首页> 外文会议>International offshore and polar engineering conference >Effects of plant growth and development on interannaul variability in mesoscale atmospheric simulations
【24h】

Effects of plant growth and development on interannaul variability in mesoscale atmospheric simulations

机译:植物生长发育对Messcle大气模拟中的间隙变异性的影响

获取原文
获取外文期刊封面目录资料

摘要

We introduced daily crop development and growth functions into the Biosphere-Atmosphere Transfer Scheme (BATS) coupled to the National Center for Atmospheric Research Regional Climate Model (NCAR RegCM2). Coupled RegCM/BATS simulations were performed over the conterminous United States for a dry (1988) and a favorably moist (1991) growing seasons at a spatial resolution of 90×90 km. We found that differences in air and ground temperature, mixing ratio, and precipitation between these two seasons were significantly larger in the interactive cases compared to the control ones. The differences in interannual variability were due to the fact that the interactive version of the model was able to capture extensive plant wilt that resulted from drought conditions of summer 1988, the control version was not. Inhibited plant growth resulted in significant decreases in the surface moisture flux to the atmosphere, therefore Increasing the sensible heat flux. This acted as a positive feedback to the climate model's suggested dry conditions of 1988. The interactive version of RegCM/BATS that we developed agreed better with observations for the maximum daily air temperature over the central Great Plains for each of the two years in question compared to the control version. Interannual variability ranges simulated with the Interactive version of the model also agreed better with observations compared to control ones.
机译:我们将日常作物发展和增长功能引入了生物圈 - 大气转移计划(蝙蝠),耦合到国家大气研究区域气候模型(NCAR REGCM2)。耦合REGCM / BATS模拟在孔雀石美国进行干燥(1988年),并获得有利的潮湿(1991)生长季节,其空间分辨率为90×90公里。与对照组相比,我们发现空气和地温,混合比,混合比率和这两个季节之间的沉淀显着较大。年际变异性的差异是由于该模型的互动版本能够捕捉到1988年夏季夏季干旱条件的广泛植物枯萎病,控制版本不是。抑制植物生长导致表面水分通量对大气的显着降低,因此增加了可显热通量。这是气候模型建议的1988年干旱条件的积极反馈。我们开发的互动版本,我们在与中央大平原上的最大日常空气温度上进行了更好的观察结果,相比之下到控制版本。与控制器相比,使用该模型的交互式版本模拟的际变量范围也与观察结果更好。

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