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- [[Image:Swarm_over_Italy.jpg|thumb|right|300px| <small> '''Fig. 1.''' Use of satellites as remote sensing platforms (Photo credit: ESA-AOES Medialab).</ ...th the object. Information is conveyed by waves radiating from the object. The sensor is mounted on a fixed frame (a mast) or on a moving platform, for ex11 KB (1,586 words) - 18:47, 19 February 2024
- ...s. Also a literature list is provided with an overview of literature about Argus. ...k.JPG|thumb|250px|right|Figure 1 Argus video cameras in Noordwijk aan Zee, The Netherlands]]13 KB (1,959 words) - 15:21, 6 April 2021
- ...images from the beach. For a short introduction of Argus, see also [[Argus video]]. ==Time-averaged video data ==7 KB (1,069 words) - 21:30, 10 August 2020
- ...The article provides also an introduction into Argus databases and merging of images. == Geo-referencing of oblique video data ==6 KB (969 words) - 21:29, 10 August 2020
- ...ring system]]. For definitions of used terminology, see also [[definitions of coastal terms]]. ...ted, operational video analysis methods nowadays enable the quantification of:10 KB (1,502 words) - 21:31, 10 August 2020
- ...nds: Delft Hydraulics Laboratory</ref>. This article describes three types of instruments which can be used to produce bathymetric maps: mechanical, acou ...curate measuring instruments for bed level detection are required. Herein, the following methods and accuracy involved are discussed: mechanical bed level7 KB (1,105 words) - 13:16, 7 December 2023
- ...This summary provides a short introduction of the [[Argus video monitoring system]]. ==Introduction of Argus video==3 KB (414 words) - 16:20, 14 February 2024
- ...Rijn, L. C. van (1986). ''Manual sediment transport measurements''. Delft, The Netherlands: Delft Hydraulics Laboratory</ref>. This article describes diff ...ment to measure fluid velocity, pressure and wave height commonly consists of:10 KB (1,442 words) - 20:14, 29 June 2019
- ...le of a [[video technology]]. See also [[application and use of underwater video]] ...d around on a carrier, and a way to transmit and/or record the pictures to the viewer where they are reproduced. These components are discussed briefly be18 KB (3,032 words) - 15:13, 22 August 2020
- ...sensor]], which can be used to measure [[turbidity]] and the concentration of [[suspended load]]. [[Image:H5642figure2.jpg|thumb|250px|right|Figure 2: Calibration curves of OBS]]11 KB (1,594 words) - 11:42, 20 August 2020
- ...emote sensing]] technique can be used to generate maps of the seafloor and the [[bathymetry]] in littoral zones (up to 20 m.). This technique is also call ...s over a wide wavelength range and to map the surface composition based on the spectral signatures observed.19 KB (2,865 words) - 13:10, 7 December 2023
- * [[Latitudinal biodiversity patterns of meiofauna from sandy littoral beaches]] * [[Meiofauna of Sandy Beaches]]1 KB (134 words) - 22:40, 8 December 2022
- ...h beaches <ref name ="Fuller 1988">Fuller, R. M. & Randall, R. E. (1988). The Orford Shingles, Suffolk, UK. Classic conflicts in coastline management. B ...f shingle beaches. HR Wallingford Report SR 323.</ref>. Two examples from the UK are those at Sidmouth, Devon and Elmer, West Sussex.40 KB (6,109 words) - 17:19, 24 February 2023
- ...and coastal engineering (articles in blue). This content was initiated by the ENCORA themes 5 and 8. The article also indicates missing topics (articles in red).20 KB (2,422 words) - 12:26, 20 February 2024
- ...Elfrink, B. and T. Baldock (2002). Hydrodynamics and sediment transport in the swash zone: a review and perspectives. Coastal Engineering 45: 149-167</ref ...he exchange of sediment between the land and ocean, which ultimately forms the coastline.32 KB (4,942 words) - 12:58, 5 April 2021
- ...Different kind of observation techniques can be used to sense the earth or the atmosphere from a distance. ...n be useful to construct [[model]]s, and information systems to complement the observations.15 KB (2,177 words) - 13:39, 7 December 2023