Abstract

Venus, as a terrestrial planet, not only has the closest distance to Earth in the solar system but also has similar size and mass to Earth, the detection on it has extremely high reference value for Earth and future research. While due to the high temperature, high pressure and weak acid environment on the surface of the planet, the landing detection is hindered. Based on comprehensive analysis and computation on the Venus surface environment simulation process and diffusion state of single-phase binary gas under high-temperature and high-pressure conditions, this article provides an optimization scheme, which would provide support for the establishment of future environmental simulation equipment.

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