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首页> 外文期刊>ournal of the Meteorological Society of Japan >Estimation of Surface Heat Flux Based on Rawinsonde Observation in the Southwestern Part of the Sea of Okhotsk under Ice-covered Condition
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Estimation of Surface Heat Flux Based on Rawinsonde Observation in the Southwestern Part of the Sea of Okhotsk under Ice-covered Condition

机译:冰封条件下鄂霍次克海西南部基于罗宾逊观测的地表通量估算

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Rawinsonde observation was performed in late January through early February in 1998 around the southwestern part of the Sea of Okhotsk to estimate the turbulent fluxes of sensible and latent heat over the ice-covered ocean during the winter monsoon. Upstream cold and stable air mass originated from the Eurasian continent was significantly modified through heat and moisture supply from warm sea surface with offshore cold-air outbreaks, which consequently formed mixed layer characterized by neutral stability over downstream areas. Associated with reduction of the top of the mixed layer height through the observational period, estimated heat fluxes also decreased gradually from 210 W m-2 to 30 W m-2. These decrease tendencies of the mixed layer height and estimated heat fluxes may reflect the increase of the insulating effect of the sea-ice cover on heat and moisture exchanges between the atmosphere and ocean.
机译:Rawinsonde观测于1998年1月下旬至2月初在鄂霍次克海的西南部进行,以估算冬季季风期间覆盖在冰雪覆盖的海洋上的感热和潜热的湍流。源自欧亚大陆的上游冷稳定气团通过来自温暖海面的热量和湿气供应以及近海冷空气暴发得到了显着改变,因此形成了以下游区域为中性稳定特征的混合层。随着整个观测期混合层顶部高度的降低,估计的热通量也从210 W m-2逐渐降低到30 W m-2。混合层高度和估计的热通量的这些降低趋势可以反映出海冰覆盖层对大气与海洋之间的热和水分交换的隔热作用的增加。

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