Arid
The scaling characteristics of remotely-sensed variables for sparsely-vegetated heterogeneous landscapes
Moran, MS; Humes, KS; Pinter, PJ
通讯作者Moran, MS
来源期刊JOURNAL OF HYDROLOGY
ISSN0022-1694
出版年1997
卷号190期号:3-4页码:337-362
英文摘要

With increasing interest in airborne and satellite-based sensors for mapping regional and global energy balance, there is a need to determine the uncertainty involved in aggregating remotely-sensed variables [surface temperature (T-k) and reflectance (rho)] and surface energy fluxes [sensible (H) and latent (lambda E) heat flux] over large areas. This uncertainty is directly related to two factors: (1) the non-linearity of the relation between the sensor signal and T-k, rho, H or lambda E; and (2) the heterogeneity of the site. In this study, we compiled several remotely-sensed data sets acquired at different locations within a semi-arid rangeland in Arizona, at a variety of spatial and temporal resolutions. These data sets provided the range of data heterogeneities necessary for an extensive analysis of data aggregation. The general technique to evaluate uncertainty was to compare remotely-sensed variables and energy balance components calculated in two ways: first, calculated at the pixel resolution and averaged to the coarser resolution; and second, calculated directly at the coarse resolution by aggregating the fine-resolution data to the coarse scale. Results showed that the error in the aggregation of T-k and rho was negligible for a wide range of conditions. However, the error in aggregation of H and lambda E was highly influenced by the heterogeneity of the site. Errors in H larger than 50% were possible under certain conditions. The conditions associated with the largest aggregation errors in H were:


sites which are composed of a mix of stable and unstable conditions;


sites which have considerable variations in aerodynamic roughness, especially for highly unstable conditions where the difference between surface and air temperature is large; and


sites which are characterized by patch vegetation, where the pixel resolution is less than or nearly-equal to the diameter of the vegetation ’element’ (in most cases, the diameter of the dominant vegetation type or vegetation patch).


Thus, knowledge of the surface heterogeneity is essential for minimizing error in aggregation of H and lambda E. Two schemes are presented for quantifying surface heterogeneity as a first step in data aggregation. These results emphasized the need for caution in aggregation of energy balance components over heterogeneous landscapes with sparse or mixed vegetation types. (C) 1997 Elsevier Science B.V.


类型Article ; Proceedings Paper
语种英语
国家USA
收录类别CPCI-S ; SCI-E
WOS记录号WOS:A1997XG47100009
WOS关键词SURFACE-ENERGY BALANCE ; THERMAL INFRARED DATA ; SENSIBLE HEAT-FLUX ; SEMIARID RANGELAND ; SATELLITE DATA ; NET-RADIATION ; SPECTRAL DATA ; LATENT-HEAT ; TEMPERATURE ; EVAPOTRANSPIRATION
WOS类目Engineering, Civil ; Geosciences, Multidisciplinary ; Water Resources
WOS研究方向Engineering ; Geology ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/134626
作者单位(1)ARS,USDA,HYDROL LAB,BELTSVILLE,MD 20705
推荐引用方式
GB/T 7714
Moran, MS,Humes, KS,Pinter, PJ. The scaling characteristics of remotely-sensed variables for sparsely-vegetated heterogeneous landscapes[J],1997,190(3-4):337-362.
APA Moran, MS,Humes, KS,&Pinter, PJ.(1997).The scaling characteristics of remotely-sensed variables for sparsely-vegetated heterogeneous landscapes.JOURNAL OF HYDROLOGY,190(3-4),337-362.
MLA Moran, MS,et al."The scaling characteristics of remotely-sensed variables for sparsely-vegetated heterogeneous landscapes".JOURNAL OF HYDROLOGY 190.3-4(1997):337-362.
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