Applying hydrological modeling to unravel the effects of land use change on the runoff of a paramo ecosystem

To gather insight into the impact of afforestation on the hydrology of a mountain river basin a comparative study was conducted with the objective to derive answers to the following questions: 1) How to calibrate the parameters of hydrological models subject to land use change? 2) What is the impact...

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Published inDyna (Medellín, Colombia) Vol. 89; no. 221; pp. 68 - 77
Main Authors Cabrera Balarezo, Juan José, Crespo Sánchez, Patricio Javier, Timbe Castro, Luis, Sucozhañay Calle, Adrián Esteban
Format Journal Article
LanguageEnglish
Published Bogota Universidad Nacional de Colombia 01.01.2022
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ISSN0012-7353
2346-2183
2346-2183
DOI10.15446/dyna.v89n221.98132

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Abstract To gather insight into the impact of afforestation on the hydrology of a mountain river basin a comparative study was conducted with the objective to derive answers to the following questions: 1) How to calibrate the parameters of hydrological models subject to land use change? 2) What is the impact on peaks, total flow, and baseflow when land use gradually changes from tussock-grass to pine plantation? and 3) Is the impact different when land use changes gradually from upstream to downstream (U-D) or from downstream to upstream (D-U)? The results show that total flow, baseflow and peaks are respectively reduced by 21%, 66% and 21%. This study presents a calibration approach to quantify the effects of land use change before it is done.  
AbstractList To gather insight into the impact of afforestation on the hydrology of a mountain river basin a comparative study was conducted with the objective to derive answers to the following questions: 1) How to calibrate the parameters of hydrological models subject to land use change? 2) What is the impact on peaks, total flow, and baseflow when land use gradually changes from tussock-grass to pine plantation? and 3) Is the impact different when land use changes gradually from upstream to downstream (U-D) or from downstream to upstream (D-U)? The results show that total flow, baseflow and peaks are respectively reduced by 21%, 66% and 21%. This study presents a calibration approach to quantify the effects of land use change before it is done.
To gather insight into the impact of afforestation on the hydrology of a mountain river basin a comparative study was conducted with the objective to derive answers to the following questions: 1) How to calibrate the parameters of hydrological models subject to land use change? 2) What is the impact on peaks, total flow, and baseflow when land use gradually changes from tussock-grass to pine plantation? and 3) Is the impact different when land use changes gradually from upstream to downstream (U-D) or from downstream to upstream (D-U)? The results show that total flow, baseflow and peaks are respectively reduced by 21%, 66% and 21%. This study presents a calibration approach to quantify the effects of land use change before it is done.  
To gather insight into the impact of afforestation on the hydrology of a mountain river basin a comparative study was conducted with the objective to derive answers to the following questions: 1) How to calibrate the parameters of hydrological models subject to land use change? 2) What is the impact on peaks, total flow, and baseflow when land use gradually changes from tussock-grass to pine plantation? and 3) Is the impact different when land use changes gradually from upstream to downstream (U-D) or from downstream to upstream (D-U)? The results show that total flow, baseflow and peaks are respectively reduced by 21%, 66% and 21%. This study presents a calibration approach to quantify the effects of land use change before it is done.  
To gain insights into the impact of afforestation on the hydrology of a mountain river basin, the Mpinos catchment was modeled to obtain parameters that represent pine land use. Thereafter, the parameters were applied in the Zhurucay catchment to answers the following questions: 1) How can the parameters of hydrological models subject to land use change be calibrated? 2) What is the impact on peaks, total flow, and baseflow when land use gradually changes from tussock grass to pine plantations? 3) Is the impact different when land use changes gradually from upstream to downstream (U-D) or downstream to upstream (D-U)? Based on our results, the total flow, baseflow, and peaks were reduced by 21%, 66%, and 21%, respectively. Overall, this study presents a calibration approach to predict the effects of land-use change prior to its occurrence. Para obtener información sobre el impacto de la forestación en la hidrología de una cuenca de un río de montaña, se modeló la cuenca de Mpinos para obtener parámetros que representen el uso de la tierra de los pinos. Posteriormente, los parámetros se aplicaron en la cuenca de Zhurucay para dar respuesta a las siguientes preguntas: 1) ¿Cómo se pueden calibrar los parámetros de los modelos hidrológicos sujetos a cambio de uso de suelo? 2) ¿Cuál es el impacto en los picos, el caudal total y el caudal base cuando el uso de la tierra cambia gradualmente de pastizales a plantaciones de pino? 3) ¿Es diferente el impacto cuando el uso de la tierra cambia gradualmente de río arriba a río abajo (U-D) o de río abajo a río arriba (D-U)? Según nuestros resultados, el flujo total, el flujo base y los picos se redujeron en un 21 %, 66 % y 21 %, respectivamente. En general, este estudio presenta un enfoque de calibración para predecir los efectos del cambio de uso del suelo antes de que ocurra.
Author Timbe-Castro, Luis Manuel
Crespo-Sánchez, Patricio Javier
Sucozhañay-Calle, Adrián Esteban
Cabrera-Balarezo, Juan José
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Snippet To gather insight into the impact of afforestation on the hydrology of a mountain river basin a comparative study was conducted with the objective to derive...
To gain insights into the impact of afforestation on the hydrology of a mountain river basin, the Mpinos catchment was modeled to obtain parameters that...
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StartPage 68
SubjectTerms Alpine environments
Base flow
calibración
calibration
cambio de uso de la tierra
Comparative studies
Downstream
ecosistema de páramo
HBV
Hydrologic models
Hydrology
Land use
land use change
land use change; calibration; modeling; HBV-light; paramo ecosystem
light
modeling
modelos
Mountains
paramo ecosystem
River basins
Upstream
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Title Applying hydrological modeling to unravel the effects of land use change on the runoff of a paramo ecosystem
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