部的昼夜变化和每两周调制一次决定。 K潮汐椭圆和01潮汐椭圆是顺时针方向,其主轴沿等压线,并且其信号沿右侧的海岸传播,其相速度分别为3.4和3.8 m s(-1)。除底部埃克曼层外,昼夜潮流在垂直方向上几乎是均匀的。昼夜潮流引起的底部埃克曼层的厚度在较强的潮流区域更大,在架子的北部达到20-30。大陆架北部的日潮流是由第一模式的沿岸海浪(CTW)解释的。昼夜CTW几乎与密度分层的季节变化无关,并且对昼夜水流有显着贡献,但对海面高度影响很小。大陆架南部的日潮流明显小于北部。这是因为从分散关系来看,昼间CTW不能存在于类似于52度N的南方。在海冰高度集中的时期,昼间CTW存在的北部陆架的昼夜潮流明显减少。根据该结果,我们提出了这样一种情况,即由于海冰下会发生埃克曼层,因此旋转降落效应会受到旋转降速的影响。 (C)2007 Elsevier Ltd.保留所有权利。

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