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首页> 外文期刊>Annals of Glaciology >The interaction of ultraviolet light with Arctic sea ice during SHEBA
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The interaction of ultraviolet light with Arctic sea ice during SHEBA

机译:SHEBA期间紫外线与北极海冰的相互作用

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The reflection, absorption and transmission of ultraviolet light by a sea-ice cover strongly impacts primary productivity, higher trophic components of the food web, and humans. Measurements of the incident irradiance at 305, 320, 340 and 380nm and of the photosynthetically active radiation were made from April through September 1998 as part of the SHEBA (Surface Heat Budget of the Arctic Ocean program) field experiment in the Arctic Ocean. In addition, observations of snow depth and ice thickness were made at more than 100 sites encompassing a comprehensive range of conditions. The thickness observations were combined with a radiative transfer model to compute a time series of the ultraviolet light transmitted by the ice cover from April through September. Peak values of incident ultraviolet irradiance occurred in mid-June. Peak transmittance was later in the summer at the end of the melt season when the snow cover had completely melted, the ice had thinned and pond coverage was extensive. The fraction of the incident ultraviolet irradiance transmitted through the ice increased by several orders of magnitude as the melt season progressed. Ultraviolet transmittance was approximately a factor of ten greater for melt ponds than bare ice. Climate change has the potential to alter the amplitude and timing of the annual albedo cycle of sea ice. If the onset of melt occurs at increasingly earlier dates, ultraviolet transmittance will be significantly enhanced, with potentially deleterious biological impacts.
机译:海冰覆盖物对紫外线的反射,吸收和透射强烈影响初级生产力,食物网中较高营养成分和人类。 1998年4月至1998年9月,在北冰洋进行了SHEBA(北冰洋表面热预算)计划的一部分,测量了305、320、340和380nm处的入射辐照度以及光合有效辐射。此外,还对100多个地点的雪深和冰厚进行了观测,涵盖了范围广泛的条件。厚度观测值与辐射传输模型相结合,以计算从4月到9月由冰盖传播的紫外线的时间序列。 6月中旬发生了入射紫外线辐照的峰值。峰值透射率是在融雪季节结束时的夏季晚些时候,那时积雪已完全融化,冰层变薄,池塘覆盖范围很广。随着融化季节的进行,透过冰的入射紫外线辐射所占比例增加了几个数量级。融化池塘的紫外线透过率比裸露冰的透过率大约高十倍。气候变化有可能改变海冰年度反照率周期的幅度和时间。如果熔体开始出现的时间越来越早,紫外线的透射率将大大提高,从而可能对生物造成有害影响。

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