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Estimating Rice Yield under Changing Weather Conditions in Kenya Using CERES Rice Model

机译:使用CERES水稻模型估算肯尼亚多变天气条件下的水稻单产

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Effects of change in weather conditions on the yields of Basmati 370 and IR 2793-80-1 cultivated under System of Rice Intensification (SRI) in Mwea and Western Kenya irrigation schemes were assessed through sensitivity analysis using the Ceres rice model v 4.5 of the DSSAT modeling system. Genetic coefficients were determined using 2010 experimental data. The model was validated using rice growth and development data during the 2011 cropping season. Two SRI farmers were selected randomly from each irrigation scheme and their farms were used as research fields. Daily maximum and minimum temperatures and precipitation were collected from the weather station in each of the irrigation schemes while daily solar radiation was generated using weatherman inthe DSSAT shell. The study revealed that increase in both maximum and minimum temperatures affects Basmati 370 and IR 2793-80-1 grain yield under SRI. Increase in atmospheric C02 concentration led to an increase in grain yield for both Basmati and IR 2793-80-1 under SRI and increase in solar radiation also had an increasing impact on both Basmati 370 and IR 2793-80-1 grain yield. The results of the study therefore show that weather conditions in Kenya affect rice yield under SRI and should be taken into consideration to improve food security.
机译:通过使用CeSAT水稻模型v.4.5的DSSAT敏感性分析,评估了天气条件变化对在Mwea和西部肯尼亚灌溉计划下的水稻强化系统(SRI)下种植的Basmati 370和IR 2793-80-1产量的影响建模系统。遗传系数是根据2010年的实验数据确定的。该模型已使用2011年种植季节的水稻生长和发育数据进行了验证。从每个灌溉方案中随机选择两名SRI农民,并将其农场用作研究领域。在每种灌溉方案中,每天从气象站收集的最高和最低温度和降水量,而每天的太阳辐射是使用气象卫星在DSSAT外壳中产生的。研究表明,最高温度和最低温度的升高都会影响SRI条件下的Basmati 370和IR 2793-80-1谷物的产量。在SRI下,大气CO2浓度的增加导致Basmati和IR 2793-80-1的谷物产量均增加,并且太阳辐射的增加也对Basmati 370和IR 2793-80-1的谷物产量均产生了越来越大的影响。因此,研究结果表明,肯尼亚的天气状况影响了SRI下的水稻产量,应考虑将其纳入考虑以改善粮食安全。

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