首页> 外文期刊>Atmosphere >Effects of Aerosol on Cloud Liquid Water Path: Statistical Method a Potential Source for Divergence in Past Observation Based Correlative Studies
【24h】

Effects of Aerosol on Cloud Liquid Water Path: Statistical Method a Potential Source for Divergence in Past Observation Based Correlative Studies

机译:气溶胶对云水路径的影响:统计方法是过去基于观测的相关研究发散的潜在来源

获取原文
           

摘要

Studies show a divergence in correlation between aerosol and cloud proxies, which has been thought of in the past as the results of varying physical mechanisms. Though modeling studies have supported this idea, from an observational standpoint it is difficult to attribute with confidence the correlations to specific physical mechanisms. We explore a methodology to assess the correlation between cloud water path and aerosol optical depth using Moderate-resolution Imaging Spectroradiometer (MODIS) Aqua retrieved aerosol and cloud properties for absorbing and non-absorbing aerosol types over land and over the Atlantic Ocean for various meteorological conditions. The data covers a three-month period, June through August, during which different aerosol types are predominant in specific regions. Our approach eliminates outliers; sorts the data into aerosol bins; and the mean Aerosol Optical Depth (AOD) value for each bin and the corresponding mean Cloud Water Path (CWP) value are determined. The mean CWP is plotted against the mean AOD. The response curve for all aerosol types shows a peak CWP value corresponding to an aerosol loading value AODpeak. The peak is used to divide the total range of aerosol loading into two sub ranges. For AOD value below AODpeak, mean CWP and mean AOD are positively correlated. The correlation between mean CWP and mean AOD is negative for aerosol loading above AODpeak. Irrespective of aerosol type, atmospheric water vapor content and lower tropospheric static stability, the peak observed for each aerosol type seems to describe a universal feature that calls for further investigation. It has been observed for a variety of geographical locations and different seasons.
机译:研究表明,气溶胶和云代理之间的相关性存在差异,过去人们一直认为这是各种物理机制的结果。尽管建模研究已经支持了这种想法,但是从观察的角度来看,很难将相关性归因于特定的物理机制。我们探索使用中等分辨率成像光谱仪(MODIS)评估云水路径与气溶胶光学深度之间的相关性的方法学,利用Aqua检索到的气溶胶和云特性,以针对各种气象条件在陆地和整个大西洋上吸收和不吸收气溶胶类型。数据涵盖了从6月到8月的三个月,在此期间,特定区域内主要使用不同类型的气溶胶。我们的方法消除了异常值;将数据分类到气溶胶箱中;确定每个仓的平均气溶胶光学深度(AOD)值和相应的平均云水路径(CWP)值。将平均CWP相对于平均AOD作图。所有气溶胶类型的响应曲线都显示出一个峰值CWP值,对应于一个气溶胶负载值AOD peak 。峰值用于将气溶胶装载的总范围分为两个子范围。对于低于AOD peak 的AOD值,平均CWP和平均AOD呈正相关。对于高于AOD peak 的气溶胶负荷,平均CWP与平均AOD之间的相关为负。不论气溶胶类型,大气水汽含量和对流层静态稳定性较低,每种气溶胶类型的峰值似乎都具有普遍性,需要进一步研究。已经在各种地理位置和不同季节观察到了它。

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