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H2O-H2SO4 system in Venus' clouds and OCS, CO, and H2SO4 profiles in Venus' troposphere

机译:金星云中的H2O-H2SO4系统以及金星对流层中的OCS,CO和H2SO4剖面

摘要

A coupled problem of diffusion and condensation is solved for the H2SO4-H2O system in Venus' cloud layer. The position of the lower cloud boundary, profiles of the H2O and H2SO vapor mixing ratios, and of the H2O/H2SO4 ratio of sulfuric acid aerosol and its flux are calculated as functions of the column photochemical production rate of sulfuric acid. Variations of the lower cloud boundary are considered. Our basic model, which is constrained to yield f(sub H2O)(30km) = 30 ppm, predicts the position of the lower cloud boundary at 48.4 km coinciding with the mean Pioneer Venus value, the peak H2SO4 mixing ratio of 5.4 ppm, and the H2SO4 production rate phi(sub H2SO4) = 2.2 x 10(exp 12) cm(exp -2)s(exp -1).
机译:金星云层中的H2SO4-H2O系统解决了扩散和冷凝的耦合问题。计算下云边界的位置,H2O和H2SO蒸汽混合比的分布图以及硫酸气溶胶及其通量的H2O / H2SO4比,作为柱光化学硫酸产率的函数。考虑下云边界的变化。我们的基本模型被约束为产生f(sub H2O)(30km)= 30 ppm,它预测48.4 km处较低的云边界位置,与先锋金星的平均值,H2SO4峰值混合比5.4 ppm和H2SO4的生产率phi(sub H2SO4)= 2.2 x 10(exp 12)cm(exp -2)s(exp -1)。

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