...
首页> 外文期刊>Journal of Advances in Modeling Earth Systems >Modeling the moist?¢????convective atmosphere with a Quasi?¢????3?¢????D Multiscale Modeling Framework (Q3D MMF)
【24h】

Modeling the moist?¢????convective atmosphere with a Quasi?¢????3?¢????D Multiscale Modeling Framework (Q3D MMF)

机译:使用Quasi?3?D Multiscale Modeling Framework(Q3D MMF)建模潮湿的对流气氛

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The Q3D MMF (Quasi?¢????Three?¢????Dimensional Multiscale Modeling Framework) is a new generation of MMF that replaces the conventional subgrid?¢????scale parameterizations in general circulation models (GCMs) with explicit simulations of cloud and associated processes by cloud?¢????resolving models (CRMs). In the Q3D MMF, 3?¢????D CRMs are applied to the channel domains that extend over GCM grid cells. To avoid ?¢????double counting?¢???? of the large?¢????scale effects, only the eddy effects simulated by the CRMs are implemented into the GCM as far as the transports are concerned, while the total effects are implemented for diabatic processes. The CRMs recognize the large?¢????scale horizontal inhomogeneity through the lateral boundary conditions obtained from the GCM through interpolation. To maintain compatibility between the GCM and CRMs, the averages of CRM variables over the GCM grid spacing are relaxed to the corresponding GCM variables with the advective time scale. To evaluate the Q3D MMF, a transition from a wave to strong vortices is simulated in an idealized horizontal domain. Comparison with a fully 3?¢????D benchmark simulation shows that the Q3D MMF successfully predicts the evolution of the vortices. It also captures important statistics such as the domain?¢????averaged surface precipitation rate, turbulent fluxes and subgrid?¢????scale (co)variances. From tests with 3?¢????D and 2?¢????D CRMs, respectively, it is concluded that the ability to recognize large?¢????scale inhomogeneities is primarily responsible for the successful performance of the Q3D MMF. It is also demonstrated that the use of two perpendicular sets of CRMs has positive impacts on the simulation.
机译:Q3D MMF(准多维三尺度多维建模框架)是新一代的MMF,它取代了通用循环模型(GCM)中的常规子网格尺度参数化,通过云解析模型(CRM)对云及其相关过程进行显式仿真。在Q3D MMF中,将3D D CRM应用到在GCM网格单元上扩展的通道域。为了避免重复计算?在大尺度效应中,就运输而言,只有CRM所模拟的涡流效应才被应用到GCM中,而总效应则被用于非绝热过程。 CRM通过插值从GCM获得的横向边界条件识别出大尺度的水平不均匀性。为了保持GCM和CRM之间的兼容性,在对流时间尺度上,将GCM网格间距上CRM变量的平均值放宽为相应的GCM变量。为了评估Q3D MMF,在理想水平域中模拟了从波浪到强涡的过渡。与完全3?D?基准测试的比较表明,Q3D MMF成功地预测了涡的演变。它还捕获了重要的统计数据,例如平均表面降水率,湍流和子网格的尺度(协)方差。从分别使用3个D CRM和2个D CRM进行的测试中,可以得出结论,识别大范围的不均匀性的能力是成功完成CRM的主要原因。 Q3D MMF。还证明了使用两组垂直的CRM会对模拟产生积极影响。

著录项

相似文献

  • 外文文献
  • 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