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Geology, in-situ resource-identification and engineering analysis of the vernal crater area (Arabia Terra): A suitable Mars human landing site candidate

机译:春季陨石坑地区(Arabia Terra)的地质学、原位资源识别和工程分析:一个合适的火星载人着陆点候选者

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摘要

A multidisciplinary study of an ancient area of Mars (Early to Late Noachian) located in Arabia Terra is presented, centred at 6 degrees 1'N, 354 degrees 54' E and including the 55 km size Vernal crater. By means of different spatial scale imagery datasets and digital terrain models (MOLA, THEMIS, HRSC, CTX, CaSSIS and HiRISE), we prepare a high resolution geological map of the study site. We highlight the different bedrock stratigraphy inside the Vernal crater which is of particular exobiological interest given the presence of putative ancient hot springs, as well as identifying multiple transverse aeolian ridges, inverted fracture networks and paleochannels, mounds, and a 58 m fresh crater located just outside Vernal crater rim. Within all low-latitude regions of Mars, the studied site presents the highest values (up to 16.0 wt) of water equivalent hydrogen, hence suggesting that there is a widespread presence of in situ subsurface (at maximum depths of 1-2 m) natural resources, such as water ice and/or hydrated minerals. The equatorial location of the area results in the maximum surface temperature and the highest mean solar flux gatherable on the surface of the planet throughout the year. The interesting scientific case, coupled with the presence of in situ exploitable resources and the thorough accomplishment of all landing/roving engineering safety requirements, make the Vernal crater area a strong landing site candidate for future human exploration of Mars.
机译:对位于阿拉伯泰拉的火星古代区域(早期至晚期诺亚纪)进行了多学科研究,以北纬6度1',东经354度54'为中心,包括55公里大小的春日陨石坑。通过不同的空间尺度影像数据集和数字地形模型(MOLA、THEMIS、HRSC、CTX、CaSSIS和HiRISE),我们准备了研究地点的高分辨率地质图。我们重点介绍了春陨石坑内不同的基岩地层,鉴于存在假定的古代温泉,这特别具有外生物学意义,并确定了多个横向风积山脊、倒置裂缝网络和古通道、土丘和位于春日陨石坑边缘外的 58 米新鲜陨石坑。在火星的所有低纬度地区,所研究的地点呈现出最高的水当量氢值(高达16.0wt%),因此表明存在大量原位地下(最大深度为1-2米)自然资源,如水冰和/或水合矿物。该地区的赤道位置导致地球表面最高温度和全年可收集的最高平均太阳通量。有趣的科学案例,加上原位可开采资源的存在以及所有着陆/巡回工程安全要求的彻底完成,使弗纳尔陨石坑地区成为未来人类探索火星的有力着陆点候选者。

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