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Convective mixing in the central Irminger Sea: 2002-2010

机译:2002-2010年在艾明格海中部的对流混合

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摘要

A near-continuous time series of 8 years of daily hydrographic profiles, recorded between fall 2002 and summer 2010 by moorings located in the central Irminger Sea, is presented. This record shows that convective mixing down to 400 m depth occurs in most winters. Under favorable conditions, convective mixing is seen to reach much deeper. During the cold winter of 2007-2008 mixed layers reached depths of 1 km. In the subsequent, more moderate winter of 2008-2009, a stronger preconditioning of the Irminger Gyre led to mixed layers down to 800 m depth. The convectively formed waters in the Irminger Sea are more saline and warmer than those formed in the Labrador Sea, but potential vorticity is reduced to 0.7 10~(-12)m~(-1)s~(-1) in March 2009. Following the local wintertime convection of 2007-2008, columns of relatively fresh water were seen to arrive in the Irminger Sea in spring 2008. A comparison with float data suggests that this water mass was likely formed south-southwest of Cape Farewell. The relatively fresh water replaced the locally formed convective water mass and continued to dominate the upper 1000 m of the water column until the following winter. In the winter of 2008-2009 the Irminger convective mixing strongly increased the salinity in the upper 800 m, but left the intermediate salinity minimum intact. Although the water mass formed by convective mixing in the Irminger Sea differs from that formed in the Labrador Sea, the heat lost per unit area by convection is of the same order of magnitude in both basins.
机译:给出了2002年秋季至2010年夏季之间由位于艾明格海中部的系泊设备记录的近8个连续的每日水文剖面时间序列。该记录表明,在大多数冬季,对流混合一直发生到400 m深度。在有利的条件下,对流混合的深度会更大。在2007-2008年的寒冷冬季,混合层达到了1 km的深度。在随后的2008-2009年冬季,温和的冬季,更强的Irminger Gyre预处理导致混合层下降至800 m深度。与在拉布拉多海中形成的水​​相比,在艾明格海中对流形成的海水盐分更高,温度更高,但在2009年3月,潜在涡度降低到0.7 10〜(-12)m〜(-1)s〜(-1)。在2007年至2008年当地冬季对流之后,2008年春季,有几列相对较淡的水到达了艾明格海。与浮标数据的比较表明,这种水团很可能是在告别角西南偏南形成的。相对较淡的水代替了局部形成的对流水团,并继续在水柱的上部1000 m占主导地位,直到下一个冬天。在2008-2009年冬季,艾明格对流混合强烈地增加了上部800 m的盐度,但保持了中度最低盐度不变。尽管在艾明格海中通过对流混合形成的水量与在拉布拉多海中形成的水​​量有所不同,但在两个盆地中,由于对流造成的每单位面积的热量损失具有相同的数量级。

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