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A numerical framework to advance agricultural water management under hydrological stress conditions in a data scarce environment

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  • Khadim, Fahad Khan
  • Dokou, Zoi
  • Bagtzoglou, Amvrossios C.
  • Yang, Meijian
  • Lijalem, Girmachew Addisu
  • Anagnostou, Emmanouil

Abstract

Agriculture in Ethiopia has a historical dependency on rainfed (wet season) and surface water-based (dry season) irrigation projects, the performances of which rely heavily on JJAS precipitation. This is more sensitive in the Upper Blue Nile (UBN) basin, where precipitation uncertainty and hydrological droughts often overshadow the effectiveness of these irrigation schemes, challenging the water-food security efforts in general. To explore this issue, we developed a numerical framework, based on a groundwater model using MODFLOW-NWT, coupled with the outputs of the crop model DSSAT. The framework was implemented in an irrigated site namely, the Koga irrigation scheme, located within in the UBN Basin, Ethiopia. The coupling of groundwater modelling with crop water modelling in data scarce environments is a key contribution of this work. The groundwater model was calibrated with in situ data collected via a Citizen Science Initiative (CSI) for hydraulic head (H) and soil moistureθ; and against a distributed hydrological model (CREST) simulated evapotranspiration (ET). Normalized root mean squared error (NRMSE) values of 0.047, 0.05, and 0.06 were obtained through calibration for H, θ, and ET, respectively. The model was specifically used to simulate the vadose zone water availability due to irrigation, and water-food security aspects associated with extremely dry years. We investigated the hydrologic effect of three irrigation scenarios (non-regulated: NREG, regulated: REG, and regulated with groundwater pumping: REG+GW) aimed at reducing crop water stress derived by one-way coupling of MODFLOW with the crop model Decision Support System for Agrotechnology Transfer (DSSAT).

