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Published in: Water Resources Management 1/2019

25-10-2018

Irrigation Scheduling Optimization for Cotton Based on the AquaCrop Model

Authors: Fawen Li, Dong Yu, Yong Zhao

Published in: Water Resources Management | Issue 1/2019

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Abstract

To improve irrigation efficiency, it is important to optimize agriculture irrigation scheduling. The objectives of this study were to evaluate the AquaCrop model for its ability to simulate cotton in the North China Plain and optimize irrigation strategies. The AquaCrop model was calibrated using 2002–2009 data and validated using 2010–2014 data. Root mean square error (RMSE), mean absolute error (MAE) and residual coefficient method (CRM) were used to test the model performance. The model calibrated for simulating cotton yield had a prediction error statistic RMSE of 0.152 t hm−2, MAE of 0.123 t hm−2 and CRM of 0.120. On validation, the RMSE was 0.147 t hm−2, MAE was 0.094 t hm−2 and CRM was 0.092. The goodness-of-fit values for the calibration and validation data sets indicated that the model could be used to simulate cotton yield. The analysis of irrigation scenarios indicated that the highest irrigation water productivity could be obtained by applying one irrigation at the seedling stage in a wet year, two irrigations, at the seedling and squaring stages, in a normal year and three irrigations, at the seedling, squaring and flowering stages, in a dry year. These results could be useful to the government in determining reasonable, well-timed irrigation for agricultural regions.

