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Calibration Validation and Evaluation of CERES Maize Model under Temperate Conditions of Kashmir, Using DSSAT 4.7

机译:用DSSAT 4.7使用DSSAT 4.7克什米尔温带条件下CERES玉米模型的校准验证与评价

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Field experiments were conducted at Shalimar Campus of Sher-e-Kashmir University of Agricultural Sciences and Technology of Kashmir during 2015 and 2016 to study the growth and yield of maize at different planting dates and Nitrogen levels with further simulating Maize growth and yield at different agro-ecological zones (altitudes) of Kashmir valley at fixed dates with varied nitrogen levels and at fixed nitrogen level with varied dates of sowing. Experiment was laid in split plot design with three dates of sowing i.e. 22~(nd) May, 30~(th) May and 8~(th) June assigned to main plot and four levels of nitrogen i.e. 80 kg N ha~(-1 )(N_(1)), 120 kg N ha~(-1)(N_(2)), 160 kg N ha~(-1 )(N_(3)) and 200 kg N ha~(-1 )assigned to sub plot. Genetic coefficients of maize crop variety (Shalimar Maize composite-4) were generated for calibrated and validation of CERES Maize model using DSSAT 4.5. Simulation was carried out for different dates of sowing viz, 1~(st) May, 10~(th) May, 22~(nd) May, 30~(th) May, 8~(th) June, 20~(th) June and 30~(th) June at same fertility levels of 160 kg N ha~(-1), 60 kg P_(2)O_(5 )ha~(-1 )and 30 kg K_(2)O ha~(-1) for all the locations. Simulated studies carried at different locations indicated that sowing of Maize on 30~(th) May (D_(2)) with 200 kg N ha~(-1 )(N_(4)) predicted highest grain yield in location Kokernag which was followed by location Srinagar on same date 30~(th) May (D_(2)) with 160 kg N ha~(-1)(N_(3)) and lowest yield was recorded in district Kupwara. Maximum Biological yield was also recorded at 30~(th) May with 160 kg N ha~(-1 )(N_(3)). Among the district Kokernag recorded maximum biological yield with delayed maturity (160 days) simulation studies were carried out with 7 dates of sowing at fixed level of Nitrogen in all the districts. Simulated studies of maize showed that sowing on 30~(th) May with 160 kg N ha~(-1 )(N_(3)) recorded maximum LAI, Biological yield and grain yield. However, highest grain yield was recorded with location Kokernag and lowest was recorded with location Kupwara.
机译:在2015年和2016年克什米尔农业科学和克什米尔技术大学的Shalimar校区进行了现场实验,研究了不同种植日和氮水平的玉米的生长和产量,进一步模拟了不同农业的玉米生长和产量固定日期的克什米尔谷的生态区(海拔),具有各种氮水平和固定的氮水平,随着播种的不同日期。实验奠定了分裂绘图设计,三个播种,即22〜(nd)可以,30〜(th)可以和8〜(th)六月分配给主图和四个水平的氮,即80kg n ha〜( - 1)(n_(1)),120kg n ha〜(-1)(n_(2)),160kg n ha〜(-1)(n_(3))和200kg n ha〜(-1)分配给子图。使用DSSAT 4.5生成玉米作物品种(Shalimar玉米复合材料-4)的致校长和验证Ceres玉米模型的遗传系数。模拟是针对播种的不同日期进行,1〜(st)可以,10〜(th)可以,22〜(nd)可以,30〜(th)5月,8〜(th)6月,20〜(th )6月和30〜(Th)6月在相同的生育率水平160 kg n ha〜(-1),60 kg p_(2)o_(5)ha〜(-1)和30 kg k_(2)o ha〜 (-1)所有地点。在不同位置携带的模拟研究表明,玉米播种于30〜(th)可以(d_(2)),其中200kg n ha〜(-1)(n_(4))预测了所遵循的位置Kokernag的最高谷物产量通过位置Srinagar在同一日期30〜(th)可以(D_(2)),具有160 kg n〜(-1)(n_(3)),在Kupwara区记录了最低产量。在30〜(th)中还记录最大生物产率,含量为160kg n h ha〜(-1)(n_(3))。在科克纳克区间记录了延迟成熟(160天)的最大生物产量(160天)进行仿真研究,其中7个日期在所有地区的固定氮水平播种。玉米的模拟研究表明,播种30〜(Th)可以用160kg N ha〜(-1)(n_(3))记录最大Lai,生物产量和籽粒产率。然而,最高的谷物产量被Kokernag记录,最低记录在kupwara的位置记录。

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