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Autor(en): Negreiros, Beatriz
Schwindt, Sebastian
Haun, Stefan
Wieprecht, Silke
Titel: Fuzzy map comparisons enable objective hydro‐morphodynamic model validation
Erscheinungsdatum: 2021
Dokumentart: Zeitschriftenartikel
Seiten: 793-806
Erschienen in: Earth surface processes and landforms 47 (2022), S. 793-806
URI: http://nbn-resolving.de/urn:nbn:de:bsz:93-opus-ds-141824
http://elib.uni-stuttgart.de/handle/11682/14182
http://dx.doi.org/10.18419/opus-14163
ISSN: 1096-9837
0197-9337
Zusammenfassung: Numerical modeling represents a state‐of‐the‐art technique to simulate hydro‐morphodynamic processes in river ecosystems. Numerical models are often validated based on observed topographic change in the form of pixel information on net erosion or deposition over a simulation period. When model validation is performed by a pixel‐by‐pixel comparison of exactly superimposed simulated and observed pixels, zero or negative correlation coefficients are often calculated, suggesting poor model performance. Thus, a pixel‐by‐pixel approach penalizes quantitative simulation errors, even if a model conceptually works well. To distinguish between reasonably well‐performing and non‐representative models, this study introduces and tests fuzzy map comparison methods. First, we use a fuzzy numerical map comparison to compensate for spatial offset errors in correlation analyses. Second, we add a level of fuzziness with a fuzzy kappa map comparison to additionally address quantitative inaccuracy in modeled topographic change by categorizing data. Sample datasets from a physical lab model and datasets from a 6.9 km long gravel-cobble bed river reach enable the verification of the relevance of fuzzy map comparison methods. The results indicate that a fuzzy numerical map comparison is a viable technique to compensate for model errors stemming from spatial offset. In addition, fuzzy kappa map comparisons are suitable for objectively expressing subjectively perceived correlation between two maps, provided that a small number of categories is used. The methods tested and the resulting spatially explicit comparison maps represent a significant opportunity to improve the evaluation and potential calibration of numerical models of river ecosystems in the future.
Enthalten in den Sammlungen:02 Fakultät Bau- und Umweltingenieurwissenschaften

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