首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Spectral albedo of seasonal snow during intensive melt period at Sodankyl?, beyond the Arctic Circle
【24h】

Spectral albedo of seasonal snow during intensive melt period at Sodankyl?, beyond the Arctic Circle

机译:在冰淇淋的强化熔体期间季节性雪的光谱反玻璃(Sodankyl)超出北极圈

获取原文
           

摘要

We have measured spectral albedo, as well as ancillary parameters, of seasonal European Arctic snow at Sodankyl?, Finland (67°22' N, 26°39' E). The springtime intensive melt period was observed during the Snow Reflectance Transition Experiment (SNORTEX) in April 2009. The upwelling and downwelling spectral irradiance, measured at 290–550 nm with a double monochromator spectroradiometer, revealed albedo values of ~0.5–0.7 for the ultraviolet and visible range, both under clear sky and variable cloudiness. During the most intensive snowmelt period of four days, albedo decreased from 0.65 to 0.45 at 330 nm, and from 0.72 to 0.53 at 450 nm. In the literature, the UV and VIS albedo for clean snow are ~0.97–0.99, consistent with the extremely small absorption coefficient of ice in this spectral region. Our low albedo values were supported by two independent simultaneous broadband albedo measurements, and simulated albedo data. We explain the low albedo values to be due to (i) large snow grain sizes up to ~3 mm in diameter; (ii) meltwater surrounding the grains and increasing the effective grain size; (iii) absorption caused by impurities in the snow, with concentration of elemental carbon (black carbon) in snow of 87 ppb, and organic carbon 2894 ppb, at the time of albedo measurements. The high concentrations of carbon, detected by the thermal–optical method, were due to air masses originating from the Kola Peninsula, Russia, where mining and refining industries are located.
机译:我们在Sodankyl',芬兰(67°22'n,26°39'e)中测量了季节性欧洲北极雪的光谱反玻璃和辅助参数。在2009年4月期间在雪反射转换实验(Snortex)期间观察到春天强化熔体期。用双单色仪光谱辐射计测量的升高和沉船光谱辐照度,揭示紫外线的〜0.5-0.7的玻璃杯值和可见的范围,无论是在透明的天空和可变云中。在四天最强烈的繁殖期间,Albedo在330nm下从0.65到0.45减少,低于450nm的0.72至0.53。在文献中,紫外线和玻璃玻璃用于清洁雪的〜0.97-0.99,与该光谱区域中的冰极小吸收系数一致。我们的低反照值由两个独立的同步宽带反玻璃测量值以及模拟的Albedo数据支持。我们解释了较低的玻璃纤维值,因为(i)大型雪粒尺寸直径高达约3毫米; (ii)围绕谷物的熔融水,并增加有效粒度; (iii)雪杂质引起的吸收,浓度在87ppb的雪中的元素碳(黑碳),以及在Albedo测量时的有机碳2894ppb。通过热光学方法检测的高浓度碳是由于俄罗斯康拉半岛的空气群众,在那里采矿和炼油行业所在的群众。
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号