Article detail · 2009
Modeling and Forecasting of Snowmelt Runoff Process using the HBV model in the Eastern part of Turkey
- Year
- 2009
- DOI
- 10.1002/hyp.7204
- Type
- article
Data source split
- YÖKSİS YÖKSİS article record
- YÖKSİS venue HYDROLOGICAL PROCESSES
- Catalog match (ISSN) Hydrological Processes
- OpenAlex OpenAlex enrichment (abstract, citations, topics)
Abstract
OpenAlex · English
Abstract Snowmelt runoff in the mountainous eastern part of Turkey is of great importance as it constitutes 60–70% in volume of the total yearly runoff during spring and early summer months. Therefore, determining the amount and timing of snowmelt runoff especially in the Euphrates basin, where large dams are located, is an important task in order to use the water resources of the country in an optimal manner. The HBV model, being one of the well‐known conceptual hydrological models used more than 45 countries over the world, is applied for the first time in Turkey to a small basin of 242 km2 on the headwaters of Euphrates river for 2002–2004 water years. The input data are provided from the automatic snow‐meteorological stations installed at various locations and altitudes in upper Euphrates basin operating in real‐time. Since ground‐based observations can only represent a small part of the region of interest, spatially and temporally distributed snow cover data are acquired through the use of Moderate Resolution Imaging Spectroradiometer (MODIS) optical satellite. In the first part of the study, an automatic model parameter estimation method, Shuffled Complex Evolution, University of Arizona (SCE‐UA), is utilized to calibrate the HBV model parameters with a multi‐variable criteria using runoff as well as snow‐covered area (SCA) to ensure the internal validity of the model. Results show that calibrations against SCA in addition to discharge simulate discharge nearly as well as calibrations against discharge only, but further suggest that longer time periods and more study catchments should be included to achieve more comprehensible conclusions. In the second part of the study, the calibrated HBV model is applied to forecast runoff with a 1‐day lead time using gridded input data from Mesoscale Model 5 (MM5) for the 2004 snowmelt period. Promising results indicate the possible operational use of runoff forecasting driven by numerical weather prediction data for flood mitigation, reservoir operation and dam safety. Copyright © 2009 John Wiley & Sons, Ltd.
Topics
Citations
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88 citations
OpenAlex cited_by_count (cache / database)
41 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- Review of Snow Data Assimilation Methods for Hydrological, Land Surface, Meteorological and Climate Models: Results from a COST HarmoSnow Survey 2018
- Improving daily streamflow forecasts in mountainous Upper Euphrates basin by multi layer perceptron model with satellite snow products 2016
- Improving daily streamflow forecasts in mountainous Upper Euphrates basin by multi layer perceptron model with satellite snow products 2016
- Improving daily streamflow forecasts in mountainous Upper Euphrates basin by multi layer perceptron model with satellite snow products 2016
- The Value of Snow Depletion Forecasting Methods Towards Operational Snowmelt Runoff Estimation Using MODIS and Numerical Weather Prediction Data 2012
- The Value of Snow Depletion Forecasting Methods Towards Operational Snowmelt Runoff Estimation Using MODIS and Numerical Weather Prediction Data 2012
- Impacts of climate change on the seasonality of low flows in 134 catchments in the River Rhine basin using an ensemble of bias corrected regional climate simulations 2013
- Application of SWAT Using Snow Data and Detecting Climate Change Impacts in the Mountainous Eastern Regions of Turkey 2021
- Predicting Snowmelt Runoff at the Source of the Mountainous Euphrates River Basin in Turkey for Water Supply and Flood Control Issues Using HEC-HMS Modeling 2022
- Probabilistic Snow Cover and Ensemble Streamflow Estimations in the Upper Euphrates Basin 2019