首页> 外文期刊>Atmospheric Measurement Techniques >Synoptic ozone, cloud reflectivity, and erythemal irradiance from sunrise to sunset for the whole earth as viewed by the DSCOVR spacecraft from the earth-sun Lagrange 1 orbit
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Synoptic ozone, cloud reflectivity, and erythemal irradiance from sunrise to sunset for the whole earth as viewed by the DSCOVR spacecraft from the earth-sun Lagrange 1 orbit

机译:来自日出到日落的潮天道臭氧,云反射率和红斑辐照整个地球,由地球扫描从地球阳光拉长1轨道观察

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摘要

EPIC (Earth Polychromatic Imaging Camera) on board the DSCOVR (Deep Space Climate Observatory) spacecraft is the first earth science instrument located near the earth-sun gravitational plus centrifugal force balance point, Lagrange 1. EPIC measures earth-reflected radiances in 10 wavelength channels ranging from 317.5 to 779.5 nm. Of these channels, four are in the UV range 317.5, 325, 340, and 388 nm, which are used to retrieve O-3, 388 nm scene reflectivity (LER: Lambert equivalent reflectivity), SO2, and aerosol properties. These new synoptic quantities are retrieved for the entire sunlit globe from sunrise to sunset multiple times per day as the earth rotates in EPIC's field of view. Retrieved ozone amounts agree with ground-based measurements and satellite data to within 3 %. The ozone amounts and LER are combined to derive the erythemal irradiance for the earth's entire sunlit surface at a nadir resolution of 18 x 18 km(2) using a computationally efficient approximation to a radiative transfer calculation of irradiance. The results show very high summertime values of the UV index (UVI) in the Andes and Himalayas (greater than 18), and high values of UVI near the Equator at equinox.
机译:史诗(地球多色成像相机)在DSCOVR(深空气气候观测所)航天器是第一科学仪器,位于地球太阳引力加离心力平衡点,拉格朗日1.史诗衡量10波长渠道的地球反射辐射从317.5到779.5 nm。在这些通道中,四个位于UV范围317.5,325,340和388nm中,用于检索O-3,388nm场景反射率(LER:Lambert等效反射率),SO 2和气溶胶性质。当地球在史诗般的视野中旋转时,每天从日出到日落到日落的整个日落到日落的整个阳光地球数量。检索到的臭氧量与地基测量和卫星数据相提到3%以内。臭氧量和LER组合以在18×18km(2)的NadiR分辨率下,使用计算有效近似与辐照度的辐射转移计算来源于18×18km(2)的红斑辐照度。结果表明,ANDES和Himalayas(大于18)中的UV索引(UVI)的非常高的夏季值,以及eMEnox的赤道附近的UVI高值。

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