GSTDTAP  > 地球科学
DOI10.1016/j.atmosres.2018.11.004
Atmospheric response to the 20 March 2015 solar eclipse along the whole aerosol column by lidar measurements
Perrone, M. R.; Romano, S.
2019-03-01
发表期刊ATMOSPHERIC RESEARCH
ISSN0169-8095
EISSN1873-2895
出版年2019
卷号217页码:172-183
文章类型Article
语种英语
国家Italy
英文摘要

Lidar measurements at 355, 532, and 1064 nm have been performed at Lecce (40.3 degrees N, 18.1 degrees E), in south-eastern Italy, to investigate for the first time the impact of the 20 March 2015 solar eclipse on both the planetary boundary layer (PBL) height and the aerosol optical and microphysical properties along the whole aerosol column. The partial solar eclipse lasted from 08:30 up to 10:47 UTC and reached the full phase at 09:37 UTC. The maximum percentage obscuration of the solar disk was 43.6%. The eclipse cooling effect was responsible at the full phase time (t(F)) for the downward solar irradiance decrease at the top of the atmosphere, at the surface, and within the atmosphere of 429.2 +/- 0.6, 373 +/- 25, and 56 +/- 26 W m(-2), respectively. The turbulent kinetic energy, the potential temperature flux, the sensible heat flux, the variance of air temperature, and the vertical wind speed at the surface revealed that the turbulence activity reached the maximum weakening at the time t(F). The standard deviation (SD) technique has been applied to both the lidar range corrected signals (RCS) at 1064 nm and the linear volume depolarization ratio (delta(V)) profiles at 355 nm to determine the time evolution of the shallow PBL height and the aloft aerosol layers. The SD technique applied to RCS and delta(V) profiles revealed similar results within experimental uncertainties. The PBL height, which was equal to 380 +/- 40 m above ground level (AGL) at the eclipse full phase (09:37 UTC), decreased up to 220 +/- 20 m at 09:45 UTC because of the eclipse cooling effect and, then, increased up to 320 +/- 30 mat 10:17 UTC. The determined PBL height time evolution was in good agreement with the ones of the main turbulence parameters at the surface after t(F). The vertical profiles of the aerosol backscatter coefficient (beta beta), the delta(V) at 355 nm, and the extinction-related angstrom ngstrom exponent (angstrom), calculated at the 355-1064 nm wavelength pair revealed a marked decrease of beta, delta(V), and angstrom at the eclipse full phase within the aloft aerosol layers. The abrupt beta, delta(V), and angstrom decrease due to the aerosol concentration and type changes has mainly been associated with the decrease of the fine-mode particle contribution.


英文关键词Solar eclipse Lidar measurements Planetary boundary layer Turbulence parameters Solar irradiance Atmospheric aerosols
领域地球科学
收录类别SCI-E
WOS记录号WOS:000452931100017
WOS关键词PLANETARY BOUNDARY-LAYER ; METEOROLOGICAL PARAMETERS ; SCATTERING COEFFICIENT ; DEPOLARIZATION RATIO ; OPTICAL-PROPERTIES ; SURFACE RADIATION ; SONIC ANEMOMETER ; METHODOLOGY ; TEMPERATURE ; IRRADIANCE
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/15270
专题地球科学
作者单位Univ Salento, Dipartimento Matemat & Fis, Lecce, Italy
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GB/T 7714
Perrone, M. R.,Romano, S.. Atmospheric response to the 20 March 2015 solar eclipse along the whole aerosol column by lidar measurements[J]. ATMOSPHERIC RESEARCH,2019,217:172-183.
APA Perrone, M. R.,&Romano, S..(2019).Atmospheric response to the 20 March 2015 solar eclipse along the whole aerosol column by lidar measurements.ATMOSPHERIC RESEARCH,217,172-183.
MLA Perrone, M. R.,et al."Atmospheric response to the 20 March 2015 solar eclipse along the whole aerosol column by lidar measurements".ATMOSPHERIC RESEARCH 217(2019):172-183.
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