首页> 外文期刊>Geoscientific Model Development Discussions >Description of the resolution hierarchy of the global coupled HadGEM3-GC3.1 model as used in CMIP6 HighResMIP experiments
【24h】

Description of the resolution hierarchy of the global coupled HadGEM3-GC3.1 model as used in CMIP6 HighResMIP experiments

机译:CMIP6 HighResmip实验中使用的全局耦合HADGEM3-GC3.1模型的分辨率层次描述

获取原文
           

摘要

The Coupled Model Intercomparison Project phase 6 (CMIP6) HighResMIP is a new experimental design for global climate model simulations that aims to assess the impact of model horizontal resolution on climate simulation fidelity. We describe a hierarchy of global coupled model resolutions based on the Hadley Centre Global Environment Model 3 – Global Coupled vn 3.1 (HadGEM3-GC3.1) model that ranges from an atmosphere–ocean resolution of 130km–1° to 25km–1∕12°, all using the same forcings and initial conditions. In order to make such high-resolution simulations possible, the experiments have a short 30-year spinup, followed by at least century-long simulations with constant forcing to assess drift. We assess the change in model biases as a function of both atmosphere and ocean resolution, together with the effectiveness and robustness of this new experimental design. We find reductions in the biases in top-of-atmosphere radiation components and cloud forcing. There are significant reductions in some common surface climate model biases as resolution is increased, particularly in the Atlantic for sea surface temperature and precipitation, primarily driven by increased ocean resolution. There is also a reduction in drift from the initial conditions both at the surface and in the deeper ocean at higher resolution. Using an eddy-present and eddy-rich ocean resolution enhances the strength of the North Atlantic ocean circulation (boundary currents, overturning circulation and heat transport), while an eddy-present ocean resolution has a considerably reduced Antarctic Circumpolar Current strength. All models have a reasonable representation of El Ni?o–Southern Oscillation. In general, the biases present after 30?years of simulations do not change character markedly over longer timescales, justifying the experimental design.
机译:耦合模式比较计划阶段6(CMIP6)HighResMIP是全球气候模式模拟,目的是评估模型的水平分辨率的气候模拟逼真度的影响,一个新的实验设计。我们描述了基于Hadley中心全球环境模型3的全球耦合模型分辨率的层级 - 全球耦合VN 3.1(HadGEM3-GC3.1)模型,该模型从130公里-1°至25公里-1/12的大气海洋的分辨范围度,全部采用相同的强迫和初始条件。为了使这种高分辨率的模拟可能的,实验有一个短暂的30年起转,后面至少有不断迫使评估漂移世纪之久的模拟。我们评估既大气和海洋分辨率的函数模型偏差的变化,这个新的实验设计的有效性和鲁棒在一起。我们发现在顶级的大气辐射分量在减少偏见和云强迫。有作为分辨率提高,特别是在大西洋的海面温度和降水,主要是通过提高海洋分辨率带动一些常见的地面气候模式偏差显著减少。还存在漂移的降低从两个表面处并且在较高分辨率的更深海洋的初始条件。使用涡存在的和涡丰富的海洋分辨率提高了北大西洋海洋环流的强度(边界流,向翻转环流和热量传输),而涡目前海洋分辨率有着显着降低南极绕极流强度。所有型号都厄尔尼诺 - 南方涛动的合理表现。一般来说,偏差30后存在?多年的模拟不改变性格明显超过更长的时间尺度,证明了实验设计。
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