...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Noncoincident validation of Aura MLS observations using the Langley Research Center Lagrangian chemistry and transport model
【24h】

Noncoincident validation of Aura MLS observations using the Langley Research Center Lagrangian chemistry and transport model

机译:使用Langley研究中心拉格朗日化学和运输模型对Aura MLS观测值进行非一致性验证

获取原文
获取原文并翻译 | 示例

摘要

We evaluate Aura Microwave Limb Sounder version 2.2 measurements of O3, HCl, and H2O with version 19 HALOE observations using a model-assisted, noncoincident intercomparison technique. Air parcels in the Langley Research Center Lagrangian chemistry and transport model (LCTM) are initialized from HALOE observations made during three different 3-week periods in 2004 and early 2005. The LCTM tracks the dynamical and photochemical evolution of the ensemble of air parcels following initialization. We show that the LCTM predictions agree closely with subsequent HALOE measurements not used to initialize the model, demonstrating the model's capability to accurately propagate information from the HALOE observations. HALOE-initialized LCTM O3 predictions agree very well in the stratosphere with MLS measurements, with coincident zonal mean differences generally less than 10%. We find low biases in HCl of 10–30% relative to the MLS observations. We also find low biases with respect to MLS H2O of up to 15% in the upper and middle stratosphere and ~30% low biases in the lower stratosphere/upper troposphere midlatitudes. We note some nonphysical vertical oscillations of MLS H2O in the tropical and midlatitude lower stratosphere that are not present in the HALOE-initialized LCTM output. The oscillations are smaller in version 2.2 than in previous versions. These results are generally consistent with published HALOE/MLS intercomparisons of these species using a traditional coincident validation technique. This consistency suggests that the traditional coincident validation results are applicable on daily temporal and zonal spatial scales.
机译:我们使用模型辅助,非巧合的比对技术,通过版本19 HALOE观察评估O3,HCl和H2O的Aura Microwave Limb Sounder 2.2版测量结果。兰利研究中心拉格朗日化学和运输模型(LCTM)中的空气包裹是根据2004年和2005年初三个不同的三周期间进行的HALOE观测值初始化的。LCTM跟踪初始化后空气包裹集合的动态和光化学演化。我们表明,LCTM预测与不用于初始化模型的后续HALOE测量值非常吻合,表明该模型具有从HALOE观测值准确传播信息的能力。 HALOE初始化的LCTM O3预测在平流层与MLS测量值非常吻合,重合的纬向均值差异通常小于10%。我们发现,相对于MLS观察,HCl的偏差低10%至30%。我们还发现,平流层中上层相对于MLS H2O的低偏差高达15%,平流层下层/对流层中纬度的低偏差约为-30%。我们注意到在HALOE初始化的LCTM输出中不存在的热带和中纬度低平流层中MLS H2O的一些非物理垂直振荡。 2.2版中的振荡比以前的版本小。这些结果通常与使用传统的同步验证技术对这些物种的已发表的HALOE / MLS比较进行比较是一致的。这种一致性表明,传统的同时验证结果可应用于日常时空和纬向空间尺度。

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