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A China-Japan Cooperative JICA Atmospheric Observing Network over the Tibetan Plateau (JICAITibet Project): An Overviews

机译:青藏高原上的中日合作JICA大气观测网络(JICAITibet项目):概述

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Because of the importance of the impact of the Tibetan Plateau on atmospheric general circulations and climate across China, Asia, and even the world, Chinese and Japanese scientists jointly constructed an integrated atmospheric observing system, especially for the water vapor observation, across the Tibetan Plateau and its adjacent areas during the period of 2005-2009 under the JICA (Japan International Co-operation Agency) project (JICA/Tibet Project). The JICA/Tibet Project aims at understanding processes of the land-atmosphere interaction over the Tibetan Plateau and their impacts on the severe weather and climate over the Tibetan Plateau and the area to its east in the East Asian region. The project is designed in an attempt to alleviate impacts of meteorological disasters in these areas through improving the prediction skill. The implementation of the project has enhanced the capability of monitoring the Plateau atmosphere. The numerical forecast techniques are developed through assimilating observed data into the numerical model. Based on the investigation of observed surface energy balance, the land surface model is improved. It is found that the diurnal variation of precipitation over the Plateau is closely related with water vapor, and the latent heat release is a main factor affecting the Plateau vortex. By analyzing observed seasonal features of the tropopause, the evidence of strong stratosphere and troposphere exchange over the Tibetan Plateau is provided. It reveals that the interannual variability of summer rainfall in East China corresponds to that of vegetation index over the Plateau. The crossing hemispheric circulations driven by the thermal and mechanical forcings of the Plateau play an important role in water vapor transports not only over East Asia, but also in the global scale.
机译:由于青藏高原对中国,亚洲乃至全世界的大气总环流和气候的影响非常重要,中日两国科学家共同建立了一个综合的大气观测系统,特别是对整个青藏高原的水汽观测JICA(日本国际合作社)项目(JICA /西藏项目)在2005-2009年期间及其附近地区。日本国际协力机构/西藏项目旨在了解青藏高原上土地-大气相互作用的过程及其对青藏高原及其东亚地区东部地区恶劣天气和气候的影响。该项目旨在通过提高预测技能来减轻这些地区的气象灾害的影响。该项目的实施增强了监测高原大气的能力。通过将观测数据同化为数值模型来开发数值预测技术。在观察到的地表能量平衡的基础上,改进了地表模型。发现高原降水的日变化与水汽密切相关,潜热释放是影响高原涡旋的主要因素。通过分析观测到的对流层顶的季节性特征,提供了青藏高原上空平流层和对流层交换强烈的证据。结果表明,华东地区夏季降水的年际变化与高原地区植被指数的年际变化相对应。高原的热力和机械力推动的交叉半球环流不仅在东亚乃至全球范围内的水蒸气输送中都发挥着重要作用。

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