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Analysing Dry-Seeded Rice Responses to Planting Time and Irrigation Regimes in a Subtropical Environment Using ORYZA2000 Model

机译:使用Oryza2000模型分析亚热带环境中种植时间和灌溉制度的干式稻米响应

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摘要

Irrigated rice is a luxurious consumer of water. Dry-seeded rice culture is an option that saves water, but may entail loss in crop yield implying a trade-off of productivity and water conservation. This study evaluates the water balance and productivity response of dry-seeded rice to management interventions using ORYZA2000 model. The database was generated from field studies involving combinations of planting dates and irrigation regimes. The performance of the model in simulating phenology, biomass, water use and yield was reasonable within the experimental conditions. The normalized root mean square of deviation (RMSD~(n)) for simulated and measured harvest-time biomass and grain yield was 12 and 16%, while RMSD~(n)for progressive soil water content and water use was less than 10%. Scenario analysis using historical weather data showed that rice planted on June 16 had minimum variance in potential yield (5.4%) compared to earlier (June 1) or later (July 1) planting. The evapotranspiration (ET)-based water productivity (WP~(ET)) was greater for June 16 and July 1 than June 1 planting. Loss of yield and WP~(ET)with reduction in irrigation frequency were least on June 16 rice implying this as optimal planting time of rice in the study region.
机译:灌溉水稻是一种奢华的水。干燥的水稻培养物是一种拯救水的选择,但可能需要作物产量损失,这意味着生产力和水资源的权衡。本研究评估了使用ORYZA2000模型对干草水稻的水平衡和生产率响应进行管理干预。数据库是从涉及种植日期和灌溉制度的组合的现场研究生成的。模型在模拟候选,生物质,用水量和产率中的性能在实验条件下是合理的。模拟和测量的收缩时间生物质和籽粒产率的偏移(RMSD〜(N))的归一化均方根平方为12〜16%,而RMSD〜(n)用于渐进式土壤含水量和用水量小于10% 。使用历史天气数据的情景分析显示,与早些时候(6月1日)或以后(7月1日)种植相比,6月16日种植的大米在潜在的收益率(5.4%)的最小差异。基于6月16日和7月1日的蒸散蒸腾(ET)的水生产率(WP〜(et))比6月1日植入更大。产量和WP〜(ET)的丧失减少灌溉频率最少于6月16日米,这是研究区中米饭的最佳种植时间。

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