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Found 14 results.

TrilaWatt: Wattflächen (WFS)

Definitionen: Watt wird während des Tidehochwassers überflutet und fällt bei Tideniedrigwasser trocken. Eine Abgrenzung der Wattflächen hängt daher vom Verlauf von Tidehochwasser und Tideniedrigwasser ab. Die räumliche und zeitliche Variabilität von Tidehoch- und Tideniedrigwasser führt jedoch zu einer Vielzahl an möglichen Ausdehnungen von Watt auf täglichen, monatlichen, jährlichen oder dekadischen Zeitskalen. Diese bereits große Variabilität wird zusätzlich von der langfristigen Veränderung von Tide und Topographie überlagert. Produkt: Dieser Datensatz aus dem TrilaWatt Projekt beinhaltet die Topographie des Watts für die Deutsche Buch und die Niederlande, basierend auf jahresgemittelten Daten von Tidehoch- und Tideniedrigwasser. Auf dieser Grundlage wurden mittlere Tidehoch- und Tideniedrigwasserlinien sowie deren Unschärfe (±25cm) abgeleitet. Die Intertidalfläche resultiert aus der Verschneidung von jährlich interpolierten Topographie und jährlichen, mittleren Tidehoch- und Tideniedrigwasserdaten des digitalen Zwillings. Für den Zeitraum von 2015 bis einschließlich 2021 werden Auswertungen zu Intertidal-, Supratidal-Flächen sowie Hochwasser- und Niedrigwasser-Linien zur Verfügung gestellt. Die Datenprodukte werden im GeoTIFF Format und als Shapefiles bereitgestellt. Der Dienst stellt Auswertungen zu Intertidal-, Supratidal-Flächen sowie Hochwasser- und Niedrigwasser-Linien zur Verfügung. English: This dataset contains the annual topography of the intertidal zone of the Wadden Sea as an intersect of modeled annually averaged tidal high and low water with topography data. Based on the intertidal topography, we estimated annual the characteristic tidal low water line, tidal high water line, and their uncertainty. Download: A download is located under references (in German: "Verweise und Downloads").

TrilaWatt: Wattflächen (WMS)

Definitionen: Watt wird während des Tidehochwassers überflutet und fällt bei Tideniedrigwasser trocken. Eine Abgrenzung der Wattflächen hängt daher vom Verlauf von Tidehochwasser und Tideniedrigwasser ab. Die räumliche und zeitliche Variabilität von Tidehoch- und Tideniedrigwasser führt jedoch zu einer Vielzahl an möglichen Ausdehnungen von Watt auf täglichen, monatlichen, jährlichen oder dekadischen Zeitskalen. Diese bereits große Variabilität wird zusätzlich von der langfristigen Veränderung von Tide und Topographie überlagert. Produkt: Dieser Datensatz aus dem TrilaWatt Projekt beinhaltet die Topographie des Watts für die Deutsche Buch und die Niederlande, basierend auf jahresgemittelten Daten von Tidehoch- und Tideniedrigwasser. Auf dieser Grundlage wurden mittlere Tidehoch- und Tideniedrigwasserlinien sowie deren Unschärfe (±25cm) abgeleitet. Die Intertidalfläche resultiert aus der Verschneidung von jährlich interpolierten Topographie und jährlichen, mittleren Tidehoch- und Tideniedrigwasserdaten des digitalen Zwillings. Für den Zeitraum von 2015 bis einschließlich 2021 werden Auswertungen zu Intertidal-, Supratidal-Flächen sowie Hochwasser- und Niedrigwasser-Linien zur Verfügung gestellt. Die Datenprodukte werden im GeoTIFF Format und als Shapefiles bereitgestellt. Der Dienst stellt Auswertungen zu Intertidal-, Supratidal-Flächen sowie Hochwasser- und Niedrigwasser-Linien zur Verfügung. English: This dataset contains the annual topography of the intertidal zone of the Wadden Sea as an intersect of modeled annually averaged tidal high and low water with topography data. Based on the intertidal topography, we estimated annual the characteristic tidal low water line, tidal high water line, and their uncertainty. Download: A download is located under references (in German: "Verweise und Downloads").

