Research Article
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GIS and Hydrological Model Based Hydropower Potential Assessments of Temcha Watershed

Year 2022, Volume: 9 Issue: 1, 97 - 101, 06.03.2022
https://doi.org/10.30897/ijegeo.783157

Abstract

Hydropower is one of the major and sustainable energy production centers across the world. Energy production has several challenges and uncertainty to alleviate poverty in our country. The main aim of this study was selecteding the hydropower potentials of Temcha watershed with integrated approaches of using GIS and hydrological models (SWAT). For the hydropower potential selection, it was used weather (metrological), hydrological and geospatial data. The result shows that a high discharge amount with a corresponding head has been identified in the upper course of the river and its associated values 300m3/year. In the middle course of the river, the power potential would be 126 MWmw/year. Generally, the overall hydropower potentials of Temcha watershed were 2500 MWmw/year.

References

  • Bartle, A. (2002). Hydropower potential and development activities. Energy policy, 30, 1231- 1239.
  • Corobov, R., Syrodoev, G., Trombitsky, LD., Galupa, D. Deudney, D. (2016). Rivers of Energy: The Hydropower Potential. Worldwatch Paper No. 44, ERIC. Anthropogenic factors as an element of uncertainty in hydrological modelling of water yield with SWAT, Journal of Engineerıng Science and Technology Revıew 9(2):138-145
  • Dilnesa, W. (2018). Assessing the Impacts of Land use/cover Change on the Hydrological Response of Temcha watershed, upper Blue Nile basin, Ethiopia, International Journal of Scientific Research in Civil Engineering, 2(5):10-19.
  • Essien, E.., Jesse, E., Igbokwe, J. (2019). Assessment of Water Level in Dadin Kowa Dam Reservoir in Gombe State Nigeria Using Geospatial Techniques, International Journal of Environment and Geoinformatics, 6(1), 115-130, doi. 10.30897/ijegeo.487885
  • Gazioğlu, C., Yücel, Z.Y., Doğan, E. (1998). Uydu Verileri İle İstanbul Boğazi ve Yakin Çevresindeki İçme Suyu Havzalarina Genel Bir Bakiş., Büyükşehirlerde atık su yönetimi ve deniz kirlenmesi kontrolu sempozyumu. 18-20 Kasım 1998,
  • Kusre, B., Baruah, D., Bordoloi, P., Patra, S. (2010). Assessment of hydropower potential using GIS and hydrological modeling technique in Kopili River basin in Assam (India). Applied Energy, 87, 298-309.
  • Mathi, R. S., Desmukh, T. (2016). Spatial Technology for Mapping Suitable Sites for Run-of-River Hydro Power Plants.
  • Pandey, A., Lalrempuia, D., Jain, S. K. (2015). Assessment of hydropower potential using spatial technology and SWAT modelling in the Mat River, southern Mizoram, India. Hydrological Sciences Journal, 60, 1651-1665.
  • Sisay, E., Halefom, A., Khare, D., Singh, L., Worku, T. (2017). Hydrological modelling of ungauged urban watershed using SWAT model. Modeling Earth Systems and Environment, 3, 693-702.
  • Strauch, M., Bernhofer, C., Koide, S., Volk, M., Lorz, C., Makeschin, F. (2012). Using precipitation data ensemble for uncertainty analysis in SWAT streamflow simulation. Journal of Hydrology, 414–415, 413–424.
  • Yücel, Z.Y. Gazioğlu, C., Doğan, E., Kaya, H. (2002). Uzaktan Algilama ve CBS/B ile Ömerli Baraji ve Yakin Çevresinin İzlenmesi, Türkiye'nin Kıyı ve Deniz Alanları IV Ulusal Konferansı Bildiriler Kitabı.
  • Zhou, F., Xu, Y., Chen, Y., Xu, C. Y., Gao, Y., Du, J. (2013). Hydrological response to urbanization at different spatio-temporal scales simulated by coupling of CLUE-S and the SWAT model in the Yangtze River Delta region. Journal of Hydrology, 485, 113–125.
Year 2022, Volume: 9 Issue: 1, 97 - 101, 06.03.2022
https://doi.org/10.30897/ijegeo.783157