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  • Khadim, Fahad Khan & Dokou, Zoi & Bagtzoglou, Amvrossios C. & Yang, Meijian & Lijalem, Girmachew Addisu & Anagnostou, Emmanouil, 2021. "A numerical framework to advance agricultural water management under hydrological stress conditions in a data scarce environment," Agricultural Water Management, Elsevier, vol. 254(C).
  • Handle: RePEc:eee:agiwat:v:254:y:2021:i:c:s0378377421002122
    DOI: 10.1016/j.agwat.2021.106947
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    1. Tesfaye, A. & Bogale, A. & Namara, Regassa E., 2008. "The impact of small scale irrigation on household food security: the case of Filtino and Godino Irrigation Schemes in Ada Liben District, East Shoa, Ethiopia," Conference Papers h044135, International Water Management Institute.
    2. Nikitas Mylopoulos & Y. Mylopoulos & D. Tolikas & N. Veranis, 2007. "Groundwater modeling and management in a complex lake-aquifer system," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 21(2), pages 469-494, February.
    3. Kassahun Birhanu & Tena Alamirew & Megersa Olumana Dinka & Semu Ayalew & Dagnachew Aklog, 2014. "Optimizing Reservoir Operation Policy Using Chance Constraint Nonlinear Programming for Koga Irrigation Dam, Ethiopia," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 28(14), pages 4957-4970, November.
    4. Tesfaye, A. & Bogale, A. & Namara, Regassa E., 2008. "The impact of small scale irrigation on household food security: the case of Filtino and Godino Irrigation Schemes in Ada Liben District, East Shoa, Ethiopia," IWMI Conference Proceedings 246410, International Water Management Institute.
    5. Xiang, Zaichen & Bailey, Ryan T. & Nozari, Soheil & Husain, Zainab & Kisekka, Isaya & Sharda, Vaishali & Gowda, Prasanna, 2020. "DSSAT-MODFLOW: A new modeling framework for exploring groundwater conservation strategies in irrigated areas," Agricultural Water Management, Elsevier, vol. 232(C).
    6. You, Liangzhi & Ringler, Claudia & Wood-Sichra, Ulrike & Robertson, Richard & Wood, Stanley & Zhu, Tingju & Nelson, Gerald & Guo, Zhe & Sun, Yan, 2011. "What is the irrigation potential for Africa? A combined biophysical and socioeconomic approach," Food Policy, Elsevier, vol. 36(6), pages 770-782.
    7. Wu, Yao & Liu, Tingxi & Paredes, Paula & Duan, Limin & Pereira, Luis S., 2015. "Water use by a groundwater dependent maize in a semi-arid region of Inner Mongolia: Evapotranspiration partitioning and capillary rise," Agricultural Water Management, Elsevier, vol. 152(C), pages 222-232.
    8. Stergios Emmanouil & Jason Philhower & Sophie Macdonald & Fahad Khan Khadim & Meijian Yang & Ezana Atsbeha & Himaja Nagireddy & Natalie Roach & Elizabeth Holzer & Emmanouil N. Anagnostou, 2021. "A Comprehensive Approach to the Design of a Renewable Energy Microgrid for Rural Ethiopia: The Technical and Social Perspectives," Sustainability, MDPI, vol. 13(7), pages 1-22, April.
    9. Araya, A. & Kisekka, Isaya & Gowda, Prasanna H. & Prasad, P.V. Vara, 2017. "Evaluation of water-limited cropping systems in a semi-arid climate using DSSAT-CSM," Agricultural Systems, Elsevier, vol. 150(C), pages 86-98.
    10. Mohamed Dawoud & Madiha Darwish & Mona El-Kady, 2005. "GIS-Based Groundwater Management Model for Western Nile Delta," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 19(5), pages 585-604, October.
    11. Yang, Yonghui & Watanabe, Masataka & Zhang, Xiying & Zhang, Jiqun & Wang, Qinxue & Hayashi, Seiji, 2006. "Optimizing irrigation management for wheat to reduce groundwater depletion in the piedmont region of the Taihang Mountains in the North China Plain," Agricultural Water Management, Elsevier, vol. 82(1-2), pages 25-44, April.
    12. Yang, Meijian & Wang, Guiling & Lazin, Rehenuma & Shen, Xinyi & Anagnostou, Emmanouil, 2021. "Impact of planting time soil moisture on cereal crop yield in the Upper Blue Nile Basin: A novel insight towards agricultural water management," Agricultural Water Management, Elsevier, vol. 243(C).
    13. Awulachew, Seleshi Bekele, 2008. "A review of hydrology, sediment and water resource use in the Blue Nile Basin," IWMI Working Papers H041833, International Water Management Institute.
    14. R. Hadded & I. Nouiri & O. Alshihabi & J. Maßmann & M. Huber & A. Laghouane & H. Yahiaoui & J. Tarhouni, 2013. "A Decision Support System to Manage the Groundwater of the Zeuss Koutine Aquifer Using the WEAP-MODFLOW Framework," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 27(7), pages 1981-2000, May.
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    Cited by:

    1. Fahad Khan Khadim & Zoi Dokou & Rehenuma Lazin & Amvrossios C. Bagtzoglou & Emmanouil Anagnostou, 2023. "Groundwater Modeling to Assess Climate Change Impacts and Sustainability in the Tana Basin, Upper Blue Nile, Ethiopia," Sustainability, MDPI, vol. 15(7), pages 1-23, April.
    2. Stergios Emmanouil & Jason Philhower & Sophie Macdonald & Fahad Khan Khadim & Meijian Yang & Ezana Atsbeha & Himaja Nagireddy & Natalie Roach & Elizabeth Holzer & Emmanouil N. Anagnostou, 2021. "A Comprehensive Approach to the Design of a Renewable Energy Microgrid for Rural Ethiopia: The Technical and Social Perspectives," Sustainability, MDPI, vol. 13(7), pages 1-22, April.

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