TrilaWatt: Topographie (WMS)

Definitionen: In den Geowissenschaften beschreibt eine Topographie die Erdoberfläche. In aquatischen Systemen wird der Begriff oft synonym zum Begriff “Bathymetrie” für die Höhenlage der Gewässersohle verwendet. Im Forschungsprojekt TrilaWatt bezeichnen topographische Daten die subtidale, intertidale und supratidale Höhenverteilung im Bereich der 12 Seemeilen-Zone des Wattenmeers. Datenerzeugung: Die Basis der Datenerzeugung bilden topographische Modelle aus einer umfangreichen Datenbasis von See- und Landvermessungen verschiedenster Datentypen. Diese werden mit einem datengetriebenem Simulationsmodell über räumlich-zeitliche Interpolationsverfahren zusammengelegt. Als Kompromisse zwischen der ständige morphodynamische Aktivität im Wattenmeer und der deutlich geringeren Messfrequenz werden in TrilaWatt topographische Modelle als Jahrestopographien erstellt. Produkt: Für den Zeitraum von 2015 bis einschließlich 2021 wird ein gerastertes topographisches Modell in der 12 Seemeilen Zone des Wattenmeers mit einer gerasterten Auflösung von 10 m in Raum und Zeit zum jeweiligen Gültigkeitszeitraum des 01.07. interpoliert. Das Datenprodukt wird im GeoTIFF Format bereitgestellt. Zur Einschätzung der Unschärfe des topographischen Datensatzes werden zu jedem Datenprodukt Datenquellenkarten und Datendichtekarten veröffentlicht. English: Topography describes the study of the forms and features of land surfaces. Topographic data in aquatic systems is often also referred to as bathymetry. TrilaWatt topography data merged a large number of observational data to annual topographies using a data-driven interpolation model. Data are distributed in 10m grids as GeoTIFF files within the 12 nautical mile zone of the Wadden Sea's coast line. Download A download is located under references (in German: "Verweise und Downloads").

TrilaWatt: Topographie (WCS)

Definitionen: In den Geowissenschaften beschreibt eine Topographie die Erdoberfläche. In aquatischen Systemen wird der Begriff oft synonym zum Begriff “Bathymetrie” für die Höhenlage der Gewässersohle verwendet. Im Forschungsprojekt TrilaWatt bezeichnen topographische Daten die subtidale, intertidale und supratidale Höhenverteilung im Bereich der 12 Seemeilen-Zone des Wattenmeers. Datenerzeugung: Die Basis der Datenerzeugung bilden topographische Modelle aus einer umfangreichen Datenbasis von See- und Landvermessungen verschiedenster Datentypen. Diese werden mit einem datengetriebenem Simulationsmodell über räumlich-zeitliche Interpolationsverfahren zusammengelegt. Als Kompromisse zwischen der ständige morphodynamische Aktivität im Wattenmeer und der deutlich geringeren Messfrequenz werden in TrilaWatt topographische Modelle als Jahrestopographien erstellt. Produkt: Für den Zeitraum von 2015 bis einschließlich 2021 wird ein gerastertes topographisches Modell in der 12 Seemeilen Zone des Wattenmeers mit einer gerasterten Auflösung von 10 m in Raum und Zeit zum jeweiligen Gültigkeitszeitraum des 01.07. interpoliert. Das Datenprodukt wird im GeoTIFF Format bereitgestellt. Zur Einschätzung der Unschärfe des topographischen Datensatzes werden zu jedem Datenprodukt Datenquellenkarten und Datendichtekarten veröffentlicht. Weiterhin werden prototypische Topographien für die Jahre 1996-2014 (NL) sowie für 2022 (NL und DE) bereitgestellt. Weitere Produkte: Min-Z/Max-Z, Morphologischer Raum und Morphologischer Drive (2015-2021). Zitat für diesen Datensatz (DOI) - Zeitraum 2015-2021: Milbradt, P., Pineda, D. (2024): TrilaWatt: Topographie (2015-2021) [Dataset]. Bundesanstalt für Wasserbau. https://doi.org/10.48437/366eab-3640c8 English: Topography describes the study of the forms and features of land surfaces. Topographic data in aquatic systems is often also referred to as bathymetry. TrilaWatt topography data merged a large number of observational data to annual topographies using a data-driven interpolation model. Data are distributed in 10m grids as GeoTIFF files within the 12 nautical mile zone of the Wadden Sea's coast line. Additional products: Min-Z/Max-Z, Bed Elevation Range and morphological Drive (2015-2021). Download A download is located under references (in German: "Verweise und Downloads").

