首页> 外文期刊>Acta polytechnica >THE SENSITIVITY OF THE GREENHOUSE EFFECT TO CHANGES IN THE CONCENTRATION OF GASES IN PLANETARY ATMOSPHERES
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THE SENSITIVITY OF THE GREENHOUSE EFFECT TO CHANGES IN THE CONCENTRATION OF GASES IN PLANETARY ATMOSPHERES

机译:温室气体中温室气体浓度变化对温室效应的敏感性

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We present a radiative transfer model for Earth-Like-Planets (ELP). The model allows the assessment of the effect of a change in the concentration of an atmospheric component, especially a greenhouse gas (GHG), on the surface temperature of a planet. The model is based on the separation between the contribution of the short wavelength molecular absorption and the long wavelength one. A unique feature of the model is the condition of energy conservation at every point in the atmosphere. The radiative transfer equation is solved in the two stream approximation without assuming the existence of an LTE in any wavelength range. The model allows us to solve the Simpson paradox, whereby the greenhouse effect (GHE) has no temperature limit. On the contrary, we show that the temperature saturates, and its value depends primarily on the distance of the planet from the central star. We also show how the relative humidity affects the surface temperature of a planet and explain why the effect is smaller than the one derived when the above assumptions are neglected.
机译:我们提出了类似地球的行星(ELP)的辐射传递模型。该模型允许评估大气成分(尤其是温室气体(GHG))浓度变化对行星表面温度的影响。该模型基于短波长分子吸收的贡献与长波长分子吸收的贡献之间的分离。该模型的独特之处在于在大气中每个点的节能状况。在不假设任何波长范围内都存在LTE的情况下,以两个流近似来求解辐射传递方程。该模型使我们能够解决辛普森悖论,即温室效应(GHE)没有温度限制。相反,我们表明温度达到饱和,其值主要取决于行星与中心恒星的距离。我们还展示了相对湿度如何影响行星的表面温度,并解释了为什么这种影响小于忽略上述假设时得出的影响。

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