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利用水汽图研究高原大雪的水汽源 被引量:3
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作者 季良达 徐欢 +2 位作者 崔小平 郝学亮 庞净 《青海气象》 1996年第4期19-23,共5页
本文主要是利用水汽图像研究1995年冬青藏高原大雪的水汽源。指出影响青藏高原大雪的水汽通道有三条,第一条自里海到高原;第二条自阿拉伯海到高原;第三条自孟加拉湾到高原。文章还指出影响高原上一次大雪过程可有一条水汽通道,也可有二... 本文主要是利用水汽图像研究1995年冬青藏高原大雪的水汽源。指出影响青藏高原大雪的水汽通道有三条,第一条自里海到高原;第二条自阿拉伯海到高原;第三条自孟加拉湾到高原。文章还指出影响高原上一次大雪过程可有一条水汽通道,也可有二条或三条同时出现,并且在水汽的输送过程中,其强度、速度和路径都在不断变化。 展开更多
关键词 高原大雪 水汽通道 水汽源 水汽图像 孟加拉湾 阿拉伯海 输送过程 利用 研究 里海
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“95.1”大雪的对称不稳定数值诊断分析 被引量:7
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作者 王文 程麟生 《气象》 CSCD 北大核心 2000年第7期9-11,19,共4页
利用一次较成功地模拟了“95 .1”青藏高原东北部大雪过程的 MM5中尺度模式输出资料 ,根据条件对称不稳定 (CSI)的非线性理论判据对这次大雪过程进行了动力学诊断分析 ,结果表明 ,大雪的发生发展过程与σ2 正值区的分布和演变非常一致 ... 利用一次较成功地模拟了“95 .1”青藏高原东北部大雪过程的 MM5中尺度模式输出资料 ,根据条件对称不稳定 (CSI)的非线性理论判据对这次大雪过程进行了动力学诊断分析 ,结果表明 ,大雪的发生发展过程与σ2 正值区的分布和演变非常一致 ,表明“95 .1”大雪是由明显的湿对称不稳定所致。 展开更多
关键词 高原大雪 非线性对称不稳定 诊断分析
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NO_x Release from Snow and Ice Covered Surface in Polar Regions and the Tibetan Plateau
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作者 Feng Wang Weili Lin +1 位作者 Junxia Wang Tong Zhu 《Advances in Climate Change Research》 SCIE 2011年第3期141-148,共8页
The exchanges of NOx between snow and air have significant impact on the atmospheric components and photochemical processes in the overlying boundary layer. Such exchanges increase the oxidizing capacity of the atmosp... The exchanges of NOx between snow and air have significant impact on the atmospheric components and photochemical processes in the overlying boundary layer. Such exchanges increase the oxidizing capacity of the atmosphere and may have a crucial impact on the air signals that are retrieved from ice cores. In the recent years, sunlit snow and ice have been demonstrated to be important NOx sources in the polar atmospheric boundary layer. This paper makes a thorough review on the release of NOx from snow and ice, including field observations and experimental evidences, release mechanisms and influential parameters that affect such a release process, polar NOx concentrations and fluxes, and environmental impacts of the chemical processes of NOx in the polar atmospheric boundary layer. In the Tibetan Plateau, the released NOx observed recently in the sunlit snow/ice-cover is 1-order magnitude more than that in polar regions, but further scientific research is still needed to reveal its impact on the atmospheric oxidizing capacity. 展开更多
关键词 NOx exchange between snow and air polar area atmospheric oxidizing capacity Tibetan Plateau
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A Dipole Pattern of Summer Precipitation over Mid-high Latitude Asia and Related Snow Cover Anomalies in the Preceding Spring
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作者 HAN Jin-Ping LIU Ge XIN Yu-Fei 《Atmospheric and Oceanic Science Letters》 CSCD 2014年第4期364-368,共5页
A dipole pattern of summer precipitation over the mid-high latitudes of Asia, which is characterized by opposing summer precipitation variations between the Mongolian and Northeast China(MNC) region and the West Siber... A dipole pattern of summer precipitation over the mid-high latitudes of Asia, which is characterized by opposing summer precipitation variations between the Mongolian and Northeast China(MNC) region and the West Siberian Plain(WSP), is found to be clear and stable on both interdecadal and interannual scales during 1981–2011. Spring snow cover anomalies over a small region within the WSP and the Heilongjiang River(HR) region are closely related to the variation of this dipole mode during the subsequent summer, and they can therefore be considered as forecasting factors. Our statistical results imply a potential process explaining the relationship between the spring snow anomalies and the summer rainfall dipole. Corresponding to the snow anomalies, Rossby waves propagate along a path from the WSP region, via the Mongolian Plateau, to the Stanovoy Range during summer. At the same time, Rossby-wave energy divergences and convergences along this path maintain and reinforce an anomalous cyclone and anticyclone pairing over the Asian continent, which is significantly linked to opposite summer precipitation anomalies between the MNC and WSP regions. Numerical experiments are needed to further confirm the above conjecture and demonstrate the detailed physical mechanisms linking the spring snow cover anomalies and summer precipitation dipole. 展开更多
关键词 precipitation snow cover climatic anomaly DIPOLE
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