mDRONES4rivers-project: UAV-imagery of the project area Reitwein at the River Oder, Germany

Spatially and temporally high-resolution data was acquired with the aid of multispectral sensors mounted on UAV and a gyrocopter platform for the purpose of classification. The work was part of the research and development project „Modern sensors and airborne remote sensing for the mapping of vegetation and hydromorphology along Federal waterways in Germany“ (mDRONES4rivers) in cooperation of the German Federal Institute of Hydrology (BfG), Geocoptix GmbH, Hochschule Koblenz und JB Hyperspectral Devices.  Within the project period (2019-2022) data was collected at different sites situated in Germany along the Rivers Rhine and Oder. All published data produced within the project can be found by searching for the keyword ‘mDRONES4rivers‘.  In this dataset, the following UAS data and metadata of the project site ‘Reitwein’ (center coordinates [WGS84]: 52.500961°N, 14.629186 °E; area: 60 ha) at the River Oder in Germany is available for download: •             Multispectral orthophotos (GeoTiff; 6 bands: B, G, R, Red-Edge, NIR, Flag; camera: Micasense; resolution: 25 cm; abbreviation: MS_RAW) •             RGB-orthophotos (GeoTiff; 3 bands: R, G, B; camera: Phantom; resolution: 25 cm; abbreviation: PH_ORTHO) •             Digital Surface Models (GeoTiff; 1 band; camera: Phantom; resolution: ca. 5 cm; abbreviation: PH_DEM) •             associated Technical Reports (PDF; technical metadata concerning data acquisition, and processing using Agisoft Metashape, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface model) The above-mentioned files are provided for download as dataset stored in one directory per season depending on the date of data acquisition and flight altitude, as the data was collected here from two different flight altitudes (e.g. mDRONES4rivers_RW_UAV_2020_03_summer_70m.zip = projectname_projectsite_platform_year_no.season_name.season_flightaltitude.zip). To provide an overview of all files and general background information plus data preview the following files are stored in the info.zip folder:  •             Overview table and metadata of the above-mentioned data (xlsx) •             Summary (PDF, Detailed description of sensors and data acquisition procedure, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface models) Note: the data was processed with focus on spectral information and not for geodetic purposes. Georeferencing accuracy has not been checked in detail.

mDRONES4rivers-project: UAV-imagery of the project area Kuehkopf Knoblochsaue at the Rhine River, Germany

Spatially and temporally high-resolution data was acquired with the aid of multispectral sensors mounted on UAV and a gyrocopter platform for the purpose of classification. The work was part of the research and development project „Modern sensors and airborne remote sensing for the mapping of vegetation and hydromorphology along Federal waterways in Germany“ (mDRONES4rivers) in cooperation of the German Federal Institute of Hydrology (BfG), Geocoptix GmbH, Hochschule Koblenz und JB Hyperspectral Devices.  Within the project period (2019-2022) data was collected at different sites situated in Germany along the Rivers Rhine and Oder. All published data produced within the project can be found by searching for the keyword ‘mDRONES4rivers‘.  In this dataset, the following UAS data and metadata of the project site ‘Kuehkopf Knoblochsaue’ (center coordinates [WGS84]: 49.830564°N, 8.383341°E; area: 48 ha) at the Rhine River in Germany is available for download: •             Multispectral orthophotos (GeoTiff; 6 bands: B, G, R, Red-Edge, NIR, Flag; camera: Micasense; resolution: 25 cm; abbreviation: MS_RAW) •             RGB-orthophotos (GeoTiff; 3 bands: R, G, B; camera: Phantom; resolution: 25 cm; abbreviation: PH_ORTHO) •             Digital Surface Models (GeoTiff; 1 band; camera: Phantom; resolution: ca. 5 cm; abbreviation : PH_DEM) •             associated Technical Reports (PDF; technical metadata concerning data acquisition, and processing using Agisoft Metashape, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface model) The above-mentioned files are provided for download as dataset stored in one directory per season depending on the date of data acquisition (e.g. mDRONES4rivers_NW_2019_01_Winter.zip = projectname_projectsite_year_no.season_name.season). To provide an overview of all files and general background information plus data preview the following files are stored in the info.zip folder:  •             Overview table and metadata of the above-mentioned data (xlsx) •             Summary (PDF, Detailed description of sensors and data acquisition procedure, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface models) Note: the data was processed with focus on spectral information and not for geodetic purposes. Georeferencing accuracy has not been checked in detail.

