Effects of obliquity and water vapor/trace gas greenhouses in the early martian climate
نویسندگان
چکیده
[1] We explore possible mechanisms for the generation of warm, wet climates on early Mars as a result of greenhouse warming by both water vapor and periodic volcanic trace emissions. The presence of both water vapor (a strong greenhouse gas) and other trace greenhouse gases (such as SO2) in a predominantly CO2 atmosphere may act, under certain conditions, to elevate surface temperatures above the freezing point of liquid water, at least episodically. Variations in obliquity are explored to investigate whether these periodic variations in insolation at Mars can broaden the regions or seasons where warm temperatures can exist. We use the Mars Weather Research and Forecasting general circulation model to perform several simulations of the conditions of the early martian atmosphere containing these gases and find global temperatures to be cooler than the elevated levels suggested by at least one recent study by Johnson et al. (2008). While achieving temperatures above 273K globally remains challenging, the additional warming by greenhouse gases under certain obliquity states can permit for widespread seasonally warm conditions, which can help to explain the presence of fluvial surface features (e.g., valley networks) and hydrous minerals of post-Noachian age, a period when alternate methods do not convincingly explain the sustainability of liquid water. Furthermore, we find that global warming can be achieved with the presence of a darker surface globally, which is consistent with both widespread exposure of unweathered basaltic bedrock or the presence of a large surface ocean or sea.
منابع مشابه
A reanalysis of water abundances in the Martian atmosphere at high obliquity
[1] We take a new look at expected atmospheric water vapor abundances on Mars during periods of high obliquity using the Geophysical Fluid Dynamics Laboratory Mars General Circulation Model. For the first time, the sublimation and burial of the present-day residual polar caps beneath a sublimation lag is considered as the planet shifts from lower to high (45 ) obliquity periods. Following the e...
متن کاملOn the orbital forcing of Martian water and CO2 cycles: A general circulation model study with simplified volatile schemes
[1] Variations in the Martian water and CO2 cycles with changes in orbital and rotational parameters are examined using the Geophysical Fluid Dynamics Laboratory Mars General Circulation Model. The model allows for arbitrary specification of obliquity, eccentricity, and argument of perihelion as well as the position and thickness of surface ice. Exchange of CO2 between the surface and atmospher...
متن کاملMetallic Iron in Meteorites as a Sensitive Tracer of Surface-volatile Interactions on Mars
Introduction: Meteorites on Mars (martian finds) are more than curiosities. They may provide a means to gauge the past and recent extent of water exposure across the martian latitudes. The many roles of water in solid, liquid, and vapor phases pose a set of outstanding questions relating to the geologic history and habitability of Mars. Because we are looking for evidence of trace amounts of wa...
متن کاملClimate Change of Mars: Effects of Obliquity
Introduction: Behaviors of the Martian climate system has been investigated in several studies [e.g., 1-4]. If the Martian climate was warm owing to the greenhouse effect of CO 2 in the past, a drastic climate change (climate jump or climate collapse) due to decrease in the amount of CO 2 in the system must have occurred during the evolution from a warm condition to the present cold condition [...
متن کاملEvolution of the Climate System of Mars: Effects of Obliquity Change
Introduction: Greenhouse effect of CO2 may have been the most important factor for the Martian surface environment throughout the history of Mars. Polar ice caps and surface regolith are considered to be large CO2 reservoirs to exchange CO2 with the atmosphere on the Mars (atmosphere-ice caps-regolith (AIR) system). In this respect, Mars has an essentially different climate system from that of ...
متن کامل