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Feasibility and sizing of unlined on-farm pond for partial rice substitution in rainfed uplands of eastern India

机译:印度东部雨养高地上无衬砌农场池塘替代部分水稻的可行性和规模

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摘要

Rice (Oryza sativa L.)-dominated rainfed uplands of eastern India are facing two major problems such as lack of irrigation water sources and low productivity. In fact, unlined on-farm pond (OFP) technology in this terrain could prove to be an effective agricultural drought mitigation measure for monsoon crops but failed to ensure supplemental irrigation (SI) to the next winter crops. Consequently, the OFP technology could not pick up in the region. In order to overcome the shortcomings in the technology, the location of the OFP has been changed and a new concept of partial rice substitution (PRS) has been introduced in the present study to provide SI for the second crop in winter. Maize (Zea mays L.) and rice crops at upper and lower compartments of the field, respectively, were tried at various crop substitution ratios (CSR) of 70:30, 60:40, 50:50, 40:60, and 30:70 during monsoon season. Rainfall excess from both the compartments was harvested in an unlined OFP located in between the compartments and used for providing SI. In winter, black gram (Vigna mungo L.) and mustard (Brassica campestris) were taken in the upper and lower compartments, respectively, based on availability of water in the OFP. Water balance models were used to simulate the soil moisture in crop root zone as well as storage of water in the OFP. The optimal size of such unlined OFP for average land holdings (1200 m(2)) in rainfed uplands and under 60:40 CSR was found to be occupying 6 % area of the crop field.
机译:印度东部以稻米(Oryza sativa L.)为主的雨养高地面临着两个主要问题,例如缺乏灌溉水源和生产力低下。实际上,在该地形上使用无衬砌的农田池塘(OFP)技术可能被证明是缓解季风作物的有效农业干旱措施,但无法确保对下一个冬季作物进行补充灌溉(SI)。因此,OFP技术在该地区无法普及。为了克服该技术的缺点,本研究改变了OFP的位置,并引入了部分水稻替代(PRS)的新概念,为冬季第二季作物提供SI。分别以70:30、60:40、50:50、40:60和30的各种作物替代比(CSR)分别尝试了田间上下两部分的玉米(Zea mays L.)和水稻作物季风季节:70。来自两个隔室的过量雨水收集在位于两个隔室之间的无衬里的OFP中,用于提供SI。在冬季,根据OFP中的可用水量,分别在上部和下部隔室取了黑克(Vigna mungo L.)和芥末(芥菜)。水平衡模型被用来模拟作物根部区域的土壤水分以及OFP中的水分存储。发现在雨养高地和60:40 CSR以下的平均土地拥有量(1200 m(2))的此类无衬里的OFP的最佳尺寸占耕地面积的6%。

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