An empirical algorithm for light absorption by ocean water based on color

被引:87
作者
Lee, ZP
Carder, KL
Steward, RG
Peacock, TG
Davis, CO
Patch, JS
机构
[1] Univ S Florida, Dept Marine Sci, St Petersburg, FL 33701 USA
[2] USN, Res Lab, Washington, DC 20375 USA
基金
美国国家航空航天局;
关键词
D O I
10.1029/98JC01946
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Empirical algorithms for the total absorption coefficient and absorption coefficient by pigments for surface waters at 440 nm were developed by applying a quadratic formula that combines two spectral ratios of remote-sensing reflectance. For total absorption coefficients ranging from 0.02 to 2.0 m(-1), a goodness of fit was achieved between the measured and modeled data with a root-mean-square difference between the measured and modeled values for log10 scale (RMSDlog10) of 0.062 (15.3% for linear scale, number of samples N = 63), while RMSDlog10 is 0.111 (29.1% for linear scale, N = 126) for pigment absorption (ranging from 0.01 to 1.0 m(-1)). As alternatives to pigment concentration algorithms, the absorption algorithms developed can be applied to the coastal zone color scanner and sea-viewing wide-field-of-view sensor data to derive inherent optical properties of the ocean, For the same data sets, we also directly related the chlorophyll a concentrations to the spectral ratios and obtained an RMSDlog10 value of 0.218 (65.2% for linear scale, N = 120) for concentrations ranging from 0.06 to 50.0 mg m(-3). These results indicate that it is more accurate to estimate the absorption coefficients than the pigment concentrations from remotely sensed data. This is likely due to the fact that for. the broad range of waters studied the pigment-specific absorption coefficient at 440 nm ranged from 0.03 to 0.2 m(2) (mg chl)(-1). As an indirect test of the algorithms developed, the chlorophyll a concentration algorithm is applied to an independent global data set and an RMSDlog10 of 0.191 (55.2% for linear scale, N = 919) is obtained. There is no independent global absorption data set available as yet to test the absorption algorithms.
引用
收藏
页码:27967 / 27978
页数:12
相关论文
共 53 条
[1]  
AIKEN J, 1995, 10456629 NASA
[2]  
Austin R. W., 1981, Oceanography from Space. Proceedings of the COSPAR/SCOR/IUCRM Symposium, P239
[3]   SPECTRAL DEPENDENCE OF THE DIFFUSE ATTENUATION COEFFICIENT OF LIGHT IN OCEAN WATERS [J].
AUSTIN, RW ;
PETZOLD, TJ .
OPTICAL ENGINEERING, 1986, 25 (03) :471-479
[4]   Pigment packaging and Chl a-specific absorption in high-light oceanic waters [J].
Bissett, WP ;
Patch, JS ;
Carder, KL ;
Lee, ZP .
LIMNOLOGY AND OCEANOGRAPHY, 1997, 42 (05) :961-968
[5]   OPTICAL-PROPERTIES OF DIVERSE PHYTOPLANKTONIC SPECIES - EXPERIMENTAL RESULTS AND THEORETICAL INTERPRETATION [J].
BRICAUD, A ;
BEDHOMME, AL ;
MOREL, A .
JOURNAL OF PLANKTON RESEARCH, 1988, 10 (05) :851-873
[6]   VARIABILITY IN THE CHLOROPHYLL-SPECIFIC ABSORPTION-COEFFICIENTS OF NATURAL PHYTOPLANKTON - ANALYSIS AND PARAMETERIZATION [J].
BRICAUD, A ;
BABIN, M ;
MOREL, A ;
CLAUSTRE, H .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 1995, 100 (C7) :13321-13332
[7]   SPECTRAL ABSORPTION-COEFFICIENTS OF LIVING PHYTOPLANKTON AND NONALGAL BIOGENOUS MATTER - A COMPARISON BETWEEN THE PERU UPWELLING AREA AND THE SARGASSO SEA [J].
BRICAUD, A ;
STRAMSKI, D .
LIMNOLOGY AND OCEANOGRAPHY, 1990, 35 (03) :562-582
[8]  
CARDER KL, 1993, PHOTOGRAMM ENG REM S, V59, P339
[9]   REFLECTANCE MODEL FOR QUANTIFYING CHLOROPHYLL-A IN THE PRESENCE OF PRODUCTIVITY DEGRADATION PRODUCTS [J].
CARDER, KL ;
HAWES, SK ;
BAKER, KA ;
SMITH, RC ;
STEWARD, RG ;
MITCHELL, BG .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 1991, 96 (C11) :20599-20611
[10]   A REMOTE-SENSING REFLECTANCE MODEL OF A RED-TIDE DINOFLAGELLATE OFF WEST FLORIDA [J].
CARDER, KL ;
STEWARD, RG .
LIMNOLOGY AND OCEANOGRAPHY, 1985, 30 (02) :286-298