期刊文献+

应用遥感方法研究黄河三角洲地表蒸发及其与下垫面关系 被引量:19

A study of evaporation and its relationship with the surface parameters using remote sensing data in the Yellow River Delta (YRD)
下载PDF
导出
摘要 文中主要应用遥感方法计算了黄河三角洲地表蒸发量及其地表特征参数。地表特征参数及其合理组合揭示出黄河三角洲下垫面的基本特征:农田植被指数和天然植被的植被指数有不同的变化规律,下垫面覆盖度低,裸地较多,地表较湿润,蒸发量较大。蒸发量时空分布主要受下垫面条件控制,滨海裸地和受人类活动影响较大的农田等地蒸发量较大,年际平均蒸发量在570~860mm之间。 In this paper we estimate the evaporation rate in the Yellow River Delta (YRD) and analyze its relationship with surface parameters using remote sensing data. The surface parameters and their intergration can provide more information about the ground condition. The basic characteristics of the YRD ground are that the regular pattern of the change of natural vegetation NDVI (Normalized Difference Vegetation Index) is distinguished from that of the farm NDVI; that the cover-degree is low; that the area of bare soil is large; that the surface is wetter; and that the amount of evaporation is large. The average annual evaporation varied between 570 mm and 860 mm, and the surface characteristics mainly controlled the temporal and spatial distribution of evaporation in the YRD.
出处 《地学前缘》 EI CAS CSCD 北大核心 2005年第U04期159-165,共7页 Earth Science Frontiers
基金 国家自然科学基金项目(40272105) 国家重点基础研究发展规划项目(G1999043606)
关键词 遥感 蒸发量 地表特征参数 黄河三角洲 remote sensing evaporation surface parameters Yellow River delta (YRD)
  • 相关文献

参考文献16

二级参考文献31

  • 1胡隐樵,高由禧,王介民,季国良,沈志宝,程麟生,陈家宜,李守谦.黑河实验(HEIFE)的一些研究成果[J].高原气象,1994,13(3):225-236. 被引量:162
  • 2季国良 邹基玲.干旱区绿洲和沙漠辐射收支的季节变化[J].高原气象,1994,13(4):323-329.
  • 3陈镜明.现有遥感蒸散模式中的一个重要缺点及改进[J].科学通报,1988,6:454-457.
  • 4Brown K W,Rosenberg N J. A resistance model to predict evapotranspiration and its application to a sugar beet field[J]. Agron. J. , 1973, 65:199-209.
  • 5Idso S B, Jackson R D, Reginato R J. Estimating evaporation: a technique adaptable to remote sensing [J]. Science,1975,189:991-992.
  • 6Jackson R D, Reginato R J, Idso S B. Wheat canopy temperature: a practical tool for evaluating water requirements[J]. Water Resour. Res. ,1977, 13:651-656.
  • 7Suguin B,Itier B. Using midday surface temperature to estimate daily evaporation from satellite thermal IR data [J]. Int. J.Re. Sens. , 1983, 4(2):371-383.
  • 8Verma S B, Rosenberg N J, Blad B,et al. Baradas, Resistance-energy balance method for predicting evapotranspiration: Determination of boundary layer resistance and evaluation of error effects[J]. Agron. J. , 1976,68:106-116.
  • 9Hatfield J L,Perrier A,Jackson K D. Estimation of evapotranspiration at one-time-of-day using remotely sensed surface temperature[J]. Agric. Water. Manage. , 1983,7 : 105- 110.
  • 10谢贤群.遥感改进的测定农田蒸发量的能量平衡—空气动力学阻抗模式[J].气象学报,1988,46(1):102-106.

共引文献96

同被引文献317

引证文献19

二级引证文献184

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部