Damięcka-Suchocka Marzena, Katzer Jacek
Faculty of Civil Engineering, Environmental and Geodetic Sciences, Koszalin University of Technology, Śniadeckich 2, 75-453, Koszalin, Poland.
Faculty of Geoengineering, University of Warmia and Mazury in Olsztyn, Prawocheńskiego 15, 10-720, Olsztyn, Poland.
Data Brief. 2023 Jul 20;49:109435. doi: 10.1016/j.dib.2023.109435. eCollection 2023 Aug.
Updated dataset based on the laser scanning of three specimens of lunar soil simulants representing highland regions (LHS-1, AGK-2010, CHENOBI) and three specimens of lunar soil simulants representing mare regions (LMS-1, JSC-1A, OPRL2N). In previous studies, only a specimen of ilmenite was used as a lunar soil simulants. Measurements were executed using phase-shift and time-of-fly terrestrial laser scanners (Z + F IMAGER 5016, FARO Focus3D, and Leica ScanStation C10). The stored data contain radiometric information of point clouds from the measurement of lunar soil simulants. The data provide information on the effect of different types of simulants (mare and highland) on the absorption and dispersion of the laser beam. In overall, the dataset presented in this work can be used in investigation of the application of the laser technology in the measurement of lunar structures made of mare and highlands lunar regolith. Lunar highlands and mare regions are characterized by different physicochemical parameters. Therefore, both types of soil scatter the laser beam differently, what affects the range and accuracy of the laser measurements.
基于对代表高地地区的三种月球土壤模拟物(LHS - 1、AGK - 2010、CHENOBI)和代表月海地区的三种月球土壤模拟物(LMS - 1、JSC - 1A、OPRL2N)进行激光扫描得到的更新数据集。在先前的研究中,仅使用了钛铁矿标本作为月球土壤模拟物。测量是使用相移和飞行时间地面激光扫描仪(Z + F IMAGER 5016、FARO Focus3D和徕卡ScanStation C10)执行的。存储的数据包含来自月球土壤模拟物测量的点云辐射信息。这些数据提供了关于不同类型模拟物(月海和高地)对激光束吸收和散射影响的信息。总体而言,这项工作中呈现的数据集可用于研究激光技术在测量由月海和高地月壤制成的月球结构中的应用。月球高地和月海地区具有不同的物理化学参数。因此,这两种类型的土壤对激光束的散射方式不同,这会影响激光测量的范围和精度。