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首页> 外文期刊>Climate dynamics >Impacts of greenhouse gases and aerosol direct and indirect effects on clouds and radiation in atmospheric GCM simulations of the 1930-1989 period
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Impacts of greenhouse gases and aerosol direct and indirect effects on clouds and radiation in atmospheric GCM simulations of the 1930-1989 period

机译:在1930-1989年期间的大气GCM模拟中,温室气体和气溶胶的直接和间接影响对云和辐射的影响

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摘要

Among anthropogenic perturbations of the Earth's atmosphere, greenhouse gases and aerosols are considered to have a major impact on the energy budget through their impact on radiative fluxes. We use three ensembles of simulations with the LMDZ general circulation model to investigate the radiative impacts of five species of greenhouse gases (CO_2, CH_4, N_2O, CFC-11 and CFC-12) and sulfate aerosols for the period 1930-1989. Since our focus is on the atmospheric changes in clouds and radiation from greenhouse gases and aerosols, we prescribed sea-surface temperatures in these simulations. Besides the direct impact on radiation through the greenhouse effect and scattering of sunlight by aerosols, strong radiative impacts of both perturbations through changes in cloudiness are analysed. The increase in greenhouse gas concentration leads to a reduction of clouds at all atmospheric levels, thus decreasing the total greenhouse effect in the longwave spectrum and increasing absorption of solar radiation by reduction of cloud albedo. Increasing anthropogenic aerosol burden results in a decrease in high-level cloud cover through a cooling of the atmosphere, and an increase in the low-level cloud cover through the second aerosol indirect effect. The trend in low-level cloud lifetime due to aerosols is quantified to 0.5 min day~(-1) decade~(-1) for the simulation period. The different changes in high (decrease) and low-level (increase) cloudiness due to the response of cloud processes to aerosols impact shortwave radiation in a contrariwise manner, and the net effect is slightly positive. The total aerosol effect including the aerosol direct and first indirect effects remains strongly negative.
机译:在地球大气的人为扰动中,温室气体和气溶胶通过影响辐射通量而对能源预算产生重大影响。我们使用LMDZ总循环模型进行的三组模拟研究了1930-1989年期间5种温室气体(CO_2,CH_4,N_2O,CFC-11和CFC-12)和硫酸盐气溶胶的辐射影响。由于我们的重点是云层的大气变化以及温室气体和气溶胶的辐射,因此在这些模拟中指定了海面温度。除了通过温室效应对辐射的直接影响以及气溶胶对太阳光的散射之外,还分析了由于云量变化而引起的两种扰动的强烈辐射影响。温室气体浓度的增加导致所有大气水平的云量减少,从而降低了长波谱中的总温室效应,并通过减少云量反照率而增加了对太阳辐射的吸收。人为气溶胶负担的增加导致通过大气层冷却降低高空云量,并通过第二次间接气溶胶效应增加低空云量。在模拟期间,由于气溶胶导致的低空云寿命的趋势被量化为0.5分钟天〜(-1)十年〜(-1)。云过程对气溶胶的响应引起的高(减少)和低(增加)混浊的不同变化以相反的方式影响短波辐射,并且净效应略为正。总体气溶胶效应(包括气溶胶的直接效应和初次间接效应)仍然很强。

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