Abstract

References

  • Bartle, A. (2002). Hydropower potential and development activities. Energy policy, 30, 1231- 1239.
  • Corobov, R., Syrodoev, G., Trombitsky, LD., Galupa, D. Deudney, D. (2016). Rivers of Energy: The Hydropower Potential. Worldwatch Paper No. 44, ERIC. Anthropogenic factors as an element of uncertainty in hydrological modelling of water yield with SWAT, Journal of Engineerıng Science and Technology Revıew 9(2):138-145
  • Dilnesa, W. (2018). Assessing the Impacts of Land use/cover Change on the Hydrological Response of Temcha watershed, upper Blue Nile basin, Ethiopia, International Journal of Scientific Research in Civil Engineering, 2(5):10-19.
  • Essien, E.., Jesse, E., Igbokwe, J. (2019). Assessment of Water Level in Dadin Kowa Dam Reservoir in Gombe State Nigeria Using Geospatial Techniques, International Journal of Environment and Geoinformatics, 6(1), 115-130, doi. 10.30897/ijegeo.487885
  • Gazioğlu, C., Yücel, Z.Y., Doğan, E. (1998). Uydu Verileri İle İstanbul Boğazi ve Yakin Çevresindeki İçme Suyu Havzalarina Genel Bir Bakiş., Büyükşehirlerde atık su yönetimi ve deniz kirlenmesi kontrolu sempozyumu. 18-20 Kasım 1998,
  • Kusre, B., Baruah, D., Bordoloi, P., Patra, S. (2010). Assessment of hydropower potential using GIS and hydrological modeling technique in Kopili River basin in Assam (India). Applied Energy, 87, 298-309.
  • Mathi, R. S., Desmukh, T. (2016). Spatial Technology for Mapping Suitable Sites for Run-of-River Hydro Power Plants.
  • Pandey, A., Lalrempuia, D., Jain, S. K. (2015). Assessment of hydropower potential using spatial technology and SWAT modelling in the Mat River, southern Mizoram, India. Hydrological Sciences Journal, 60, 1651-1665.
  • Sisay, E., Halefom, A., Khare, D., Singh, L., Worku, T. (2017). Hydrological modelling of ungauged urban watershed using SWAT model. Modeling Earth Systems and Environment, 3, 693-702.
  • Strauch, M., Bernhofer, C., Koide, S., Volk, M., Lorz, C., Makeschin, F. (2012). Using precipitation data ensemble for uncertainty analysis in SWAT streamflow simulation. Journal of Hydrology, 414–415, 413–424.
  • Yücel, Z.Y. Gazioğlu, C., Doğan, E., Kaya, H. (2002). Uzaktan Algilama ve CBS/B ile Ömerli Baraji ve Yakin Çevresinin İzlenmesi, Türkiye'nin Kıyı ve Deniz Alanları IV Ulusal Konferansı Bildiriler Kitabı.
  • Zhou, F., Xu, Y., Chen, Y., Xu, C. Y., Gao, Y., Du, J. (2013). Hydrological response to urbanization at different spatio-temporal scales simulated by coupling of CLUE-S and the SWAT model in the Yangtze River Delta region. Journal of Hydrology, 485, 113–125.
There are 12 citations in total.

Details

Primary Language English
Subjects Photogrammetry and Remote Sensing
Journal Section Research Articles
Authors

Walelgn Dilnesa

Publication Date March 6, 2022
Published in Issue Year 2022 Volume: 9 Issue: 1

Cite

APA Dilnesa, W. (2022). GIS and Hydrological Model Based Hydropower Potential Assessments of Temcha Watershed. International Journal of Environment and Geoinformatics, 9(1), 97-101. https://doi.org/10.30897/ijegeo.783157