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  • 1
    Online Resource
    Online Resource
    MDPI AG ; 2020
    In:  Water Vol. 12, No. 5 ( 2020-04-30), p. 1274-
    In: Water, MDPI AG, Vol. 12, No. 5 ( 2020-04-30), p. 1274-
    Abstract: Age can be evaluated at any time and position to understand transport processes taking place in the aquatic environment, including for reactive tracers. In the framework of the Constituent-oriented Age and Residence time Theory (CART), the age of a constituent or an aggregate of constituents, including the water itself, is usually defined as the time elapsed since leaving the boundary where the age is set or reset to zero. The age is evaluated as the ratio of the age concentration to the concentration, which are the solution of partial differential equations. The boundary conditions for the concentration and age concentration cannot be prescribed independently of each other. Instead, they must be derived from boundary conditions designed beforehand for the age distribution function (the histogram of the ages, the age theory core variable), even when this variable is not calculated explicitly. Consistent boundary conditions are established for insulating, departure and arrival boundaries. Gas exchanges through the water–air interface are also considered. Age fields ensuing from consistent boundary conditions and, occasionally, non-consistent ones are discussed, suggesting that the methodology advocated herein can be utilized by most age calculations, be they used for diagnosing the results of idealised models or realistic ones.
    Type of Medium: Online Resource
    ISSN: 2073-4441
    Language: English
    Publisher: MDPI AG
    Publication Date: 2020
    detail.hit.zdb_id: 2521238-2
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  • 2
    Online Resource
    Online Resource
    TU Delft OPEN Publishing ; 2024
    In:  CoastLab 2024: Physical Modelling in Coastal Engineering and Science ( 2024-04-26)
    In: CoastLab 2024: Physical Modelling in Coastal Engineering and Science, TU Delft OPEN Publishing, ( 2024-04-26)
    Abstract: This study presents a model for simulating the interaction of river influxes with tidal propagation in region of varying complexity for the Scheldt basin (river, tributaries and estuary) and the European continental shelf. While the domain for inland rivers is one-dimensional and extends until the limit of tidal influence, the estuary and shelf region are dealt by means of two-dimensional equations. Within this region, there exists a hydraulic structure in one of the Scheldt tributaries (Dyle River), that is implemented to simulate the bidirectional flow of the tide. In this model a tidal forcing at the shelf break, metrological forcing at the free water surface and hourly discharges for the rivers and tributaries at the upstream boundaries are applied. Using this, the coupled model was firstly calibrated for the Manning coefficient for a relatively quiet period. Then it is extensively validated using available measurements for simulations in the month of January (2021), which is generally marked by strong tides. Moreover, the shelf region of the model was evaluated with the existing literature for the harmonic analysis of the dominant M2 tide. The simulated results show good agreement with a RMSE under 0.3 meters for the measured water levels.
    Type of Medium: Online Resource
    ISSN: 2710-1509
    Language: Unknown
    Publisher: TU Delft OPEN Publishing
    Publication Date: 2024
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