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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Do anthropogenic aerosols enhance or suppress the surface cloud forcing in the Arctic?
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Do anthropogenic aerosols enhance or suppress the surface cloud forcing in the Arctic?

机译:人为气溶胶增强或抑制吗面云强迫在北极?

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Earlier studies suggest that aerosol-cloud interactions may have contributed to the increase in surface air temperature recently observed in the Arctic. While those studies focused on longwave effects of strong pollution events around Barrow, Alaska, we use a global climate model (CAM-Oslo) to study the annual and seasonal net radiative effect of aerosol-cloud interactions over the entire Arctic region. The model is validated against and adjusted to match observations from the Surface Heat Budget of the Arctic Ocean campaign along with measuring stations within the Arctic region. Several sensitivity experiments were conducted which included changes in both cloud properties and aerosol concentrations. Results show that the longwave indirect effect at the surface lies between 0.10 and 0.85 W/m~2 averaged annually north of 71°N, while the shortwave indirect effect lies between -1.29 W/m~2 and -0.52 W/m~2. Due to longwave dominance in winter, 6 of 11 simulations give a positive change in net cloud forcing between October and May (-0.16 to 0.29 W/m~2), while the change in forcing averaged over the summer months is negative for all model simulations (from –2.63 to –0.23 W/m~2). The annually averaged change in net cloud forcing at the surface is negative in 10 of 11 simulations, lying between –0.98 and 0. 12 W/m~2. In conclusion, our results point to a small decrease in the surface radiative flux due to the aerosol indirect effect in the Arctic, but these estimates are subject to uncertainties in the frequency of thin clouds and biases in the estimated cloud cover.
机译:此前的研究表明气溶胶云相互作用可能导致增加在表面空气温度中北极。长波强污染事件的影响阿拉斯加巴罗,,我们使用一个全球气候模型(CAM-Oslo)研究年度和季节性气溶胶云净辐射效应在整个北极地区的交互。模型验证和调整观察表面热量平衡的北冰洋运动测量站在北极地区。敏感性实验包括云特性和变化气溶胶浓度。长波间接影响表面的谎言0.10和0.85 W / m ~ 2之间平均每年北部的71°N,而短波间接的效果介于-1.29 W / m ~ 2和-0.52 W / m ~ 2。冬天由于长波主导地位,6 11净云模拟给出一个积极的改变要求在10月和6月间(-0.16至0.29W / m ~ 2),而迫使平均值的变化夏季是负的所有模型模拟(从-2.63到-0.23 W / m ~ 2)。每年平均净云强迫的变化表面是负10 11模拟,躺在-0.98至0。结论,我们的结果指向一个小减少由于气溶胶表面辐射通量北极的间接影响,但这些估计的不确定性薄的云层和偏见的频率估计云层。

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