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西藏高海拔地区运输超大型变压器的难点探讨
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作者 罗日朗 蔡伟龙 +2 位作者 李功平 蒋小广 杨精刚 《中国市场》 2022年第31期184-186,共3页
西藏是未来我国重要的能源基地。能源基地建设,需要完成多个电压等级大型变压器运输。变压器生产厂家远离西藏地区,另外西藏及周边地区有大量的高海拔地区,这些地区空气含氧量低、低气温时间长,给大型变压器运输带来了极大挑战。为克服... 西藏是未来我国重要的能源基地。能源基地建设,需要完成多个电压等级大型变压器运输。变压器生产厂家远离西藏地区,另外西藏及周边地区有大量的高海拔地区,这些地区空气含氧量低、低气温时间长,给大型变压器运输带来了极大挑战。为克服人员高原反应和解决高海拔地区变压器运输难题,文章提出了针对西藏地区运输变压器提出建议,希望能给未来变压器大规模运输提供启示。 展开更多
关键词 西藏 高海拔地区运输 超大型变压器
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Comparison of dust emissions, transport, and deposition between the Taklimakan Desert and Gobi Desert from 2007 to 2011 被引量:18
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作者 CHEN SiYu HUANG JianPing +5 位作者 LI JingXin JIA Rui JIANG NanXuan KANG LiTai MA XiaoJun XIE TingTing 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第7期1338-1355,共18页
The Taklimakan Desert(TD) and Gobi Desert(GD) are two of the most important dust sources in East Asia, and have important impact on energy budgets, ecosystems and water cycles at regional and even global scales. To in... The Taklimakan Desert(TD) and Gobi Desert(GD) are two of the most important dust sources in East Asia, and have important impact on energy budgets, ecosystems and water cycles at regional and even global scales. To investigate the contribution of the TD and the GD to dust concentrations in East Asia as a whole, dust emissions, transport, and deposition over the TD and the GD in different seasons from 2007 to 2011 were systematically compared, based on the Weather Research and Forecasting model coupled with Chemistry(WRF-Chem). Dust emissions, uplift, and long-range transport related to these two dust source regions were markedly different due to differences in topography, elevation, thermal conditions, and atmospheric circulation. Specifically,the topography of the GD is relatively flat, and at a high elevation, and the area is under the influence of two jet streams at high altitudes, resulting in high wind speeds in the upper atmosphere. Deep convective mixing enables the descending branch of jet streams to continuously transport momentum downward to the mid-troposphere, leading to enhanced wind speeds in the lower troposphere over the GD which favors the vertical uplift of the GD dust particles. Therefore, the GD dust was very likely to be transported under the effect of strong westerly jets, and thus played the most important role in contributing to dust concentrations in East Asia. Approximately 35% and 31% of dust emitted from the GD transported to remote areas in East Asia in spring and summer, respectively. The TD has the highest dust emission capabilities in East Asia, with emissions of about 70.54 Tg yr.1 in spring, accounting for 42% of the total dust emissions in East Asia. However, the TD is located in the Tarim Basin and surrounded by mountains on three sides. Furthermore, the dominant surface wind direction is eastward and the average wind speed at high altitudes is relatively small over the TD. As a result, the TD dust particles are not easily transported outside the Tarim Basin, such that most of the dust particles are re-deposited after uplift, at a total deposition rate of about 40 g m.2. It is only when the TD dust particles are uplifted above 4 km, and entrained in westerlies that they begin to undergo a long-range transport. Therefore,the contribution of the TD dust to East Asian dust concentrations was relatively small. Only 25% and 23% of the TD dust was transported to remote areas over East Asia in spring and summer, respectively. 展开更多
关键词 East Asian dust WRF-Chem model Taklimakan Desert Dust Gobi Desert Dust Dust emissions Dust transport Dust deposition
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