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Literature
go back to reference Ali MH, Talukder MSU (2008) Increasing water productivity in crop production--a synthesis. Agric Water Manag 95(11):1201–1213CrossRef Ali MH, Talukder MSU (2008) Increasing water productivity in crop production--a synthesis. Agric Water Manag 95(11):1201–1213CrossRef
go back to reference Abedinpour M, Sarangi A, Rajput TBS, Singh M, Pathak H, Ahmad T (2012) Performance evaluation of AquaCrop model for maize crop in a semi-arid environment. Agric Water Manag 110(3):55–66CrossRef Abedinpour M, Sarangi A, Rajput TBS, Singh M, Pathak H, Ahmad T (2012) Performance evaluation of AquaCrop model for maize crop in a semi-arid environment. Agric Water Manag 110(3):55–66CrossRef
go back to reference Akhtar F, Tischbein B, Awan UK (2013) Optimizing deficit irrigation scheduling under shallow groundwater conditions in lower reaches of Amu Darya River basin. Water Resour Manag 27:3165–3178CrossRef Akhtar F, Tischbein B, Awan UK (2013) Optimizing deficit irrigation scheduling under shallow groundwater conditions in lower reaches of Amu Darya River basin. Water Resour Manag 27:3165–3178CrossRef
go back to reference Ahmadi SH, Mosallaeepour E, Kamgar-Haghighi AA, Sepaskhah AR (2015) Modeling maize yield and soil water content with aquacrop under full and deficit irrigation managements. Water Resour Manag 29(8):1–17CrossRef Ahmadi SH, Mosallaeepour E, Kamgar-Haghighi AA, Sepaskhah AR (2015) Modeling maize yield and soil water content with aquacrop under full and deficit irrigation managements. Water Resour Manag 29(8):1–17CrossRef
go back to reference Bird DN, Benabdallah S, Gouda N, Hummel F, Koeberl J, Jeunesse IL, Meyer S, Prettenthaler F, Soddu A, Susanne WG (2016) Modelling climate change impacts on and adaptation strategies for agriculture in Sardinia and Tunisia using AquaCrop and value-at-risk. Sci Total Environ 543:1019–1027CrossRef Bird DN, Benabdallah S, Gouda N, Hummel F, Koeberl J, Jeunesse IL, Meyer S, Prettenthaler F, Soddu A, Susanne WG (2016) Modelling climate change impacts on and adaptation strategies for agriculture in Sardinia and Tunisia using AquaCrop and value-at-risk. Sci Total Environ 543:1019–1027CrossRef
go back to reference Chen YM, Guo GS (1995) Main crop water demand and irrigation in China. China Water & Power Press, Beijing Chen YM, Guo GS (1995) Main crop water demand and irrigation in China. China Water & Power Press, Beijing
go back to reference Chen D, Ye G, Yang C, Chen Y, Wu Y (2012) The effect of high temperature on the insecticidal properties of Bt Cotton. Cotton Science 53(3):333–342 Chen D, Ye G, Yang C, Chen Y, Wu Y (2012) The effect of high temperature on the insecticidal properties of Bt Cotton. Cotton Science 53(3):333–342
go back to reference Diepen CV, Wolf J, Keulen HV, Rappoldt C (2007) WOFOST: a simulation model of crop production. Soil Use Manag 5(1):16–24CrossRef Diepen CV, Wolf J, Keulen HV, Rappoldt C (2007) WOFOST: a simulation model of crop production. Soil Use Manag 5(1):16–24CrossRef
go back to reference Farahani HJ, Izzi G, Oweis TY (2009) Parameterization and evaluation of the AquaCrop model for full and deficit irrigated cotton. Agron J 101(3):469–476CrossRef Farahani HJ, Izzi G, Oweis TY (2009) Parameterization and evaluation of the AquaCrop model for full and deficit irrigated cotton. Agron J 101(3):469–476CrossRef
go back to reference Geerts S, Raes D, Garcia M, Taboada C, Miranda R, Cusicanqui J (2009) Modeling the potential for closing quinoa yield gaps under varying water availability in the Bolivian Altiplano. Agric Water Manag 96(11):1652–1658CrossRef Geerts S, Raes D, Garcia M, Taboada C, Miranda R, Cusicanqui J (2009) Modeling the potential for closing quinoa yield gaps under varying water availability in the Bolivian Altiplano. Agric Water Manag 96(11):1652–1658CrossRef
go back to reference García-Vila M, Fereres E (2012) Combining the simulation crop model aquacrop with an economic model for the optimization of irrigation management at farm level. Eur J Agron 36(1):21–31CrossRef García-Vila M, Fereres E (2012) Combining the simulation crop model aquacrop with an economic model for the optimization of irrigation management at farm level. Eur J Agron 36(1):21–31CrossRef
go back to reference Hsiao TC, Heng L, Steduto R-LB, Raes D, Fereres E (2009) AquaCrop-the FAO crop model to simulate yield response to water: III. Parameterization and testing for maize. Agron J 101(3):448–459CrossRef Hsiao TC, Heng L, Steduto R-LB, Raes D, Fereres E (2009) AquaCrop-the FAO crop model to simulate yield response to water: III. Parameterization and testing for maize. Agron J 101(3):448–459CrossRef
