中国农业气象 ›› 2011, Vol. 32 ›› Issue (增刊): 157-160.

• 论文 • 上一篇    下一篇

贵州石漠化区域气候效应的数值模拟

严小冬,谷晓平,王备,古书鸿   

  1. 贵州省山地气候与资源重点实验室,贵阳550002;贵州省气候中心,贵阳550002;
    贵州省山地环境气候研究所,贵阳550002
  • 出版日期:2011-10-31 发布日期:2011-11-24
  • 基金资助:

    国家自然科学基金(40765004;41040039);公益性行业(气象)科研专项(GYHY201106024);贵州省科学技术改革转制项目(黔科合Z字\[2009\]4006 )

Numerical Simulation of Regional Climate Effects of the
Rocky Desertification Areas in Guizhou

YAN Xiaodong,GU Xiaoping,WANG Bei,GU Shuhong   

  1. Guizhou Key Lab of Mountainous Climate and Resources, Guiyang550002,China;Guizhou Climate Center, Guiyang550002;
    Guizhou Institute of Mountainous Environment and Climate, Guiyang550002
  • Online:2011-10-31 Published:2011-11-24

摘要: 在地形坐标系中建立一个三维静力平衡的大气-土壤耦合模式,模式主要考虑了复杂地形和植被的热力及动力过程。与其它中、小尺度模式相比,此模式在地表与植被冠层建立的辐射平衡方程和能量平衡方程中,均详细考虑了坡向、坡度的影响。通过对贵州石漠化危险区最典型的贞丰县气候效应数值模拟表明:所采用的大气-土壤耦合模式,能较好模拟贵州石漠化区域气象要素的空间分布趋势;中等程度石漠化区域向高强度石漠化区域演变过程中,气温场表现为先轻微上升,上升到一定程度后剧烈下降,然后当其演变到强度石漠化程度后,继续向超强程度石漠化演变,其气温表现为剧烈的下降趋势。

关键词: 三维大气-土壤耦合模式, 石漠化区域, 气候效应

Abstract: In the terrain, a threedimensional coordinate system of static equilibrium atmosphere  ground coupled model was created. The thermodynamic and dynamic process of complex terrain and vegetation was taken into consideration in this model. Compared with other medium and small scale model, the aspect and slope effects are all considered in detail in the establishment of the radiation balance equation and energy balance equations between the surface and the vegetation canopy. The results showed that the atmosphere ground coupled model could better simulate the space distribution trend of meteorological elements of rocky desertification in Zhenfeng county, a typical area of rocky desertification. The temporal change trend of the temperature slightly raised first and then descended as the moderate rocky desertification areas became into strong rocky desertification areas. Then while the strong rocky desertification areas constituted to become super strong rocky desertification areas, the temperature showed a sharply downward trend. 

Key words: Three dimensional system of atmosphere ground coupled model, Rocky desertification areas, Climate effects