2000年以来亚洲沙尘源区地表条件的年际变化

IF 1.4 4区 农林科学 Q2 AGRICULTURE, MULTIDISCIPLINARY Journal of Agricultural Meteorology Pub Date : 2022-10-10 DOI:10.2480/agrmet.d-22-00014
R. Kimura
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引用次数: 0

摘要

中国和蒙古的塔克拉玛干沙漠、戈壁沙漠和黄土高原是公认的亚洲沙尘源区。然而,沙尘排放取决于气压和地表条件等气象因素,而日本缺乏关于沙尘源地区地表条件和沙尘事件频率的精确信息。在目标源区(35°N ~ 50°N, 100°E ~ 120°E),研究了2000年以来春季地表条件的年际变化。反轨迹分析结果表明,近10年沙尘轨迹主要沿3条路线经过该目标区域。2000年以后,日本观测到的亚洲沙尘事件数量和目标区域阈值风速U t <10 m s -1的面积均显著减少。U t < 10 m s -1的面积与事件数呈显著相关。这些结果可能反映了裸露土地面积的减少,这与沙尘爆发有关。
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Interannual changes of land surface conditions in Asian dust source regions since 2000
The Taklimakan and Gobi deserts and the Loess Plateau in China and Mongolia are generally recognized source areas for Asian dust. However, dust emissions depend on meteorological factors such as air pressure and land surface conditions, and precise information on land surface conditions in the dust source areas and the frequency of dust events in Japan is lacking. In this study, interannual changes of land surface conditions in the springtime since 2000 were examined in a target source region ( 35 ° N - 50 ° N, 100 ° E - 120 ° E ) . Back trajectory analysis results showed that most dust trajectories of the past 10 years mainly followed three routes passing over this target region. Both the number of Asian dust events observed in Japan and the area with a threshold wind speed U t of <10 m s -1 in the target region significantly decreased after 2000. Further, the area of U t < 10 m s -1 and the number of events were significantly correlated. These results may reflect a decrease in the bare land surface area, which is associated with dust outbreaks.
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来源期刊
Journal of Agricultural Meteorology
Journal of Agricultural Meteorology AGRICULTURE, MULTIDISCIPLINARYMETEOROLOGY-METEOROLOGY & ATMOSPHERIC SCIENCES
CiteScore
2.70
自引率
7.70%
发文量
18
期刊介绍: For over 70 years, the Journal of Agricultural Meteorology has published original papers and review articles on the science of physical and biological processes in natural and managed ecosystems. Published topics include, but are not limited to, weather disasters, local climate, micrometeorology, climate change, soil environment, plant phenology, plant response to environmental change, crop growth and yield prediction, instrumentation, and environmental control across a wide range of managed ecosystems, from open fields to greenhouses and plant factories.
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