%0 Journal Article %T Relationships between row crop evapotranspiration and two sources-energy partition and exchange under non-water stress condition
无水分胁迫下行作物蒸发散与双涌源能量分配和交换关系 %A YU Chan %A Chaolunbagen %A GAO Ruizhong %A CHAI Jianhua %A
于婵 %A 朝伦巴根 %A 高瑞忠 %A 柴建华 %J 应用生态学报 %D 2006 %I %X With the maize harvested for green fodder and grown at the Hunshandake sand area as test row crop,and by combining two sources- energy balance model with dual crop coefficient approach presented in FAO-56,this paper estimated the available energy partitioned into two sources, canopy and soil surface (Ac and As), and the latent and sensible heat fluxes, lambdaEc, lambdaEs, Hc and Hs. The results showed that under non-water stress condition, the interaction between Hc and lambdaEc made canopy absorbed a micro-advection to enhance transpiration expressed by latent heat flux,with the value of (lambdaE(i)c-A(i)c). The greatest enhancement of transpiration occurred at the crop development stage with leaf area index between 0.6 and 2.4, and the average of the enhancement was 4.32 MJ x m(-2) x d(-1). Soil evaporation was in progress with a rate below the available energy of soil, due to the interaction between Hc and lambdaEc under non-water stress condition, except a few days immediately after heavy rain. The evaporation rate depended on the percentage of soil available energy dissipated as latent heat flux. The average value of minimum percentage, 11.5%, occurred at mid-season stage,while that of maximum percentages,51.9%, occurred at initial stage. Latent heat fluxes were the important components of energy exchange during the process of evapotranspiration. The available energy dissipated as latent heat fluxes of the two sources during crop development, mid-season, and late season stages accounted for over 83% of the total energy. %K Leaf area index %K Energy partition and exchange %K Crop evapotranspiration
叶面积指数 %K 能量分配和交换 %K 作物蒸散 %U http://www.alljournals.cn/get_abstract_url.aspx?pcid=90BA3D13E7F3BC869AC96FB3DA594E3FE34FBF7B8BC0E591&jid=42FEDDFE54F8BCD9D5FD1926ABDD7722&aid=BBF56B32AA7D663A&yid=37904DC365DD7266&vid=BCA2697F357F2001&iid=94C357A881DFC066&sid=C990359CEBD48A9E&eid=693E1FFD7BD946DF&journal_id=1001-9332&journal_name=应用生态学报&referenced_num=7&reference_num=30