期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于TESEBS模型估算高原地区地表蒸散发
1
作者 王丽娟 郭铌 +2 位作者 王玮 芦亚玲 沙莎 《遥感技术与应用》 CSCD 北大核心 2017年第3期507-513,共7页
为检验TESEBS(Topographical Enhanced Surface Energy Balance System)模型在高原地区的适用性,利用2014年高原9个站点的实测资料对TESEBS模型进行适用性检验,鉴于模型估算的感热通量偏差较大,提出利用地表温度—植被指数(LST-NDVI)特... 为检验TESEBS(Topographical Enhanced Surface Energy Balance System)模型在高原地区的适用性,利用2014年高原9个站点的实测资料对TESEBS模型进行适用性检验,鉴于模型估算的感热通量偏差较大,提出利用地表温度—植被指数(LST-NDVI)特征空间法来确定蒸散发率,并将模型估算的卫星过境时刻瞬时蒸散发与实测值进行比较。结果表明:TESEBS模型估算高原不同下垫面的蒸散发与实测值之间的偏差较大;利用LST-NDVI特征空间法确定蒸散发率能很好地改善模型对蒸散发的估算精度,相关系数从0.65提高至0.83,均方根误差从144减小至80 W·m^(-2),相对误差从67%减小至39%。特征空间法引入后,TESEBS模型估算的地表蒸散发明显小于原模型的估算结果,且模型给出的研究区地表蒸散发分布特征与植被指数NDVI的分布特征相一致。 展开更多
关键词 青藏高原 地表蒸散发 tesebs LANDSAT
原文传递
Variation in the surface heat flux on the north and south slopes of Mount Qomolangma 被引量:1
2
作者 Yonghao Jiang Maoshan Li +4 位作者 Yuchen Liu Ting Wang Pei Xu Yaoming Ma Fanglin Sun 《Atmospheric and Oceanic Science Letters》 CSCD 2024年第5期28-33,共6页
The distinctive conditions present on the north and south slopes of Mount Qomolangma,along with the intricate variations in the underlying surfaces,result in notable variations in the surface energy flux patterns of t... The distinctive conditions present on the north and south slopes of Mount Qomolangma,along with the intricate variations in the underlying surfaces,result in notable variations in the surface energy flux patterns of the two slopes.In this paper,data from TESEBS(Topographical Enhanced Surface Energy Balance System),remote sensing data from eight cloud-free scenarios,and observational data from nine stations are utilized to examine the fluctuations in the surface heat flux on both slopes.The inclusion of MCD43A3 satellite data enhances the surface albedo,contributing to more accurate simulation outcomes.The model results are validated using observational data.The RMSEs of the net radiation,ground heat,sensible heat,and latent heat flux are 40.73,17.09,33.26,and 30.91 W m^(−2),respectively.The net radiation flux is greater on the south slope and exhibits a rapid decline from summer to autumn.Due to the influence of the monsoon,on the north slope,the maximum sensible heat flux occurs in the pre-monsoon period in summer and the maximum latent heat flux occurs during the monsoon.The south slope experiences the highest latent heat flux in summer.The dominant flux on the north slope is sensible heat,while it is latent heat on the south slope.The seasonal variations in the ground heat flux are more pronounced on the south slope than on the north slope.Except in summer,the ground heat flux on the north slope surpasses that on the south slope. 展开更多
关键词 Mount Qomolangma tesebs model Remote sensing retrieval Surface heat fluxes
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部