Arid
DOI10.3390/w10121803
Potential of Deficit and Supplemental Irrigation under Climate Variability in Northern Togo, West Africa
Gadedjisso-Tossou, Agossou1,2; Avellan, Tamara1; Schuetze, Niels2
通讯作者Gadedjisso-Tossou, Agossou
来源期刊WATER
ISSN2073-4441
出版年2018
卷号10期号:12
英文摘要

In the context of a growing population in West Africa and frequent yield losses due to erratic rainfall, it is necessary to improve stability and productivity of agricultural production systems, e.g., by introducing and assessing the potential of alternative irrigation strategies which may be applicable in this region. For this purpose, five irrigation management strategies, ranging from no irrigation (NI) to controlled deficit irrigation (CDI) and full irrigation (FI), were evaluated concerning their impact on the inter-seasonal variability of the expected yields and improvements of the yield potential. The study was conducted on a maize crop (Zea mays L.) at a representative site in northern Togo with a hot semi-arid climate and pronounced dry and wet rainfall seasons. The OCCASION (Optimal Climate Change Adaption Strategies in Irrigation) framework was adapted and applied. It consists of: (i) a weather generator for simulating long climate time series; (ii) the AquaCrop model, which was used to simulate the irrigation system during the growing season and the yield response of maize to the considered irrigation management strategies; and (iii) a problem-specific algorithm for optimal irrigation scheduling with limited water supply. We found high variability in rainfall during the wet season which leads to considerable variability in the expected yield for rainfed conditions (NI). This variability was significantly reduced when supplemental irrigation management strategies (CDI or FI) requiring a reasonably low water demand of about 150 mm were introduced. For the dry season, it was shown that both irrigation management strategies (CDI and FI) would increase yield potential for the local variety TZEE-W up to 4.84 Mg/ha and decrease the variability of the expected yield at the same time. However, even with CDI management, more than 400 mm of water is required if irrigation would be introduced during the dry season in northern Togo. Substantial rainwater harvesting and irrigation infrastructures would be needed to achieve that.


英文关键词AquaCrop model maize deficit irrigation crop-water production function West Africa
类型Article
语种英语
国家Germany
收录类别SCI-E
WOS记录号WOS:000455314300098
WOS关键词SIMULATE YIELD RESPONSE ; FAO AQUACROP MODEL ; CROP MODEL ; WATER PRODUCTIVITY ; SEMIARID REGION ; WINTER-WHEAT ; WEATHER DATA ; MAIZE ; EVAPOTRANSPIRATION ; AVAILABILITY
WOS类目Water Resources
WOS研究方向Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/213658
作者单位1.United Nations Univ, Inst Integrated Management Mat Fluxes & Resources, Ammonstr 74, D-01067 Dresden, Germany;
2.Tech Univ Dresden, Inst Hydrol & Meteorol, D-01069 Dresden, Germany
推荐引用方式
GB/T 7714
Gadedjisso-Tossou, Agossou,Avellan, Tamara,Schuetze, Niels. Potential of Deficit and Supplemental Irrigation under Climate Variability in Northern Togo, West Africa[J],2018,10(12).
APA Gadedjisso-Tossou, Agossou,Avellan, Tamara,&Schuetze, Niels.(2018).Potential of Deficit and Supplemental Irrigation under Climate Variability in Northern Togo, West Africa.WATER,10(12).
MLA Gadedjisso-Tossou, Agossou,et al."Potential of Deficit and Supplemental Irrigation under Climate Variability in Northern Togo, West Africa".WATER 10.12(2018).
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