...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Polar stratospheric clouds in the 1998–2003 Antarctic vortex: Microphysical modeling and Polar Ozone and Aerosol Measurement (POAM) III observations
【24h】

Polar stratospheric clouds in the 1998–2003 Antarctic vortex: Microphysical modeling and Polar Ozone and Aerosol Measurement (POAM) III observations

机译:极地平流层云在1998 - 2003年南极漩涡:微观物理学的建模和极地臭氧和气溶胶测量(POAM) III观察

获取原文
获取原文并翻译 | 示例
           

摘要

The Integrated Microphysics and Aerosol Chemistry on Trajectories (IMPACT) model is used to study polar stratospheric cloud (PSC) formation and evolution in the Antarctic vortex. The model is applied to individual air parcel trajectories driven by UK Met Office (UKMO) wind and temperature fields. The IMPACT model calculates the parcel microphysics, including the formation and sedimentation of ice, nitric acid trihydrate (NAT), sulfuric acid tetrahydrate (SAT), and supercooled ternary solution (STS) aerosols. Model results are validated by comparison with data obtained by the Polar Ozone and Aerosol Measurement (POAM) III solar occultation instrument and are examined for 6 years of POAM data (1998–2003). Comparisons of POAM water vapor and aerosol extinction measurements to the model results help to constrain three microphysical parameters influencing the formation and growth of both type I and type II PSCs. Principally, measurements of aerosol extinction prove to be valuable in differentiating model runs; the relationship of aerosol extinction to temperature is determined by the various particle types as they form and grow. Comparison of IMPACT calculations of this relationship to POAM measurements suggests that the initial fraction of nuclei available for heterogeneous NAT freezing is approximately 0.02% of all aerosols. Constraints are also placed on the accommodation coefficient of ice and the NAT-ice lattice compatibility. However, these two parameters have similar effects on the extinction-temperature relationship, and thus a range of values are permissible for each.
机译:集成的气溶胶粒子物理学和化学在轨迹(影响)模型用于研究极地平流层云(PSC)的形成进化在南极漩涡。应用于个人空运轨迹由英国气象局(UKMO)风和温度场。包裹粒子物理学,包括形成和沉积的冰,三水合硝酸(NAT),四水硫酸(坐),和过冷三元溶液(STS)气溶胶。模型验证结果相比数据通过极地臭氧和气溶胶测量(POAM)第三太阳能掩星POAM仪器,检查了6年数据(1998 - 2003)。和气溶胶消光测量模型结果有助于限制三个微观物理学的参数影响的形成和增长I型和II型已经被。测量气溶胶消光的证明有价值的差异化模型运行;气溶胶消光对温度的关系是由各种粒子类型它们形成和成长。计算POAM的这种关系测量结果表明,初始分数可用的核异构NAT冻结大约是0.02%的气溶胶。约束也放在住宿冰和系数NAT-ice晶格兼容性。类似对熄火温度的影响关系,因此一系列值允许的。

著录项

相似文献

  • 外文文献
  • 中文文献
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