首页> 外文期刊>Geophysical Research Letters >Regression of the Mountains of Mitchel polar ice after the onset of a global dust storm on Mars - art. no. 2017
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Regression of the Mountains of Mitchel polar ice after the onset of a global dust storm on Mars - art. no. 2017

机译:一场全球沙尘暴在火星上爆发后,米切尔极地冰山的回归-艺术。没有。 2017年

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摘要

Data from the Mars Orbiter Camera experiment on Mars Global Surveyor show that the 2001 spring regression of the Mountains of Mitchel, a bright region in the south polar cap of Mars, was faster than in 1999. Those two years differed in that a large spring dust storm occurred in 2001, while 1999 was relatively dust free. We have modeled the effects of atmospheric dust on the CO2 sublimation rate, using a Monte Carlo radiative transfer model. We explicitly accounted for the two major effects of atmospheric dust: 1) reduction of the direct solar heating and 2) the opposing increase in the absorption of IR thermal dust emission by the surface. Our modeling supports the hypothesis that this year's faster regression of the Mountains of Mitchel was related to the early spring global dust storm. [References: 16]
机译:来自火星全球测量师(Mars Global Surveyor)的火星轨道相机实验的数据显示,火星南极盖帽明亮地带的米切尔山(Mitsel)的2001年春季回归速度比1999年要快。这两年的区别在于大的春季尘埃风暴发生在2001年,而1999年则相对无尘。我们使用蒙特卡洛辐射传递模型对大气尘埃对CO2升华率的影响进行了建模。我们明确地解释了大气尘埃的两个主要影响:1)减少了直接的太阳加热,以及2)表面对红外热尘埃的吸收的相反增加。我们的模型支持以下假设:今年Mitchel山脉的更快退缩与早春的全球沙尘暴有关。 [参考:16]

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