首页> 外文期刊>Geoscientific Model Development Discussions >Evaluation of the sectional aerosol microphysics module SALSA implementation in ECHAM5-HAM aerosol-climate model
【24h】

Evaluation of the sectional aerosol microphysics module SALSA implementation in ECHAM5-HAM aerosol-climate model

机译:在ECHAM5-HAM气溶胶-气候模型中评估分段气溶胶微物理学模块SALSA的实现

获取原文
       

摘要

We present the implementation and evaluation of a sectional aerosol microphysics model SALSA within the aerosol-climate model ECHAM5-HAM. This aerosol microphysics module has been designed to be flexible and computationally efficient so that it can be implemented in regional or global scale models. The computational efficiency has been achieved by keeping the number of variables needed to describe the size and composition distribution to the minimum. The aerosol size distribution is described using 20 size sections with 10 size sections in size space which cover diameters ranging from 3 nm to 10 μm divided to three subranges each having distinct optimised process and compound selection. The ability of the module to describe the global aerosol properties was evaluated by comparison against (1) measured continental and marine size distributions, (2) observed variability of continental modal number concentrations, (3) measured sulphate, organic carbon, black carbon and sea salt mass concentrations, (4) observations of AOD and other aerosol optical properties from satellites and AERONET network, (5) global aerosol budgets and concentrations from previous model studies, and (6) model results using M7 which is the default aerosol microphysics module in ECHAM5-HAM. The evaluation shows that the global aerosol properties can be reproduced reasonably well using the coarse resolution of 10 size sections in size space. The simulated global aerosol budgets are within the range of previous studies. Surface concentrations of sea salt, sulphate and carbonaceous species have an annual mean within a factor of five of the observations, while the simulated sea salt concentrations reproduce the observations less accurately and show high variability. Regionally, AOD is in relatively good agreement with the observations (within a factor of two). At mid-latitudes the observed AOD is captured well, while at high-latitudes as well as in some polluted and dust regions the modeled AOD is significantly lower than the observed. Regarding the most investigated aerosol properties, the performances of SALSA and the modal aerosol module M7 against observations are comparable. However, SALSA reproduces the observed number concentrations and the size distributions of CCN sized particles much more accurately than M7, and is therefore a good choice for aerosol-cloud interaction studies in global models. Our study also shows that when including activation type nucleation process in the boundary layer, the modeled concentrations of particles under 50 nm in diameter are reproduced much better compared to when only binary nucleation is assumed.
机译:我们目前的气溶胶气候模型ECHAM5-HAM中的分段气溶胶微观物理模型SALSA的实现和评估。该气溶胶微物理学模块的设计具有灵活性和计算效率,因此可以在区域或全球规模的模型中实施。通过将描述大小和成分分布所需的变量数量保持为最小,可以实现计算效率。使用20个尺寸段和10个尺寸段在尺寸空间中描述气溶胶尺寸分布,这些尺寸段的直径范围从3 nm到10μm,分为三个子范围,每个子范围具有独特的优化工艺和化合物选择。通过与(1)测得的大陆和海洋尺寸分布,(2)测得的大陆模式数浓度的变化,(3)测得的硫酸盐,有机碳,黑碳和海洋进行比较,评估了模块描述全球气溶胶特性的能力。盐质量浓度,(4)来自卫星和AERONET网络的AOD和其他气溶胶光学特性的观测,(5)来自先前模型研究的全球气溶胶预算和浓度,以及(6)使用M7的模型结果,M7是该模型中的默认气溶胶微物理学模块ECHAM5-HAM。评估表明,使用尺寸空间中10个尺寸截面的粗分辨率,可以很好地再现全局气溶胶特性。模拟的全球气溶胶预算在以前的研究范围内。海盐,硫酸盐和碳质树种的表面浓度的年平均值在观测值的五分之一以内,而模拟的海盐浓度重现观测值的准确性较低,并显示出较高的变异性。在地区上,AOD与观测值相对较好(在两个因子之内)。在中纬度,观测到的AOD被很好地捕获,而在高纬度以及在一些污染和尘埃区,模拟的AOD明显低于观测到的。关于研究最多的气溶胶特性,SALSA和模态气溶胶模块M7的抗观测性能相当。但是,SALSA可以比M7更准确地重现观察到的CCN尺寸颗粒的浓度和尺寸分布,因此是在全局模型中进行气溶胶-云相互作用研究的不错选择。我们的研究还表明,当在边界层中包括活化型成核过程时,与仅假设二元成核相比,直径50 nm以下颗粒的模型浓度再现性要好得多。

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