go back to reference Jones JW, Hoogenboom G, Porter CH, Boote KJ, Batchelor WD, Hunt LA (2003) Dssat cropping system model. Eur J Agron 18(3):235–265CrossRef Jones JW, Hoogenboom G, Porter CH, Boote KJ, Batchelor WD, Hunt LA (2003) Dssat cropping system model. Eur J Agron 18(3):235–265CrossRef
go back to reference Kisekka I, Aguilar JP, Rogers DH, Holman J, Brien DM, Klocke N (2016) Assessing deficit irrigation strategies for corn using simulation. Transactions of the Asae American Society of Agricultural Engineers 59(1):303–317 Kisekka I, Aguilar JP, Rogers DH, Holman J, Brien DM, Klocke N (2016) Assessing deficit irrigation strategies for corn using simulation. Transactions of the Asae American Society of Agricultural Engineers 59(1):303–317
go back to reference Li BB, Lu JH, Wu JD (1995) A primary study on the effects of drought and waterlogging on cotton production in Jiangsu province I Effect of drought and watterlogging on cotton growing. Chin J Agrometeorol 16(3):23–26 Li BB, Lu JH, Wu JD (1995) A primary study on the effects of drought and waterlogging on cotton production in Jiangsu province I Effect of drought and watterlogging on cotton growing. Chin J Agrometeorol 16(3):23–26
go back to reference Liu J, Wiberg D, Zehnder AJB, Yang H (2007) Modeling the role of irrigation in winter wheat yield, crop water productivity, and production in China. Irrig Sci 26(1):21–33CrossRef Liu J, Wiberg D, Zehnder AJB, Yang H (2007) Modeling the role of irrigation in winter wheat yield, crop water productivity, and production in China. Irrig Sci 26(1):21–33CrossRef
go back to reference Li H, Liu Y, Cai JB, Mao XM (2011) The applicability and application of AquaCrop model. J Irrig Drain 30(3):28–32 Li H, Liu Y, Cai JB, Mao XM (2011) The applicability and application of AquaCrop model. J Irrig Drain 30(3):28–32
go back to reference Linker R, Sylaios G (2016) Efficient model-based sub-optimal irrigation scheduling using imperfect weather forecasts. Comput Electron Agric 130:118–127CrossRef Linker R, Sylaios G (2016) Efficient model-based sub-optimal irrigation scheduling using imperfect weather forecasts. Comput Electron Agric 130:118–127CrossRef
go back to reference Montoya F, Camargo D, Ortega JF, Córcoles JI, Domínguez A, Clothier BE (2016) Evaluation of Aquacrop model for a potato crop under different irrigation conditions. Agric Water Manag 164:267–280CrossRef Montoya F, Camargo D, Ortega JF, Córcoles JI, Domínguez A, Clothier BE (2016) Evaluation of Aquacrop model for a potato crop under different irrigation conditions. Agric Water Manag 164:267–280CrossRef
go back to reference Malik A, Shakir AS, Ajmal M, Khan MJ, Khan TA (2017) Assessment of AquaCrop Model in Simulating Sugar Beet Canopy Cover, Biomass and Root Yield under Different Irrigation and Field Management Practices in Semi-Arid Regions of Pakistan. Water Resour Manag 4:1–18 Malik A, Shakir AS, Ajmal M, Khan MJ, Khan TA (2017) Assessment of AquaCrop Model in Simulating Sugar Beet Canopy Cover, Biomass and Root Yield under Different Irrigation and Field Management Practices in Semi-Arid Regions of Pakistan. Water Resour Manag 4:1–18
go back to reference Prieto D, Angueira C, Kirda C, Moutonnet P, Hera C, Nielsen DR (1996). Water stress effect on different growing stages for cotton and its influence on yield reduction. Crop Yield Response to Deficit Irrigation Dordrecht, Kluwer Academic Publishers, The Netherlands Prieto D, Angueira C, Kirda C, Moutonnet P, Hera C, Nielsen DR (1996). Water stress effect on different growing stages for cotton and its influence on yield reduction. Crop Yield Response to Deficit Irrigation Dordrecht, Kluwer Academic Publishers, The Netherlands
go back to reference Raes D, Steduto P, Hsiao TC, Fereres E (2009) AquaCrop-The FAO crop model to simulate yield response to water II: Main algorithms and software description. Agron J 101(3):438–447CrossRef Raes D, Steduto P, Hsiao TC, Fereres E (2009) AquaCrop-The FAO crop model to simulate yield response to water II: Main algorithms and software description. Agron J 101(3):438–447CrossRef
go back to reference Raes D, Steduto P, Hsiao TC, Fereres E (2012) Crop Water Productivity. In: Calculation Procedures and Calibration Guidance. AquaCrop version 4.0. FAO, Land and Water Development Division, Rome Raes D, Steduto P, Hsiao TC, Fereres E (2012) Crop Water Productivity. In: Calculation Procedures and Calibration Guidance. AquaCrop version 4.0. FAO, Land and Water Development Division, Rome
go back to reference Stockle CO, Donatelli M, Nelson R (2003) CropSyst a cropping systems simulation model. Eur J Agron 18:289–307CrossRef Stockle CO, Donatelli M, Nelson R (2003) CropSyst a cropping systems simulation model. Eur J Agron 18:289–307CrossRef
