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首页> 外文期刊>Climate research >Response of clouds and surface energy fluxes to changes in sea-ice cover over the Laptev Sea (Arctic Ocean)
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Response of clouds and surface energy fluxes to changes in sea-ice cover over the Laptev Sea (Arctic Ocean)

机译:云和表面能通量对拉普捷夫海(北冰洋)上海冰覆盖变化的响应

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摘要

ABSTRACT: The response of Arctic clouds to changes in sea ice extent is examined using the Polar version of the Weather Research and Forecasting (WRF) regional model over the Laptev Sea. Polar WRF output provides detailed information on cloud properties, such as liquid water path, ice water content, cloud height, and cloud radiative forcing during periods of low and high sea ice extent. The Polar WRF is run for 8 Septembers and Octobers selected for anomalously low and high sea ice cover, and analyzes differences in cloud properties, cloud radiative forcing (CRF), temperature, and the surface radiative and heat budgets. Clouds were more frequent and had larger liquid water paths during low than during high sea ice cover years. Increased surface longwave CRF during the low sea ice years only occurred in September. In September, the averaged cloud liquid water path during high sea ice years resulted in a cloud emitting close to its maximum longwave radiation, and increases in cloud liquid water path during the low sea ice years did not increase the surface longwave cloud radiative effect. In October, the averaged cloud liquid water path during high sea ice years did not result in a cloud emitting its maximum longwave radiation, and cloud liquid water path increases that occurred in the low sea ice years affected the surface cloud radiative effect. Clouds warmed the surface during periods of low sea ice cover in October.
机译:摘要:使用极地版的拉普捷夫海天气研究和预报(WRF)区域模型,研究了北极云对海冰范围变化的响应。 Polar WRF输出可提供有关云特性的详细信息,例如在低和高海冰范围期间的液态水路径,冰水含量,云高度和云辐射强迫。 Polar WRF运行于9月8日和10月10日,用于选择异常高低的海冰盖,并分析云特性,云辐射强迫(CRF),温度以及表面辐射和热量预算方面的差异。与高海冰覆盖年相比,低云的频率更高,并且液态水的路径更大。在低海冰年期间,地表长波CRF的增加仅发生在9月。 9月,在高海冰年中平均的云状液态水路径导致云发射接近其最大长波辐射,而在低海冰年中云状液态水路径的增加并没有增加表面长波云的辐射效应。在十月份,高海冰年的平均云液态水路径没有导致云散发其最大的长波辐射,而低海冰年中发生的云液态水路径增加影响了表面云的辐射效应。在十月的低海冰覆盖期间,云层使地面变暖。

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