mDRONES4rivers-project: UAV-imagery of the project area Nonnenwerth at the Rhine River, Germany

Spatially and temporally high-resolution data was acquired with the aid of multispectral sensors mounted on UAV and a gyrocopter platform for the purpose of classification. The work was part of the research and development project „Modern sensors and airborne remote sensing for the mapping of vegetation and hydromorphology along Federal waterways in Germany“ (mDRONES4rivers) in cooperation of the German Federal Institute of Hydrology (BfG), Geocoptix GmbH, Hochschule Koblenz und JB Hyperspectral Devices.  Within the project period (2019-2022) data was collected at different sites situated in Germany along the Rivers Rhine and Oder. All published data produced within the project can be found by searching for the keyword ‘mDRONES4rivers‘.  In this dataset, the following UAS data and metadata of the project site ‘Nonnenwerth’ (center coordinates [WGS84]: 50.637541°N, 7.208834°E; area: 8 ha) at the Rhine River in Germany is available for download: •             Multispectral orthophotos (GeoTiff; 6 bands: B, G, R, Red-Edge, NIR, Flag; camera: Micasense; resolution: 25 cm; abbreviation: MS_RAW) •             RGB-orthophotos (GeoTiff; 3 bands: R, G, B; camera: Phantom; resolution: 25 cm; abbreviation: PH_ORTHO) •             Digital Surface Models (GeoTiff; 1 band; camera: Phantom; resolution: ca. 5 cm; abbreviation: PH_DEM) •             associated Technical Reports (PDF; technical metadata concerning data acquisition, and processing using Agisoft Metashape, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface model) The above-mentioned files are provided for download as dataset stored in one directory per season depending on the date of data acquisition (e.g. mDRONES4rivers_NW_UAV_2019_01_Winter.zip = projectname_projectsite_platform_year_no.season_name.season). To provide an overview of all files and general background information plus data preview the following files are stored in the info.zip folder:  •             Overview table and metadata of the above-mentioned data (xlsx) •             Summary (PDF, Detailed description of sensors and data acquisition procedure, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface models) Note: the data was processed with focus on spectral information and not for geodetic purposes. Georeferencing accuracy has not been checked in detail.

mDRONES4rivers-project: UAV-imagery of the project area Laubenheim at the Rhine River, Germany

Spatially and temporally high-resolution data was acquired with the aid of multispectral sensors mounted on UAV and a gyrocopter platform for the purpose of classification. The work was part of the research and development project „Modern sensors and airborne remote sensing for the mapping of vegetation and hydromorphology along Federal waterways in Germany“ (mDRONES4rivers) in cooperation of the German Federal Institute of Hydrology (BfG), Geocoptix GmbH, Hochschule Koblenz und JB Hyperspectral Devices.  Within the project period (2019-2022) data was collected at different sites situated in Germany along the Rivers Rhine and Oder. All published data produced within the project can be found by searching for the keyword ‘mDRONES4rivers‘.  In this dataset, the following UAS data and metadata of the project site ‘Laubenheim’ (center coordinates [WGS84]: 49.960007°N, 8.331229°E; area: 11 ha) at the Rhine River in Germany is available for download: •             Multispectral orthophotos (GeoTiff; 6 bands: B, G, R, Red-Edge, NIR, Flag; camera: Micasense; resolution: 25 cm; abbreviation: MS_RAW) •             RGB-orthophotos (GeoTiff; 3 bands: R, G, B; camera: Phantom; resolution: 25 cm; abbreviation: PH_ORTHO) •             Digital Surface Models (GeoTiff; 1 band; camera: Phantom; resolution: ca. 5 cm; abbreviation: PH_DEM) •             associated Technical Reports (PDF; technical metadata concerning data acquisition, and processing using Agisoft Metashape, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface model) The above-mentioned files are provided for download as dataset stored in one directory per season depending on the date of data acquisition (e.g. mDRONES4rivers_NW_UAV_2019_01_Winter.zip = projectname_projectsite_platform_year_no.season_name.season). To provide an overview of all files and general background information plus data preview the following files are stored in the info.zip folder:  •             Overview table and metadata of the above-mentioned data (xlsx) •             Summary (PDF, Detailed description of sensors and data acquisition procedure, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface models) Note: the data was processed with focus on spectral information and not for geodetic purposes. Georeferencing accuracy has not been checked in detail.

