天体生物学
火星探测计划
乌托邦
火星漫游车
表征(材料科学)
地质学
艺术史
艺术
物理
材料科学
纳米技术
作者
Liang Ding,Ruyi Zhou,Tianyi Yu,Haibo Gao,Huaiguang Yang,Jian Li,Ye Yuan,Chuankai Liu,Jia Wang,Yuyan Zhao,Wang Zheng-yin,Xiyu Wang,Gang Bao,Zongquan Deng,Lan Huang,Nan Li,Xiaofeng Cui,Ximing He,Yang Jia,Baofeng Yuan
标识
DOI:10.21203/rs.3.rs-836162/v1
摘要
Abstract China’s first Mars rover, Zhurong, has successfully touched down on the southern Utopia Planitia of Mars at 109.925° E, 25.066° N, and since performed cooperative multiscale investigations with the Tianwen-1 orbiter. Here we present primary localization and surface characterization results based on complementary data of the first 60 sols. The Zhurong rover has traversed 450.9 m southwards over a flat surface with mild wheel slippage (less than 0.2 in slip ratio). The encountered crescent-shaped sand dune indicates a NE-SW local wind direction, consistent with larger-range remote-sensing observations. Soil parameter analysis based on terramechanics indicates that the topsoil has high bearing strength and cohesion, and its equivalent stiffness and internal friction angle are ~1390-5872 kPa∙m-n and ~21°-34° respectively. Rocks observed strewn with dense pits, or showing layered and flaky structures, are presumed to be involved in physical weathering like severe wind erosion and potential chemical weathering processes. These preliminary observations suggest great potential of in-situ investigations by the scientific payload suite of the Zhurong rover in obtaining new clues of the region’s aeolian and aqueous history. Cooperative investigations using the related payloads on both the rover and the obiter could peek into the habitability evolution of the northern lowlands on Mars.
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