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Mars atmospheric chemistry simulations with the GEM-Mars general circulation model

机译:火星大气化学模拟与宝马普通循环模型

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General Circulation Models with interactive physical and chemistry processes are the state-of-the-art tools for an integrated view and understanding of the Martian atmosphere and climate system. The GEM-Mars model currently includes 16 tracers for chemical composition and applies a fully online, interactive calculation of the photo- and gas phase chemistry of carbon dioxide (CO2) and water vapor (H2O). These species largely control the chemical composition of the neutral Mars atmosphere through their photolysis products and their subsequent interactions. Water vapor undergoes a complex cycle on Mars as it is transported and interacts with ice reservoirs both at the planet's surface and at water ice clouds, which in turn provide radiative feedbacks. In the photochemical cycles involving CO2 and H2O, the abundances of 5 species have been reported by previous investigations with significant spatio-temporal coverage: CO2, H2O, CO, O-3 and H2O2. This paper presents the current status of the atmospheric chemistry simulations in GEM-Mars by comparing them to a selection of these observational datasets as well as to oxygen dayglow emission from O-2(a(1)Delta g). The results are consistent with previous model-data comparisons and illustrate that the water cycle and the photochemistry are well implemented in the model. In particular, the simulation of the key reservoir species H2O2 provides a good match to the available data. Model-data biases for ozone columns and oxygen airglow are related to the simulated water vapor vertical profile, as these species have important column contributions from vertical layers at the top of the hygropause.
机译:具有互动性物理和化学过程的一般循环模型是用于综合视图和对火星氛围和气候系统的综合观点和理解的最先进的工具。 Gem-Mars模型目前包括16种化学成分的示踪剂,并在二氧化碳(CO2)和水蒸气(H2O)的光 - 气相化学的完全在线,交互式计算。这些物种在很大程度上通过它们的光解产物及其随后的相互作用来控制中性火星气氛的化学成分。水蒸气在火星上进行复杂的循环,因为它被运输并与地球表面和水冰云的冰冻藏相互作用,这反过来提供辐射反馈。在涉及CO2和H2O的光化学循环中,通过先前的调查报告了5种的丰度,具有显着的时空覆盖:CO 2,H 2 O,CO,O-3和H 2 O 2。本文通过将这些观察性数据集进行比较,介绍了GEM-MARS中大气化学模拟的当前状态,以及从O-2的氧那亚氧气发射(A(1)ΔG)。结果与先前的模型数据比较一致,并说明水循环和光化学在模型中很好地实现。特别地,密钥库物种H2O2的仿真提供了与可用数据的良好匹配。用于臭氧柱和氧气腓咯的模型数据偏差与模拟水蒸气垂直型材有关,因为这些物种具有来自Hygropause顶部的垂直层的重要柱贡献。

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