首页> 外文会议>Eleventh International Dryland Development Conference: Global Climate Change and its Impact on Food amp; Energy Security in the Drylands >Development of management practices to address wheat vulnerability to climate change in North Delta
【24h】

Development of management practices to address wheat vulnerability to climate change in North Delta

机译:开发管理方法以解决北三角洲小麦对气候变化的脆弱性

获取原文
获取原文并翻译 | 示例

摘要

The effect of using improved agricultural management practices to reduce wheat yield losses under climate change was simulated using CropSyst simulation model.For this experiments were carried out on farmers' fields at El-Serw(Demiatte Governorate)in three growing seasons(2007/08,2008/09 and 2009/10).Three irrigation treatments were used,i.e.farmer irrigation practice(characterized by large applied irrigation amount),required irrigation amount and irrigation amount applied for raised bed cultivation.CropSyst model was calibrated using data of the 1st growing season then validated using the data of the next two growing seasons.Then,the model was used to simulate the vulnerability of wheat to climate change using two climate change scenarios(A2 and B2)developed by Hadley global climate change model.The results indicated that the highest wheat yield was produced under raised bed cultivation and the lowest under farmer irrigation practice.Furthermore,CropSyst model was able to predict wheat yield with high degree of accuracy for all treatments in both growing seasons.Farmer irrigation practice increased wheat vulnerability to climate change,where the average yield losses were 44-50%under A2 scenario and 41-46%under B2 scenario,averaged over the two seasons,with the lowest water productivity.Lower yield losses were obtained when wheat was irrigated with required amount of water.Raised bed irrigation resulted in even lower yield losses,with the highest water productivity,as a result of better growing environment for wheat plants.These results emphasis the importance of using improved agricultural management practices,which increased wheat yield under current climate condition and will be lowering yield losses under future climate change conditions.
机译:使用CropSyst模拟模型模拟了改进的农业管理措施对减少小麦产量损失的影响(使用CropSyst模拟模型)。为此,我们在三个生长季节(2007/08, 2008/09和2009/10)。采用三种灌溉处理方式,以高剂量灌溉为特征的宜人灌溉实践,所需的灌溉量和用于高架床栽培的灌溉量.CropSyst模型使用第一次生长的数据进行校准然后使用接下来的两个生长季节的数据验证该季节。然后,该模型被用于利用Hadley全球气候变化模型开发的两个气候变化情景(A2和B2)来模拟小麦对气候变化的脆弱性。结果表明:在高床栽培下,小麦产量最高,而在农民灌溉实践下,小麦产量最低。此外,CropSyst模型能够预测小麦的产量。在两个生长季节中,所有处理的产量都很高。农民灌溉实践使小麦更容易受到气候变化的影响,在A2情景下,平均产量损失为44-50%,在B2情景下,平均产量损失为41-46%。两个季节,水的生产率最低。用所需量的水灌溉小麦时,单产下降幅度较小。高架床灌溉导致更低的产量损失,水的生产率最高,这是由于小麦植物生长环境更好的结果。这些结果强调了采用改进的农业管理方法的重要性,该方法可以提高当前气候条件下的小麦单产,并降低未来气候变化条件下的单产损失。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号