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Reduction in Ocean Heat Transport at 26 degrees N since 2008 Cools the Eastern Subpolar Gyre of the North Atlantic Ocean

机译:自2008年以来,在26摄氏度下减少海洋热量运输冷却北大西洋东部的亚底斯特雷

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Northward ocean heat transport at 26 degrees N in the Atlantic Ocean has been measured since 2004. The ocean heat transport is large-approximately 1.25 PW, and on interannual time scales it exhibits surprisingly large temporal variability. There has been a long-term reduction in ocean heat transport of 0.17 PW from 1.32 PW before 2009 to 1.15 PW after 2009 (2009-16) on an annual average basis associated with a 2.5-Sv (1 Sv equivalent to 10(6) m(3) s(-1)) drop in the Atlantic meridional overturning circulation (AMOC). The reduction in the AMOC has cooled and freshened the upper ocean north of 26 degrees N over an area following the offshore edge of the Gulf Stream/North Atlantic Current from the Bahamas to Iceland. Cooling peaks south of Iceland where surface temperatures are as much as 2 degrees C cooler in 2016 than they were in 2008. Heat uptake by the atmosphere appears to have been affected particularly along the path of the North Atlantic Current. For the reduction in ocean heat transport, changes in ocean heat content account for about one-quarter of the long-term reduction in ocean heat transport while reduced heat uptake by the atmosphere appears to account for the remainder of the change in ocean heat transport.
机译:自2004年以来,在大西洋26摄氏度的北方海洋热量运输已经衡量。海洋热量传输大约1.25磅,持续时间尺度令人惊讶的是令人惊讶的时间变异性。 2009年之前的1.32 PW为0.17 PW的海洋热量运输长期减少2009年(2009-16),每年平均与2.5平方米(相当于10(6) M(3)S(-1))在大西洋经络翻转循环(AMOC)中跌落。在从巴哈马到冰岛到冰岛的海湾流/北大西洋电流的离岸边缘,武器的减少在26摄氏度北部的上海北部冷却并清新了26摄氏度的上部海洋。在冰岛南部的冷却峰,在2016年的表面温度比2008年高于2摄氏度。大气的热量似乎受到北大西洋电流的道路影响。为了减少海洋热量运输,海洋热含量的变化约为海洋热量运输的长期减少四分之一,同时减少了大气的热量摄取,似乎占海洋热传输的剩余变化的情况下。

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