Relationships Between Surface Albedo,Soil Thermal Parameters and Soil Moisture in the Semi-arid Area of Tongyu,Northeastern China

被引:19
作者
刘辉志 [1 ]
王宝民 [2 ]
符淙斌 [3 ]
机构
[1] State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry,Institute of Atmospheric Physics, Chinese Academy of Sciences
[2] Department of Atmospheric Sciences, Sun Yat-sen University
[3] Key Laboratory of Regional Climate-Environment Research for Temperate East Asia,Institute of Atmospheric Physics, Chinese Academy of Sciences
关键词
surface albedo; soil heat capacity; soil thermal conductivity; soil thermal diffusivity; soil mois-ture;
D O I
暂无
中图分类号
S152 [土壤物理学];
学科分类号
0903 ; 090301 ;
摘要
Continuous observation data collected over the whole year of 2004 on a cropland surface in Tongyu, a semi-arid area of northeastern China (44°25′N, 122°52′E), have been used to investigate the variations of surface albedo and soil thermal parameters, including heat capacity, thermal conductivity and thermal diffusivity, and their relationships to soil moisture. The diurnal variation of surface albedo appears as a U shape curve on sunny days. Surface albedo decreases with the increase of solar elevation angle, and it tends to be a constant when solar elevation angle is larger than 40°. So the daily average surface albedo was computed using the data when solar elevation angle is larger than 40°. Mean daily surface albedo is found to decrease with the increase of soil moisture, showing an exponential dependence on soil moisture. The variations of soil heat capacity are small during Julian days 90-300. Compared with the heat capacity, soil thermal conductivity has very gentle variations during this period, but the soil thermal diffusivity has wide variations during the same period. The soil thermal conductivity is found to increase as a power function of soil moisture. The soil thermal diffusivity increases firstly and then decreases with the increase of soil moisture.
引用
收藏
页码:757 / 764
页数:8
相关论文
共 10 条
[1]   青藏高原能量和水循环试验研究——GAME/Tibet与CAMP/Tibet研究进展 [J].
马耀明 ;
姚檀栋 ;
王介民 .
高原气象 , 2006, (02) :344-351
[2]   内蒙古半干旱草原土壤-植被-大气相互作用综合研究 [J].
吕达仁 ;
陈佐忠 ;
陈家宜 ;
王庚辰 ;
季劲钧 ;
陈洪滨 ;
刘钟龄 .
气象学报, 2005, (05) :571-593
[3]   半干旱地区吉林通榆“干旱化和有序人类活动”长期观测实验 [J].
刘辉志 ;
董文杰 ;
符淙斌 ;
石立庆 .
气候与环境研究, 2004, (02) :378-389
[4]  
A comprehensive physical pattern of land-air dynamic and thermal structure on the Qinghai-Xizang Plateau[J]. 徐祥德 ,卞林根 ,李诗明 ,索朗多吉 ,周明煜 ,张光智 ,张宏升 ,王继志 ,陈家宜 ,刘辉志 ,赵翼俊.Science in China(Series D:Earth Sciences). 2002(07)
[5]   我国北方干旱化研究——面向国家需求的全球变化科学问题 [J].
符淙斌 ;
安芷生 .
地学前缘, 2002, (02) :271-275
[6]   中国北方干旱化的几个问题 [J].
符淙斌 ;
温刚 .
气候与环境研究, 2002, (01) :22-29
[7]   黑河实验(HEIFE)──对干旱地区陆面过程的一些新认识 [J].
胡隐樵,高由禧 .
气象学报, 1994, (03) :285-296
[8]   THE CHARACTERS OF ENERGY BUDGET ON THE GOBI AND DESERT SURFACE IN HEXI REGION [J].
胡隐樵 ;
杨选利 ;
张强 ;
左洪超 .
ActaMeteorologicaSinica, 1992, (01) :82-91
[9]   Variation of surface albedo and soil thermal parameters with soil moisture content at a semi-desert site on the western Tibetan Plateau [J].
Wang, KC ;
Wang, PC ;
Liu, JM ;
Sparrow, M ;
Haginoya, S ;
Zhou, XJ .
BOUNDARY-LAYER METEOROLOGY, 2005, 116 (01) :117-129
[10]   Parameters of land-surface processes for Gobi in north-west China [J].
Qiang, Z ;
Huang, RH .
BOUNDARY-LAYER METEOROLOGY, 2004, 110 (03) :471-478