Gettelman A, Morrison H, Thayer-Calder K, Zarzycki C M
National Center for Atmospheric Research Boulder CO USA.
J Adv Model Earth Syst. 2019 Jun;11(6):1543-1562. doi: 10.1029/2018MS001488. Epub 2019 Jun 6.
Rimed hydrometeors (graupel or hail) are added to a stratiform cloud scheme for global models and tested in a variety of configurations. Off-line tests compare well to other cloud microphysics schemes with rimed ice used in mesoscale models. Tests in single column and climate mode show expected production of small amounts of rimed ice in the middle troposphere and at high latitudes. The overall climate impacts of rimed ice (hail or graupel) at 100-km horizontal grid spacing are small. There are some changes to partitioning between cloud ice and snow that affect upper troposphere water budgets and clouds. High-resolution simulations are conducted with a global but regionally refined grid at 14 km over the Contiguous United States. High-resolution simulations show local production of graupel with realistic size and number concentrations. The maximum graupel frequency at high resolution is over Western U.S. mountain ranges. Differences in total precipitation with the addition of rimed ice in 8-year simulations are statistically significant only for orographic precipitation over the Cascade and Rocky mountains, reducing model biases when rimed ice is included. Rimed ice slightly improves summer precipitation intensity relative to observations. Thus, while the global climate impact of rimed ice in stratiform clouds may be negligible, there are potentially important and systematic regional effects, particularly for orographic precipitation. Rimed ice in cumulus clouds is not yet treated but is an important next step.
在全球模式的层状云方案中加入了霰(软雹或冰雹)水凝物,并在各种配置下进行了测试。离线测试与中尺度模式中使用霰冰的其他云微物理方案相比效果良好。单柱和气候模式下的测试表明,在对流层中部和高纬度地区会产生少量的霰冰。水平网格间距为100公里时,霰冰(冰雹或软雹)对整体气候的影响较小。云冰和雪的分配发生了一些变化,影响了对流层上层的水分收支和云。在美国本土进行了高分辨率模拟,采用了全球但区域精细化的14公里网格。高分辨率模拟显示出了具有实际大小和数量浓度的软雹的局地生成。高分辨率下软雹的最大频率出现在美国西部山脉。在8年的模拟中,加入霰冰后总降水量的差异仅在喀斯喀特山脉和落基山脉的地形降水方面具有统计学意义,加入霰冰后减少了模型偏差。相对于观测值,霰冰略微提高了夏季降水强度。因此,虽然层状云中霰冰对全球气候的影响可能微不足道,但存在潜在的重要且系统性的区域效应,特别是对地形降水而言。积云中的霰冰尚未得到处理,但这是重要的下一步工作。