Arid
DOI10.1029/93WR03065
VARIABILITY OF EMISSIVITY AND SURFACE-TEMPERATURE OVER A SPARSELY VEGETATED SURFACE
HUMES, KS; KUSTAS, WP; MORAN, MS; NICHOLS, WD; WELTZ, MA
通讯作者HUMES, KS
来源期刊WATER RESOURCES RESEARCH
ISSN0043-1397
出版年1994
卷号30期号:5页码:1299-1310
英文摘要

Radiometric surface temperatures obtained from remote sensing measurements are a function of both the physical surface temperature and the effective emissivity of the surface within the band pass of the radiometric measurement. For sparsely vegetated areas, however, a sensor views significant fractions of both bare soil and various vegetation types. In this case the radiometric response of a sensor is a function of the emissivities and kinetic temperatures of various surface elements, the proportion of those surface elements within the field of view of the sensor, and the interaction of radiation emitted from the various surface components. In order to effectively utilize thermal remote sensing data to quantify energy balance components for a sparsely vegetated area, it is important to examine the typical magnitude and degree of variability of emissivity and surface temperature for such surfaces. Surface emissivity measurements and ground and low-altitude-aircraft-based surface temperature measurements (8-13 mum band pass) made in conjunction with the Monsoon ’90 field experiment were used to evaluate the typical variability of those quantities during the summer rainy season in a semiarid watershed. The average value for thermal band emissivity of the exposed bare soil portions of the surface was found to be approximately 0.96; the average value measured for most of the varieties of desert shrubs present was approximately 0.99. Surface composite emissivity was estimated to be approximately 0.98 for both the grass-dominated and shrub-dominated portions of the watershed. The spatial variability of surface temperature was found to be highly dependent on the spatial scale of integration for the instantaneous field of view (IFOV) of the instrument, the spatial scale of the total area under evaluation, and the time of day. For the conditions which existed during most of the Monsoon ’90 experiment, the differences in kinetic (physical) temperature between the vegetation and soil background were typically between 10-degrees and 25-degrees-C at midday. These differences gave rise to large variations in radiometric composite surface temperatures observed with a ground-based instrument configuration which allowed a ground IFOV of approximately 0.5 m. An evaluation of the frequency distribution for these observations indicated that the variance in surface temperature observed over an intensively sampled target area (approximately 500 m x 120 m) increased significantly in the early to late morning hours of a typical diurnal heating cycle. For aircraft-based composite radiometric temperature measurements at the watershed scale (with ground IFOV of approximately 40 m for each observation), much of the variability in surface temperature due to differences in soil and vegetation temperature was integrated into a single measurement; consequently, the variance between observations over the watershed was not significantly larger than those observed at length scales of 100 m.


类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:A1994NJ81700009
WOS关键词ENERGY-BALANCE ; CANOPY TEMPERATURE ; SPATIAL VARIABILITY ; THERMAL-RADIATION ; WHEAT CANOPY ; HEAT-FLUX ; ROW CROP ; MODEL ; SOIL ; WATER
WOS类目Environmental Sciences ; Limnology ; Water Resources
WOS研究方向Environmental Sciences & Ecology ; Marine & Freshwater Biology ; Water Resources
来源机构United States Geological Survey
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/130810
作者单位(1)US GEOL SURVEY, DIV WATER RESOURCES, CARSON CITY, NV 89719 USA;(2)USDA ARS, SW WATERSHED RES CTR, TUCSON, AZ 85719 USA;(3)USDA ARS, US WATER CONSERVAT LAB, PHOENIX, AZ 85040 USA
推荐引用方式
GB/T 7714
HUMES, KS,KUSTAS, WP,MORAN, MS,et al. VARIABILITY OF EMISSIVITY AND SURFACE-TEMPERATURE OVER A SPARSELY VEGETATED SURFACE[J]. United States Geological Survey,1994,30(5):1299-1310.
APA HUMES, KS,KUSTAS, WP,MORAN, MS,NICHOLS, WD,&WELTZ, MA.(1994).VARIABILITY OF EMISSIVITY AND SURFACE-TEMPERATURE OVER A SPARSELY VEGETATED SURFACE.WATER RESOURCES RESEARCH,30(5),1299-1310.
MLA HUMES, KS,et al."VARIABILITY OF EMISSIVITY AND SURFACE-TEMPERATURE OVER A SPARSELY VEGETATED SURFACE".WATER RESOURCES RESEARCH 30.5(1994):1299-1310.
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