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  • 标题:Spatial Variation of Temperature and Precipitation in Bhutan and Links to Vegetation and Land Cover
  • 本地全文:下载
  • 作者:Ugyen Dorji ; Jørgen E. Olesen ; Peder K. Bøcher
  • 期刊名称:Mountain Research and Development
  • 印刷版ISSN:0276-4741
  • 电子版ISSN:1994-7151
  • 出版年度:2016
  • 卷号:36
  • 期号:1
  • 页码:66-79
  • DOI:10.1659/MRD-JOURNAL-D-15-00020.1
  • 摘要:Bhutan, located in the Himalayas in the South Asian monsoon region, has extremely high variation in elevation, climatic conditions, and land cover despite its small geographical area, as well as great biodiversity. This paper provides the first comprehensive description of climatic conditions in Bhutan. It assesses the spatial variation of temperature and precipitation across the country and evaluates the causes for this variation based on daily data from 70 meteorological stations that have been recording data for time spans ranging from 3 to 21 years. Temperature and precipitation show contrasting spatial variation, with temperature primarily affected by elevation and precipitation by latitude. Models were developed using mixed linear regression models to predict seasonal and annual mean temperature and precipitation based on geographical location. Using linear regression we found that temperatures changed by about 0.5°C for every 100 m of change in elevation, with lapse rates being highest in February, March, and November and lowest from June to August. The lapse rate was highest for minimum temperatures and lowest for maximum temperatures, with the greatest difference during winter. The spatial distribution of precipitation was mainly controlled by latitude, having a quadratic relationship, with the highest rates in the southern foothills of the Himalayan range and the lowest at midlatitudes. The land cover is affected by topography and local climate, with variations in temperature being a main deciding factor for vegetation types; most human settlements and associated land uses are concentrated at lower elevations.
  • 关键词:Precipitation; air temperature; monsoonal climate; mountain region; elevation; land cover
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