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首页> 外文期刊>Journal of geophysical research. Planets >Thermal properties of lobate ejecta in Syrtis Major, Mars: Implications for the mechanisms of formation
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Thermal properties of lobate ejecta in Syrtis Major, Mars: Implications for the mechanisms of formation

机译:热性能的大舌状喷出物专业,火星:影响的机制形成

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摘要

This paper reports an analysis of the thermal properties of ejecta layers of single- and double-lobe impact craters on Mars. First observations of thermal properties were made at low resolution from the Phobos'88 mission and did not allow mapping of variations of thermal properties inside the ejecta layer. The THEMIS instrument on board the Mars Odyssey mission provides new high-resolution thermal mapping of the surface of Mars. From these data we observe a systematic temperature increase at night at the edge of the ejecta. We evaluate first the possible influences on the surface temperatures at night of postimpact modification processes given the topography of an impact crater and its ejecta. We show that the observed thermal signature is more likely related to a particle size distribution inherited immediately after the impact event during the emplacement of ejecta. We propose that the kinetic sieving process, observed in experimental and natural granular flows, like pyroclastic flows, is responsible for the accumulation of larger particles at the ejecta flow front and thus is responsible for the temperature increase. Despite evidence of aeolian activity at Syrtis Major, these craters offer an example of preserved surface physical properties resulting from geological processes which have occurred since the formation of the volcanic shield of Syrtis Major. Further studies are underway with the Mars Express ongoing observations produced by the HRSC and OMEGA instruments in order to explore the interplay between the surface physical properties and the spectroscopic signatures seen at Syrtis Major.
机译:摘要热的分析报告单,喷出物的属性层double-lobe火星陨石坑。的热性能进行了观察低分辨率从火卫一的88任务和所做的不允许变化的热的映射属性里面喷出物层。仪器在火星奥德赛的使命提供了新的高分辨率热的映射火星的表面。系统的温度增加晚上的喷出物的边缘。可能影响表面温度晚上postimpact修改流程考虑到地形的陨石坑和它喷出物。签名是更有可能相关的粒子大小分布继承后立即影响事件在喷出物的位置。建议动能筛分过程,实验中观察到的和自然的流,像火山碎屑流,负责在积累更大的粒子喷出物流面前,因此负责温度增加。活动在大流沙地带,这些火山口提供了一个保留表面物理特性的例子已产生的地质过程发生自火山的形成大的盾牌。与火星快车持续进行观察由HRSC和ω仪器以探索相互作用表面物理性质和之间光谱特征在大三角。

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