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Simulation of black carbon in snow and its climate impact in the Canadian Global Climate Model

机译:加拿大全球气候模型中雪中黑碳的模拟及其气候影响

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A new physically based parameterisation of black carbon (BC) in snow was developed and implemented in the Canadian Atmospheric Global Climate Model (CanAM4.2). Simulated BC snow mixing ratios and BC snow radiative forcings are in good agreement with measurements and results from other models. Simulations with the improved model yield considerable trends in regional BC concentrations in snow and BC snow radiative forcings during the time period from 1950–1959 to 2000–2009. Increases in radiative forcings for Asia and decreases for Europe and North America are found to be associated with changes in BC emissions. Additional sensitivity simulations were performed in order to study the impact of BC emission changes between 1950–1959 and 2000–2009 on surface albedo, snow cover fraction, and surface air temperature. Results from these simulations indicate that impacts of BC emission changes on snow albedos between these 2 decades are small and not significant. Overall, changes in BC concentrations in snow have much smaller impacts on the cryosphere than the net warming surface air temperatures during the second half of the 20th century.
机译:在加拿大大气全球气候模型(CANAM4.2)中开发并实施了雪中的黑碳(BC)的新物理上基于黑碳(BC)的参数。模拟BC雪混合比和BC散热强制与其他模型的测量和结果有关。随着1950年至1959年至2000 - 2009年的时间段,利用改进模型的区域BC浓度在雪和BC辐射强制中产生了相当大的趋势。亚洲辐射强制增加和欧洲和北美减少的增加将发现与公元前公共排放的变化有关。进行额外的敏感性模拟,以研究1950-1959和2000-2009在表面反照,雪盖分数和表面空气温度上的BC排放变化的影响。这些模拟的结果表明,BC排放变化对这两十年之间的雪玻璃玻璃的影响小而且不显着。总体而言,雪中BC浓度的变化对光滑圈的影响小得多,而不是20世纪下半叶的净变暖表面空气温度。

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