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Forschungsstelle
BAFU
Projektnummer
ExSt.2019.939
Projekttitel
Characterization of spatio-temporal thermal heterogeneity and riparian shading in the Glatt River using high-resolution thermal infrared and multispectral remote sensing

Erfasste Texte


KategorieText
Schlüsselwörter
(Deutsch)
Wasser, Hydrologie
Schlüsselwörter
(Englisch)
Water, Hydrology
Schlüsselwörter
(Französisch)
Eaux, Hydrologie
Schlüsselwörter
(Italienisch)
Acque, Idrologia
Kurzbeschreibung
(Deutsch)
The main aim of our study was to investigate the suitability of high-resolution thermal infrared and multispectral remote sensing for the characterization of spatio-temporal thermal heterogeneity and riparian vegetation shading. Our measurements were carried out in parallel and in coordination with other investigations at a FOEN measuring station located on a hydromorphologically homogenous river. The results and empirical findings of these measurements are expected to contribute to the efficient mapping and monitoring of complex patterns of surface water temperature and riparian vegetation shading in river systems using the innovative tools presented in this manuscript.
Zugehörige Dokumente
Kurzbeschreibung
(Englisch)
The main aim of our study was to investigate the suitability of high-resolution thermal infrared and multispectral remote sensing for the characterization of spatio-temporal thermal heterogeneity and riparian vegetation shading. Our measurements were carried out in parallel and in coordination with other investigations at a FOEN measuring station located on a hydromorphologically homogenous river. The results and empirical findings of these measurements are expected to contribute to the efficient mapping and monitoring of complex patterns of surface water temperature and riparian vegetation shading in river systems using the innovative tools presented in this manuscript.
Zugehörige Dokumente
Kurzbeschreibung
(Französisch)
The main aim of our study was to investigate the suitability of high-resolution thermal infrared and multispectral remote sensing for the characterization of spatio-temporal thermal heterogeneity and riparian vegetation shading. Our measurements were carried out in parallel and in coordination with other investigations at a FOEN measuring station located on a hydromorphologically homogenous river. The results and empirical findings of these measurements are expected to contribute to the efficient mapping and monitoring of complex patterns of surface water temperature and riparian vegetation shading in river systems using the innovative tools presented in this manuscript.
Zugehörige Dokumente
Kurzbeschreibung
(Italienisch)
The main aim of our study was to investigate the suitability of high-resolution thermal infrared and multispectral remote sensing for the characterization of spatio-temporal thermal heterogeneity and riparian vegetation shading. Our measurements were carried out in parallel and in coordination with other investigations at a FOEN measuring station located on a hydromorphologically homogenous river. The results and empirical findings of these measurements are expected to contribute to the efficient mapping and monitoring of complex patterns of surface water temperature and riparian vegetation shading in river systems using the innovative tools presented in this manuscript.
Zugehörige Dokumente
Auftragnehmer
(Englisch)
ZHAW, Wädenswil
Belastetes Budget
(Englisch)
BAFU
Gesetzliche Grundlage
(Englisch)
Art. 57 Abs. 1 RVOG | Art. 57 al. 1 LOGA. | Art. 57 cpv. 1 LOGA
Impressum
(Englisch)
Copyright, Bundesbehörden der Schweizerischen Eidgenossenschaft | Droits d'auteur: autorités de la Confédération suisse | Diritti d'autore: autorità della Confederazione Svizzera | Dretgs d'autur: autoritads da la Confederaziun svizra | Copyright, Swiss federal authorities
Auskunft
(Englisch)
BAFU - Abteilung Hydrologie - Tel.: +41 58 463 85 68 - hydrologie@bafu.admin.ch