首页> 外文期刊>Icarus: International Journal of Solar System Studies >A methodology to construct a reduced chemical scheme for 2D-3D photochemical models: Application to Saturn
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A methodology to construct a reduced chemical scheme for 2D-3D photochemical models: Application to Saturn

机译:为2D-3D光化学模型构建简化化学方案的方法:应用于土星

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摘要

We present a methodology to build a reduced chemical scheme adapted to the study of hydrocarbons in the atmospheres of giant planets and Titan. As an example, we have built a reduced chemical scheme, containing only 25 compounds and 46 reactions (including photolysis), which is well adapted to compute the abundance of the main hydrocarbons observed so far in the atmosphere of Saturn (CH_3, CH_4, C_2H_2, C_2H_4, C_2H_6, CH_3C_2H, C_3H_8 and C_4H_2). This scheme gives similar results, within the error bars of the model, as a 1D photochemical model using an initial chemical scheme containing 90 compounds and more than 600 reactions. As a consequence, such a methodology can be used to build a reduced scheme well adapted to future 2D (or 3D) photochemical models and GCMs.
机译:我们提出了一种方法,以建立一种适合于研究巨型行星和土卫六大气中的碳氢化合物的简化化学方案。例如,我们建立了一个简化的化学方案,仅包含25种化合物和46个反应(包括光解),该方案非常适合计算迄今为止在土星大气中观测到的主要烃(CH_3,CH_4,C_2H_2)的丰度,C_2H_4,C_2H_6,CH_3C_2H,C_3H_8和C_4H_2)。作为一维光化学模型,使用包含90个化合物和600多个反应的初始化学方案,该方案可在模型的误差范围内提供相似的结果。结果,这种方法可以用于建立一种简化的方案,该方案非常适合未来的2D(或3D)光化学模型和GCM。

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