中国科学D辑(英文版)
中國科學D輯(英文版)
중국과학D집(영문판)
SCIENCE IN CHINA(SCIENTIA SINICA)
2003年
1期
10-22
,共13页
张仁华%孙晓敏%刘纪远%苏红波%唐新斋%朱治林
張仁華%孫曉敏%劉紀遠%囌紅波%唐新齋%硃治林
장인화%손효민%류기원%소홍파%당신재%주치림
quantitative remote sensing%crop transpiration%soil water use efficiency (SWUE)
A two-layer model used to get the estimated values of crop transpiration by inversion using remote sensing data, which has been proved effective at some agricultural-ecological stations, is first discussed. An important part of it is the temperature separation model (in which the surface temperature in a mixed pixel is separated into soil surface temperature and crop canopy surface temperature) on the basis of bi-temporal radiometric temperature in a mixed pixel and its thermal inertia. To improve the inversion, the authors put forward some new algorithms, including an algorithm for the estimation of regional emissivities, a static feedback algorithm using surface temperature for the extension of air temperature at ecological stations to the region surrounding them and a spatial extension algorithm for calculating the wind speed 2 m above the ground with surface roughness and radiometric temperature. Finally, regional distributions of crop transpiration (CT) and soil water use efficiency (SWUE) in North China were calculated pixel by pixel using NOAA-AVHRR data and surface measurements and calibrations. The results provide a way to assess the effects of various agricultural practices on SWUE by using remote sensing data in North China in spring.