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Aerosol retrievals from the EKO MS-711 spectral direct irradiance measurements and corrections of the circumsolar radiation

机译:来自EKO MS-711光谱直接辐照度测量和矩阵辐射的校正的气溶胶检索

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摘要

Spectral direct UV–visible normal solar irradiance (DNI) has been measured with an EKO MS-711 grating spectroradiometer, which has a spectral range of 300–1100 nm, and 0.4 nm step, at the Izaña Atmospheric Observatory (IZO, Spain). It has been used to determine aerosol optical depth (AOD) at several wavelengths (340, 380, 440, 500, 675, and 870 nm) between April and September 2019, which has been compared with synchronous AOD measurements from a reference Cimel and Aerosol RObotic NETwork (AERONET) sun photometer. The EKO MS-711 has been calibrated at the Izaña Atmospheric Observatory by using the Langley plot method during the study period. Although this instrument has been designed for spectral solar DNI measurements, and therefore has a field of view (FOV) of 5∘ that is twice the recommended amount in solar photometry for AOD determination, the AOD differences compared to the AERONET–Cimel reference instrument (FOV ∼1.2∘) are fairly small. A comparison of the results from the Cimel AOD and EKO MS-711 AOD presents a root mean square (rms) of 0.013 (24.6 %) at 340 and 380 nm, and 0.029 (19.5 %) for longer wavelengths (440, 500, 675, and 870 nm). However, under relatively high AOD, near-forward aerosol scattering might be significant because of the relatively large circumsolar radiation (CSR) due to the large EKO MS-711 FOV, which results in a small but significant AOD underestimation in the UV range. The AOD differences decrease considerably when CSR corrections, estimated from libRadtran radiative transfer model simulations, are performed and obtain an rms of 0.006 (14.9 %) at 340 and 380 nm, and 0.005 (11.1 %) for longer wavelengths. The percentage of 2 min synchronous EKO AOD–Cimel AOD differences within the World Meteorological Organization (WMO) traceability limits were ≥96 % at 500, 675, and 870 nm with no CSR corrections. After applying the CSR corrections, the percentage of AOD differences within the WMO traceability limits increased to >95 % for 380, 440, 500, 675, and 870 nm, while for 340 nm the percentage of AOD differences showed a poorer increase from 67 % to a modest 86 %.
机译:光谱直接紫外可见正常太阳辐照度(DNI)已经测量用EKO MS-711光栅分光辐射,其具有300-1100纳米,0.4纳米步骤的光谱范围,在大气Izaña天文台(IZO,西班牙)。它已被用于确定在几个波长四月至九月2019之间已经与来自参考Cimel和气溶胶同步AOD测量相比气溶胶光学厚度(AOD)(340,380,440,500,675,和870纳米)机器人网络(AERONET)太阳光度计。所述EKO MS-711已被研究期间使用兰利plot方法在大气Izaña天文台校准。尽管这种仪器的设计用于光谱太阳能DNI测量,并因此具有的视场的5∘(FOV)的两倍为AOD判定太阳能测光的推荐量,该AOD差异相比AERONET-Cimel参考仪器( FOV~1.2∘)是相当小的。在340和380纳米,以及0.029(19.5%)为更长的波长(440,500,675 0.013(24.6%)的结果从Cimel AOD和EKO MS-711 AOD呈现一个根均方(RMS)的比较,和870纳米)。然而,在相对高的AOD,邻近进气溶胶散射可能由于相对大环日辐射(CSR)由于大EKO MS-711 FOV,的是显著这导致在UV范围内的小,但显著AOD低估。该AOD差异显着降低当CSR校正,从libRadtran辐射传输模型模拟估计,针对较长波长进行,并且在340和380nm处得到的0.006(14.9%)的均方根,和0.005(11.1%)。的世界气象组织(WMO)的可追溯性限度内2分钟同步EKO AOD-Cimel AOD差异的百分比分别为≥96%,在500,675,以及与无CSR校正870纳米。施加CSR校正后,的WMO可追溯性限度内AOD差异的百分比增加至> 95%为380,440,500,675,和870纳米,而对于340nm处的AOD的差异的百分比显示出从67%更差的增加一个温和的86%。

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