Skip to content. | Skip to navigation

Personal tools

You are here: Home
2181 items matching your search terms.
Filter the results.
Item type



































New items since



Sort by relevance · date (newest first) · alphabetically
Inproceedings Reference A model of diffuse attenuation of downwelling irradiance for ecosystem models
Estimation of the underwater attenuation of light is important to ecosystem modellers, who require information on Photosynthetically Available Radiation (PAR), and on the euphotic depth for calculation of primary production. Characterisation of these processes can be achieved by determining the diffuse attenuation coefficient of PAR, KPAR. A review of bio-optical models of the spectral diffuse attenuation coefficient for downwelling irradiance, K-d, is presented and stresses the necessity for a better knowledge and parameterization of these coefficients. In the second part of this work, radiative transfer simulations were carried out to model K-dZ1\% the spectral diffuse attenuation of downwelling irradiance averaged over the euphotic depth Z(1\%) (depth where the downwelling irradiance is 1\% of its surface value). This model takes into account the effects of varying sun zenith angle and cloud cover and needs absorption and backscattering coefficients (the inherent optical properties, IOPs) as input. It provides average and maximum relative errors of 1\% and 5\% respectively, for sun zenith angles [0 degrees-50 degrees] and of 1.7\% and 12\% respectively at higher sun zenith angles. A relationship was established between K-dZ1\% at a single wavelength (590nm) and KPAR at Z(PAR1\%) (where PAR is 1\% of its value at the surface) which allows for a direct expression of KPAR(ZPAR1\%) in terms of inherent optical properties, sun angle and cloudiness. This model provides estimates of KPAR within 25\% (respectively 40\%) relative errors respectively with a mean relative error less than 7\% (respectively 9\%) for sun zenith angles ranging from 0 degrees to 50 degrees (respectively higher than 50 degrees). A similar method is applied to derive a model for the diffuse attenuation of photosynthetically usable radiation, KPURZPUR1\%, with similar performance.
Located in Library / RBINS Staff Publications
Inproceedings Reference The Coastcolour project regional algorithm round robin exercise
The MERIS instrument delivers a unique dataset of ocean colour measurements of the coastal zone, at 300m resolution and with a unique spectral band set. The motivation for the Coastcolour project is to fully exploit the potential of the MERIS instrument for remote sensing of the coastal zone. The general objective of the project is to develop, demonstrate, validate and intercompare different processing algorithms for MERIS over a global range of coastal water types in order to identify best practices. In this paper the Coastcolour project is presented in general and the Regional Algorithm Round Robin (RARR) exercise is described in detail. The RARR has the objective of determining the best approach to retrieval of chlorophyll a and other marine products (e. g. Inherent Optical Properties) for each of the Coastcolour coastal water test sites. Benchmark datasets of reflectances at MERIS bands will be distributed to algorithm provider participants for testing of both global (Coastcolour and other) algorithms and site-specific local algorithms. Results from all algorithms will be analysed and compared according to a uniform methodology. Participation of algorithm providers from outside the Coastcolour consortium is encouraged.
Located in Library / RBINS Staff Publications
Inproceedings Reference Estimating PCO2 from remote sensing in the Belgian Coastal Zone.
Located in Library / RBINS Staff Publications
Inproceedings Reference Improving water reflectance retrieval from MODIS imagery in the highly turbid waters of La Plata River
Located in Library / RBINS Staff Publications
Inproceedings Reference Visible and near infrared spectral variations of light backscattering by hydrosols
Located in Library / RBINS Staff Publications
Inproceedings Reference SIMEC, an environmental correction for MERIS based on the NIR similarity spectrum
Located in Library / RBINS Staff Publications
Inproceedings Reference ECMAScript program Modelling the relative impact of the rivers Scheldt, Rhine, Meuse and Seine on the availability of nutrients in Belgian waters (Southern North Sea) using the 3D coupled physical-biological model MIRO&CO-3D.
Located in Library / RBINS Staff Publications
Inproceedings Reference Troff document Spatial and interannual variability of the spring phytoplankton bloom in the North Sea investigated by modelling and remote sensing
Located in Library / RBINS Staff Publications
Inproceedings Reference Suspended Particulate Matter (SPM) mapping from MERIS imagery. Calibration of a regional algorithm for the Belgian coastal waters
Located in Library / RBINS Staff Publications
Inproceedings Reference Remote sensing of the diffuse attenuation coefficient and related parameters in turbid waters: state of the art and future perspectives
Located in Library / RBINS Staff Publications