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首页> 外文期刊>Geophysical Research Letters >Advective Fluxes in the Martian Regolith as a Mechanism Driving Methane and Other Trace Gas Emissions to the Atmosphere
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Advective Fluxes in the Martian Regolith as a Mechanism Driving Methane and Other Trace Gas Emissions to the Atmosphere

机译:Martian Remolith中的平流助焊剂作为驱动甲烷和其他痕量气体排放到大气的机制

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Advective fluxes influence methane and CO2 soil emissions into the atmosphere on Earth and may drive trace gas emissions in the Mars atmosphere. However, their relevance in the Martian regolith has not been evaluated to date. Our regolith transport simulations show that advective fluxes can be relevant under Martian conditions and may drive the methane abundance detected by Mars Science Laboratory. Trace gas emissions would be highest in regions where winds interact with topography. Emissions in these regions may be further enhanced by time-varying pressure fields produced by diurnal thermal tides and atmospheric turbulence. Trace gases such as methane should be emitted or produced from the first layers of regolith, or quickly transported to this region from a deeper reservoir through fractured media.
机译:方向道性通量会影响甲烷和二氧化碳土壤排放到地球上的大气中,可能在火星气氛中散布痕量气体排放。 然而,他们在Martian RemoLith中的相关性迄今尚未评估。 我们的易恶体传输模拟表明,平流的助焊剂可以在火星条件下有所相关,并可能推动火星科学实验室检测到的甲烷丰富。 痕量气体排放在风中与地形相互作用的地区将是最高的。 可以通过由昼夜热潮汐和大气湍流产生的时变压场进一步增强这些区域中的排放。 诸如甲烷的痕量气体应由第一层的石油石,或者通过裂缝介质从更深的贮存器快速运输到该区域。

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