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Warming of the interior Arctic Ocean linked to sea ice losses at the basin margins

机译:北冰洋内部变暖与流域边缘海冰的流失有关

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摘要

Arctic Ocean measurements reveal a near doubling of ocean heat content relative to the freezing temperature in the Beaufort Gyre halocline over the past three decades (1987–2017). This warming is linked to anomalous solar heating of surface waters in the northern Chukchi Sea, a main entryway for halocline waters to join the interior Beaufort Gyre. Summer solar heat absorption by the surface waters has increased fivefold over the same time period, chiefly because of reduced sea ice coverage. It is shown that the solar heating, considered together with subduction rates of surface water in this region, is sufficient to account for the observed halocline warming. Heat absorption at the basin margins and its subsequent accumulation in the ocean interior, therefore, have consequences for Beaufort Gyre sea ice beyond the summer season.
机译:在过去的三十年(1987-2017年)中,北冰洋的测量结果显示,相对于波弗陀涡旋盐湖中的冰冻温度,海洋热量含量几乎翻了一番。这种变暖与北部楚科奇海的地表水的异常太阳能加热有关,楚科奇海是盐卤水进入内部Beaufort Gyre的主要入口。同期,地表水吸收的夏季太阳热量增加了五倍,这主要是因为海冰覆盖率降低了。结果表明,与该区域地表水的俯冲率一起考虑的太阳能加热足以解决所观测到的卤代烃变暖问题。因此,流域边缘的热吸收及其随后在海洋内部的积聚,对夏季后的博福特涡流海冰产生了影响。

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