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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Initial results of a global circuit model with variable stratospheric and tropospheric aerosols
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Initial results of a global circuit model with variable stratospheric and tropospheric aerosols

机译:全球电路模型的初步结果变量平流层和对流层气溶胶

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A new model of the global circuit has been constructed that treats more realistically than previous models the external influences due to varying charged particle fluxes from space, the internal variability due to the transport of radon by atmospheric dynamics, and the varying aerosol populations. An approximate treatment of the effects of explosive volcanic eruptions, that introduce SO2 and H2O into the stratosphere, involves the creation of ultrafine aerosol particles in the downward branch of the Brewer-Dobson circulation from sulfuric acid aerosol particles vaporized in the upward branch. A large increase in stratospheric column resistance occurs at high latitudes, but for much of the time this column resistance is reduced by stratospheric ionizing radiation due to relativistic electron precipitation. Here we present results for the variability of the global circuit due to the variations of the aerosol populations in the stratosphere and troposphere, the variability of the cosmic ray flux, and the geographical and seasonal variability of the near-surface radioactivity. We discuss inferred changes in the circuit parameters associated with climate change, on interannual to Milankovich timescales.
机译:一个新的全球电路的模型对待现实比以前的模型的外部影响不同带电粒子通量的空间,由于运输内部的变化氡大气动力学,和不同气溶胶的人口。火山爆发的影响,二氧化硫和水引入到平流层,包括超细气溶胶的创建粒子的向下分支从硫酸Brewer-Dobson循环气溶胶粒子蒸发的向上的分支。大量增加的列电阻出现在高纬度地区,但大部分时间本专栏的阻力减少极高的电离辐射由于相对论性电子降水。现在全球的可变性的结果电路由于气溶胶的变化人口在平流层和对流层,宇宙射线通量的变化,地理和季节的变化近地表放射性物质。相关电路参数的变化气候变化、年际Milankovich时间尺度。

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