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Hyperspectral remote sensing of near...
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Bagheri, Sima.
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Hyperspectral remote sensing of nearshore water quality = a case study in New York/New Jersey /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Hyperspectral remote sensing of nearshore water quality/ by Sima Bagheri.
其他題名:
a case study in New York/New Jersey /
作者:
Bagheri, Sima.
出版者:
Cham :Springer International Publishing : : 2017.,
面頁冊數:
x, 92 p. :ill. (some col.), digital ;24 cm.
內容註:
1. Introduction -- 2. New York/New Jersey Nearshore waters - A Case Study -- 3 -- In-situ measurements to Establish the Biooptical Model -- 4. Application of Hyperspectral Data -- 5 -- Forward/Biooptical Modeling and Calibration -- 6 -- Inverse Modeling and Validation -- 7 -- Conclusion and Role of Hyperspectral Data in Global Change Research.
Contained By:
Springer eBooks
標題:
Water quality - Measurement. - New York (State) -
電子資源:
http://dx.doi.org/10.1007/978-3-319-46949-2
ISBN:
9783319469492
Hyperspectral remote sensing of nearshore water quality = a case study in New York/New Jersey /
Bagheri, Sima.
Hyperspectral remote sensing of nearshore water quality
a case study in New York/New Jersey /[electronic resource] :by Sima Bagheri. - Cham :Springer International Publishing :2017. - x, 92 p. :ill. (some col.), digital ;24 cm. - SpringerBriefs in environmental science,2191-5547. - SpringerBriefs in environmental science..
1. Introduction -- 2. New York/New Jersey Nearshore waters - A Case Study -- 3 -- In-situ measurements to Establish the Biooptical Model -- 4. Application of Hyperspectral Data -- 5 -- Forward/Biooptical Modeling and Calibration -- 6 -- Inverse Modeling and Validation -- 7 -- Conclusion and Role of Hyperspectral Data in Global Change Research.
This book provides details on of the utility of hyperspectral remote sensing - NASA/AVIRIS in nearshore water quality issues of NY/NJ. It demonstrates the use of bio optical modeling and retrieval techniques to derive the concentrations of important water quality parameters (chlorophyll, color dissolved organic matter and suspended sediments) in the study area. The case study focuses on the nearshore waters of NY/NJ considered as a valued ecological, economic and recreational resource within the New York metropolitan area. During field campaigns (1998-2001) measurements were made to establish hydrological optical properties of the NY/NJ nearshore waters with concurrent NASA/AVIRIS overflights. The field measurements included: 1) concurrent above and below surface spectral reflectance; 2) shipboard sampling for determination of inherent optical properties (IOP); and 3) concentrations of optically important water quality parameters. Understanding the relationship between reflectance, absorption and scattering is essential for developing the analytical algorithm necessary to use remote sensing as a monitoring /management tool in the nearshore environment.
ISBN: 9783319469492
Standard No.: 10.1007/978-3-319-46949-2doiSubjects--Topical Terms:
3218199
Water quality
--Measurement.--New York (State)
LC Class. No.: TD224.N7
Dewey Class. No.: 628.161
Hyperspectral remote sensing of nearshore water quality = a case study in New York/New Jersey /
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1. Introduction -- 2. New York/New Jersey Nearshore waters - A Case Study -- 3 -- In-situ measurements to Establish the Biooptical Model -- 4. Application of Hyperspectral Data -- 5 -- Forward/Biooptical Modeling and Calibration -- 6 -- Inverse Modeling and Validation -- 7 -- Conclusion and Role of Hyperspectral Data in Global Change Research.
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This book provides details on of the utility of hyperspectral remote sensing - NASA/AVIRIS in nearshore water quality issues of NY/NJ. It demonstrates the use of bio optical modeling and retrieval techniques to derive the concentrations of important water quality parameters (chlorophyll, color dissolved organic matter and suspended sediments) in the study area. The case study focuses on the nearshore waters of NY/NJ considered as a valued ecological, economic and recreational resource within the New York metropolitan area. During field campaigns (1998-2001) measurements were made to establish hydrological optical properties of the NY/NJ nearshore waters with concurrent NASA/AVIRIS overflights. The field measurements included: 1) concurrent above and below surface spectral reflectance; 2) shipboard sampling for determination of inherent optical properties (IOP); and 3) concentrations of optically important water quality parameters. Understanding the relationship between reflectance, absorption and scattering is essential for developing the analytical algorithm necessary to use remote sensing as a monitoring /management tool in the nearshore environment.
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