Suárez Salas Luis F, Flores Rojas Jose L, Pereira Filho Augusto J, Karam Hugo A
Observatorio de Huancayo del Instituto Geofísico del Perú, Calle Badajoz 169, Ate, Lima, Perú.
Photochem Photobiol Sci. 2017 Jun 14;16(6):954-971. doi: 10.1039/c6pp00161k.
Ultraviolet (UV) solar irradiance measurements performed in the central Andes, Huancayo, Peru (12.0°S, 75.3°W, 3313 m asl) at 1 min intervals between January 2003 and December 2006 were used to analyse daily, monthly, and annual cycles of UV solar irradiance. The measurements were performed using a GUV-511 multi-channel filter radiometer at four wavelengths: 305, 320, 340, and 380 nm. UV irradiance data under clear sky and all sky conditions were separated using a procedure based on calculation of normalized irradiance. In February, the highest hourly mean value at noon for the UV Index reached 18.8 for clear sky conditions and 15.5 for all sky conditions, with outlier peaks close to UVI = 28. In addition, the highest mean value for the daily erythemal dose was found also in February, reaching 7.5 kJ m d with a maximum outlier value close to 10.1 kJ m d. Comparisons between the clear sky GUV measurements and TUV model estimations were evaluated with statistical quantities showing values of R close to 0.98. The total ozone column and trace gases were obtained from OMI. The aerosol parameters were obtained from MODIS. The enhancements due to clouds of spectral irradiance at 340 nm as compared to a cloudless sky reach maxima of 20%. These results indicate that tropical central Andes has among the highest incident ultraviolet solar radiation in the world.
2003年1月至2006年12月期间,在秘鲁万卡约(南纬12.0°,西经75.3°,海拔3313米)的安第斯山脉中部,每隔1分钟进行一次紫外线(UV)太阳辐照度测量,以分析紫外线太阳辐照度的日、月和年周期。测量使用GUV - 511多通道滤光辐射计在四个波长下进行:305、320、340和380纳米。利用基于归一化辐照度计算的程序,分离出晴空和全天空条件下的紫外线辐照度数据。2月,晴空条件下紫外线指数中午的最高每小时平均值达到18.8,全天空条件下为15.5,异常峰值接近紫外线指数=28。此外,每日红斑剂量的最高平均值也出现在2月,达到7.5千焦·平方米·天,最大异常值接近10.1千焦·平方米·天。通过统计量评估晴空GUV测量值与TUV模型估计值之间的比较,结果显示R值接近0.98。总臭氧柱和微量气体数据来自OMI。气溶胶参数来自MODIS。与无云天空相比,340纳米光谱辐照度因云而增强的最大值达到20%。这些结果表明,热带安第斯山脉中部是世界上紫外线太阳辐射入射量最高的地区之一。