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Observational estimation of heat budgets on drifting ice and open water over the Arctic Ocean

机译:北冰洋流冰和开阔水域热预算的观测估计

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摘要

Estimates of the surface heat budget over drifting ice and open water in the Arctic Ocean are made using eddy correlation and flux-profile methods using data obtained from drifting ice and from the RN Xuelong in the Chinese National Arctic Research Expedition during August 19 —24,1999. The results show that the net radiation received by the ice surface is mainly lost through the sensible heat flux and the heat flux due to melting ice, and the latent heat flux making small contribution to the heat balance. However, the heat balance of the open water surface was dominated by the radiative flux whereas the latent and sensible heat fluxes and the oceanic heat flux were greater than those on the sea-ice surface. These results emphasize that thermodynamic processes are quite different between air/open water and air/sea-ice over the Arctic Ocean which is important when considering the effect of sea-air-ice interaction on climate change process during the summer period.
机译:利用涡流相关法和通量剖面法,利用从中国北冰洋考察队于8月19日至24日从流冰和RN Xuelong所获得的数据,对北冰洋的浮冰和开放水的表面热量收支进行了估算, 1999年。结果表明,冰表面接收到的净辐射主要通过显热通量和融冰导致的热流损失,潜热通量对热平衡的贡献很小。然而,开放水面的热平衡主要由辐射通量决定,而潜热通量和感热通量以及海洋通量均大于海冰表面的热通量。这些结果强调,北冰洋上的空气/开阔水域与空气/海冰之间的热力学过程有很大不同,这在考虑夏季期间海冰相互作用对气候变化过程的影响时非常重要。

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