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A mathematical model for calculating river hydrographs using high resolution digital elevation models

Voldsund, Anders Opskar
Master thesis
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16674_FULLTEXT.pdf (25.90Mb)
16674_COVER.pdf (1.727Mb)
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http://hdl.handle.net/11250/2456612
Utgivelsesdato
2017
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  • Institutt for matematiske fag [1769]
Sammendrag
Prediction of floods is important to prevent damage to human lives, build-

ings or infrastructure, and we have developed a simulation model to address

this. The model is a so-called distributed rainfall-runoff model, which accounts

for spatial variations within the watershed; it is based on a distributed version

of the time-area method (Clark, 1945). Travel times are calculated by assuming

that the flow can be modelled as creeping flow, and the resulting velocity field is

used to solve the so-called time-of-flight/Eikonal equation. Both topographical

and heterogeneous properties can be accounted for by the model, which ideally

can be used for both gauged and ungauged watersheds after calibration. An

automatic watershed delineation algorithm has been implemented to delineate

the river s watershed using the D8 Algorithm (O Callaghan and Mark, 1984).

To test our model, we create artificial rainfalls, and calculate the hydrograph re-

sponse at the watershed outlet. The model works well given the simplifications,

and is a framework which can be expanded upon and made more complex.
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