mDRONES4rivers-project: UAV-imagery of the project area Emmericher Ward at the Rhine River, Germany

Spatially and temporally high-resolution data was acquired with the aid of multispectral sensors mounted on UAV and a gyrocopter platform for the purpose of classification. The work was part of the research and development project „Modern sensors and airborne remote sensing for the mapping of vegetation and hydromorphology along Federal waterways in Germany“ (mDRONES4rivers) in cooperation of the German Federal Institute of Hydrology (BfG), Geocoptix GmbH, Hochschule Koblenz und JB Hyperspectral Devices.  Within the project period (2019-2022) data was collected at different sites situated in Germany along the Rivers Rhine and Oder. All published data produced within the project can be found by searching for the keyword ‘mDRONES4rivers‘.  In this dataset, the following UAS data and metadata of the project site ‘Emmericher Ward’ (center coordinates [WGS84]: 50.385264°N, 6.198692°E; area: 53ha) at the Rhine River in Germany is available for download: •             Multispectral orthophotos (GeoTiff; 6 bands: B, G, R, Red-Edge, NIR, Flag; camera: Micasense; resolution: 25 cm; abbreviation: MS_RAW) •             RGB-orthophotos (GeoTiff; 3 bands: R, G, B; camera: Phantom; resolution: 25 cm; abbreviation: PH_ORTHO) •             Digital Surface Models (GeoTiff; 1 band; camera: Phantom; resolution: ca. 5 cm; abbreviation: PH_DEM) •             associated Technical Reports (PDF; technical metadata concerning data acquisition, and processing using Agisoft Metashape, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface model) The above-mentioned files are provided for download as dataset stored in one directory per season depending on the date of data acquisition (e.g. mDRONES4rivers_EW_UAV_2019_01_Winter.zip = projectname_projectsite_platform_year_no.season_name.season). To provide an overview of all files and general background information plus data preview the following files are stored in the info.zip folder:  •             Overview table and metadata of the above-mentioned data (xlsx) •             Summary (PDF, Detailed description of sensors and data acquisition procedure, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface models) Note: the data was processed with focus on spectral information and not for geodetic purposes. Georeferencing accuracy has not been checked in detail.

mDRONES4rivers-project: UAV-imagery of the project area Niederwerth at the Rhine River, Germany

Spatially and temporally high-resolution data was acquired with the aid of multispectral sensors mounted on UAV and a gyrocopter platform for the purpose of classification. The work was part of the research and development project „Modern sensors and airborne remote sensing for the mapping of vegetation and hydromorphology along Federal waterways in Germany“ (mDRONES4rivers) in cooperation of the German Federal Institute of Hydrology (BfG), Geocoptix GmbH, Hochschule Koblenz und JB Hyperspectral Devices.  Within the project period (2019-2022) data was collected at different sites situated in Germany along the Rivers Rhine and Oder. All published data produced within the project can be found by searching for the keyword ‘mDRONES4rivers‘.  In this dataset, the following UAS data and metadata of the project site ‘Niederwerth’ (center coordinates [WGS84]: 50.386326°N, 7.613847°E; area: 27 ha) at the Rhine River in Germany is available for download: •             Multispectral orthophotos (GeoTiff; 6 bands: B, G, R, Red-Edge, NIR, Flag; camera: Micasense; resolution: 25 cm; abbreviation: MS_RAW) •             RGB-orthophotos (GeoTiff; 3 bands: R, G, B; camera: Phantom; resolution: 25 cm; abbreviation: PH_ORTHO) •             Digital Surface Models (GeoTiff; 1 band; camera: Phantom; resolution: ca. 5 cm; abbreviation : PH_DEM) •             associated Technical Reports (PDF; technical metadata concerning data acquisition, and processing using Agisoft Metashape, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface model) The above-mentioned files are provided for download as dataset stored in one directory per season depending on the date of data acquisition (e.g. mDRONES4rivers_NW_2019_01_Winter.zip = projectname_projectsite_year_no.season_name.season). To provide an overview of all files and general background information plus data preview the following files are additionally provided:  •             Overview table and metadata of the above-mentioned data (xlsx) •             Summary (PDF, Detailed description of sensors and data acquisition procedure, 1x for multispectral orthophotos, 1x for RGB-orthophotos + digital surface models) Note: the data was processed with focus on spectral information and not for geodetic purposes. Georeferencing accuracy has not been checked in detail.

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