Impacts of spectral nudging on the simulated surface air temperature in summer compared with the selection of shortwave radiation and land surface model physics parameterization in a high-resolution regional atmospheric model
首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Impacts of spectral nudging on the simulated surface air temperature in summer compared with the selection of shortwave radiation and land surface model physics parameterization in a high-resolution regional atmospheric model
【24h】

Impacts of spectral nudging on the simulated surface air temperature in summer compared with the selection of shortwave radiation and land surface model physics parameterization in a high-resolution regional atmospheric model

机译:夏季模拟表面空气温度的光谱对夏季模拟表面空气温度的影响与高分辨率区域大气模型中的短波辐射和地面模型物理参数化相比

获取原文
获取原文并翻译 | 示例
       

摘要

AbstractThe impact of a spectral nudging technique for the dynamical downscaling of the summer surface air temperature in a high-resolution regional atmospheric model is assessed. The performance of this technique is measured by comparing 16 analysis-driven simulation sets of physical parameterization combinations of two shortwave radiation and four land surface model schemes of the model, which are known to be crucial for the simulation of the surface air temperature. It is found that the application of spectral nudging to the outermost domain has a greater impact on the regional climate than any combination of shortwave radiation and land surface model physics schemes. The optimal choice of two model physics parameterizations is helpful for obtaining more realistic spatiotemporal distributions of land surface variables such as the surface air temperature, precipitation, and surface fluxes. However, employing spectral nudging adds more value to the results; the improvement is greater than using sophisticated shortwave radiation and land surface model physical parameterizations. This result indicates that spectral nudging applied to the outermost domain provides a more accurate lateral boundary condition to the innermost domain when forced by analysis data by securing the consistency with large-scale forcing over a regional domain. This consequently indirectly helps two physical parameterizations to produce small-scale features closer to the observed values, leading to a better representation of the surface air temperature in a high-resolution downscaled climate.展开▼
机译:<![CDATA [ 抽象 光谱亮度技术的影响在高分辨率区域中夏季表面空气温度的动态俯卧展评估大气模型。通过比较两个短波辐射的16个分析驱动的模拟组合和模型的四个陆地表面模型方案来测量该技术的性能,这已知是对表面空气温度的模拟至关重要。结果发现,光谱亮于最外层域对区域气候的影响比短波辐射和陆地面模型物理方案的任何组合都具有更大的影响。两种模型物理参数化的最佳选择有助于获得更现实的陆地变量分布,例如表面空气温度,沉淀和表面通量。但是,采用光谱亮度为结果增加了更多价值;改进大于使用复杂的短波辐射和陆表面模型物理参数化。该结果表明,当通过在区域域上的大规模强制上,通过通过分析数据强制通过分析数据来施加到最外层域的光谱亮度为最内域提供更准确的横向边界条件。因此,这是间接地帮助两种物理参数化,以产生更接近观察到的值的小规模特征,从而更好地表示表面空气温度在高分辨率较低的气候中。

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