go back to reference Steduto P, Hsiao TC, Raes D, Fereres E (2009) Aquacrop- the FAO crop model to simulate yield response to water I: concepts and underlying principles. Agron J 101(3):448–459CrossRef Steduto P, Hsiao TC, Raes D, Fereres E (2009) Aquacrop- the FAO crop model to simulate yield response to water I: concepts and underlying principles. Agron J 101(3):448–459CrossRef
go back to reference Salemi H, Soom MAM, Mousavi SF, Ganji A, Lee TS, Yusoff MK (2011) Irrigated silage maize yield and water productivity response to deficit irrigation in an arid region. Pol J Environ Stud 20(5):1295–1303 Salemi H, Soom MAM, Mousavi SF, Ganji A, Lee TS, Yusoff MK (2011) Irrigated silage maize yield and water productivity response to deficit irrigation in an arid region. Pol J Environ Stud 20(5):1295–1303
go back to reference Silvestro PC, Pignatti S, Yang H, Yang G, Pascucci S, Castaldi F (2017) Sensitivity analysis of the Aquacrop and SAFYE crop models for the assessment of water limited winter wheat yield in regional scale applications. PLoS One 12(11):e0187485CrossRef Silvestro PC, Pignatti S, Yang H, Yang G, Pascucci S, Castaldi F (2017) Sensitivity analysis of the Aquacrop and SAFYE crop models for the assessment of water limited winter wheat yield in regional scale applications. PLoS One 12(11):e0187485CrossRef
go back to reference Singh K, Gupta N, Dhingra M (2018) Effect of temperature regimes, seed priming and priming duration on germination and seedling growth on American cotton. J Environ Biol 39(1):83–91CrossRef Singh K, Gupta N, Dhingra M (2018) Effect of temperature regimes, seed priming and priming duration on germination and seedling growth on American cotton. J Environ Biol 39(1):83–91CrossRef
go back to reference Tsakmakis ID,Kokkos N, Pisinaras V, Papaevangelou V, Hatzigiannakis E, Arampatzis G, Gikas GD, Linker R, Zoras S, Evagelopoulos V, Tsihrintzis VA, Battilani A, Sylaios G (2016). Operational precise irrigation for cotton cultivation through the coupling of meteorological and crop growth models. Water Resources Management 31(1):1–18 Tsakmakis ID,Kokkos N, Pisinaras V, Papaevangelou V, Hatzigiannakis E, Arampatzis G, Gikas GD, Linker R, Zoras S, Evagelopoulos V, Tsihrintzis VA, Battilani A, Sylaios G (2016). Operational precise irrigation for cotton cultivation through the coupling of meteorological and crop growth models. Water Resources Management 31(1):1–18
go back to reference Tsakmakis ID, Zoidou M, Gikas GD, Sylaios GK (2018) Impact of Irrigation Technologies and Strategies on Cotton Water Footprint Using AquaCrop and CROPWAT Models. Environmental Processes 8:1–19 Tsakmakis ID, Zoidou M, Gikas GD, Sylaios GK (2018) Impact of Irrigation Technologies and Strategies on Cotton Water Footprint Using AquaCrop and CROPWAT Models. Environmental Processes 8:1–19
go back to reference Voloudakis D, Karamanos A, Economou G, Kalivas D, Vahamidis P, Kotoulas V, Kapsomenakis J, Zerefos C (2015) Prediction of climate change impacts on cotton yields in greece under eight climatic models using the aquacrop crop simulation model and discriminant function analysis. Agric Water Manag 147:116–128CrossRef Voloudakis D, Karamanos A, Economou G, Kalivas D, Vahamidis P, Kotoulas V, Kapsomenakis J, Zerefos C (2015) Prediction of climate change impacts on cotton yields in greece under eight climatic models using the aquacrop crop simulation model and discriminant function analysis. Agric Water Manag 147:116–128CrossRef
go back to reference Yang HS, Dobermann A, Lindquist JL, Walters DT, Arkebauer TJ, Cassman KG (2004) Hybrid-maize—a maize simulation model that combines two crop modeling approaches. Field Crop Res 87:131–154CrossRef Yang HS, Dobermann A, Lindquist JL, Walters DT, Arkebauer TJ, Cassman KG (2004) Hybrid-maize—a maize simulation model that combines two crop modeling approaches. Field Crop Res 87:131–154CrossRef
go back to reference Yue JJ, Sun JS, Xu JX, Deng F (2012) Effect of Water Deficit on the Growth and Water Production Benefit of Cotton in Planting Pattern of Cotton Intercropping with Melon. J Irrig Drain 31(5):35–39 Yue JJ, Sun JS, Xu JX, Deng F (2012) Effect of Water Deficit on the Growth and Water Production Benefit of Cotton in Planting Pattern of Cotton Intercropping with Melon. J Irrig Drain 31(5):35–39
Metadata
Title
Irrigation Scheduling Optimization for Cotton Based on the AquaCrop Model
Authors
Fawen Li
Dong Yu
Yong Zhao
Publication date
25-10-2018
Publisher
Springer Netherlands
Published in
Water Resources Management / Issue 1/2019
Print ISSN: 0920-4741
Electronic ISSN: 1573-1650
DOI
https://doi.org/10.1007/s11269-018-2087-1

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