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Heat content variability in the North Atlantic Ocean in ocean reanalyses

机译:海洋再分析中北大西洋的热量含量变化

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摘要

Warming of the North Atlantic Ocean from the 1950s to 2012 is analyzed on neutral density surfaces and vertical levels in the upper 2000 m. Three reanalyses and two observational data sets are compared. The net gain of 5 × 1022 J in the upper 2000 m is roughly 30% of the global ocean warming over this period. Upper ocean heat content (OHC) is dominated in most regions by heat transport convergence without widespread changes in the potential temperature/salinity relation. The heat convergence is associated with sinking of midthermocline isopycnals, with maximum sinking occurring at potential densities σ0 = 26.4−27.3, which contain subtropical mode waters. Water masses lighter than σ0 = 27.3 accumulate heat by increasing their volume, while heavier waters lose heat by decreasing their volume. Spatially, the OHC trend is nonuniform: the low latitudes, 0–30°N are warming steadily while large multidecadal variability occurs at latitudes 30–65°N.Key Points class="unordered" style="list-style-type:disc">Heat content change dominated by heat transport convergence Due to widespread sinking trend of midthermocline isopycnals over 50+ years
机译:对1950年代至2012年北大西洋的变暖进行了分析,分析了中性密度表面和2000µm高层的垂直高度。比较了三个重新分析和两个观测数据集。在2000μm的高处,5×10 22 J的净增益约为这一时期全球海洋变暖的30%。在大多数区域中,较高的海洋热量含量(OHC)由热传输收敛控制,而潜在的温度/盐度关系没有广泛变化。热收敛与中热线等温线的下沉有关,最大下沉发生在含有亚热带模式水的潜在密度σ0= 26.4-27.3处。小于σ0= 27.3的水质量通过增加其体积来蓄热,而较重的水通过减小其体积来散发热量。在空间上,OHC趋势是不均匀的:低纬度,0–30°N正在稳定变暖,而北纬30–65°,则发生了较大的年代际变化。要点 class =“ unordered” style =“ list-style-type :disc“> <!-list-behavior =无序前缀-word = mark-type = disc max-label-size = 0-> 由热传递收敛主导的热量变化 由于50年以上的中温多菌灵等温线普遍下沉趋势

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