Inversion of Venus internal structure based on geodetic data

Author:

Xiao Chi,Li Fei,Yan Jian-Guo,Hao Wei-Feng,Harada Yuji,Ye Mao,Barriot Jean-Pierre

Abstract

Abstract Understanding the internal structure of Venus promotes the exploration of the evolutionary history of this planet. However, the existing research concerning the internal structure of Venus has not used any inversion methods. In this work we employed an inversion method to determine the internal structure of Venus using observational or hypothetical geodetic data; these data include mass, mean radius, mean moment of inertia and second degree tidal Love number k 2. To determine the core state of Venus, we created two models of Venus, an isotropic 3-layer model with entire liquid core and an isotropic 4-layer model with liquid outer core and a solid inner core, assuming that the interior of Venus is spherically symmetric and in hydrostatic equilibrium. A series of the sensitivity analysis of interior structure parameters to the geodetic data considered in here shows that not all of the parameters can be constrained by the geodetic data from Venus. On this basis, a Markov Chain Monte Carlo algorithm was used to determine the posterior probability distribution and the optimal values of the internal structure parameters of Venus with the geodetic data. We found that the 3-layer model is more credible than the 4-layer model via currently geodetic data. For the assumption of the 3-layer model with the k 2 = 0.295 ± 0.066, I/MR 2 = 0.33 ± 0.0165, and ρ ¯ = 5242.7 ± 2.6 kgm−3, the liquid iron-rich core of Venus has a radius of 3294 261 + 215 km, which suggests a larger core than previous research has indicated. The average density of the mantle and liquid core of Venus are 4101 375 + 325 and 11885 1242 + 955 kgm−3, respectively.

Publisher

IOP Publishing

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Internal Structure of Venus Based on the PREM Model;Solar System Research;2023-10

2. Internal Structure of Venus Based on the PREM Model;Астрономический вестник;2023-09-01

3. Rifting Venus: Insights From Numerical Modeling;Journal of Geophysical Research: Planets;2023-03

4. Venus Volcano Imaging and Climate Explorer Mission;Chinese Journal of Space Science;2022

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