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首页> 外文期刊>Journal of the Atmospheric Sciences >Remote sensing of atmospheric aerosols and trace gases by means of multifilter rotating shadowband radiometer. Part II: Climatological applications
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Remote sensing of atmospheric aerosols and trace gases by means of multifilter rotating shadowband radiometer. Part II: Climatological applications

机译:利用多滤光片旋转阴影带辐射计对大气中的气溶胶和痕量气体进行遥感。第二部分:气候学应用

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Measurements from ground-based sun photometer networks can be used both to provide ground-truth validation of satellite aerosol retrievals and to produce a land-based aerosol climatology that is complementary to satellite retrievals that are currently performed mostly over ocean. The multifilter rotating shadowband radiometer (MFRSR) has become a popular network instrument in recent years. Several networks operate about a hundred instruments providing good geographical coverage of the United States. In addition, international use of the MFRSR has continued to increase, allowing MFRSR measurements to significantly contribute to aerosol climatologies. This study investigates the feasibility of creating a ground-based aerosol climatology using MFRSR measurements. Additionally, this analysis allows for testing of the performance of the retrieval algorithm under a variety of conditions. The retrieval algorithm is used for processing MFRSR data from clear and partially cloudy days to simultaneously retrieve daily time series of column mean aerosol particle size, aerosol optical depth, NO2, and ozone column amounts together with the instrument's calibration constants directly from the MFRSR measurements for a variety of sites covering a range of atmospheric and surface conditions. This analysis provides a description of seasonal changes in aerosol parameters and in column amounts of ozone and NO2 as a function of geographical location. In addition, the relationship between NO2 column amount and aerosol optical depth as a potential indicator of tropospheric pollution is investigated. Application of this analysis method to the measurements from growing numbers of MFRSRs will allow for expansion on this developing climatology. [References: 34]
机译:来自地面太阳光度计网络的测量结果既可用于提供卫星气溶胶回收的地面真伪验证,又可用于产生陆基气溶胶气候学,该气象学是目前大多数在海洋上进行的卫星检索的补充。近年来,多滤镜旋转阴影带辐射计(MFRSR)已成为流行的网络仪器。几个网络运行着约一百种仪器,可以很好地覆盖美国。此外,国际对MFRSR的使用不断增加,这使得MFRSR测量对气溶胶气候具有显着贡献。这项研究调查了使用MFRSR测量结果建立地面气溶胶气候学的可行性。另外,此分析允许在各种条件下测试检索算法的性能。该检索算法用于处理晴天和部分阴天的MFRSR数据,以同时直接从MFRSR测量中检索色谱柱平均气溶胶粒径,气溶胶光学深度,NO2和臭氧柱量的每日时间序列以及仪器的校准常数。覆盖各种大气和地面条件的各种场所。该分析描述了气溶胶参数的季节性变化以及臭氧和NO2的柱含量随地理位置的变化。此外,还研究了NO2柱数量与气溶胶光学深度之间的关系,以此作为对流层污染的潜在指标。将这种分析方法应用于来自越来越多的MFRSR的测量中,将可以扩展这种不断发展的气候学。 [参考:34]

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