Filtered Diviner Regolith Temperature Datasets for: A Microphysical Thermal Model for the Lunar Regolith: Investigating the Latitudinal Dependence of Regolith Properties
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https://zenodo.org/record/8433836
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Related Publication: Bürger, J., Hayne, P. O., Gundlach, B., Läuter, M., Kramer, T., & Blum, J. (2024). A microphysical thermal model for the lunar regolith: Investigating the latitudinal dependence of regolith properties. Journal of Geophysical Research: Planets, 129, e2023JE008152. https://doi.org/10.1029/2023JE008152
Dataset: Filtered Diviner regolith temperature data for maria and highlands. The filter is based on albedo, rock abundance and local slope (details see related publication). The Diviner regolith temperatures as a function of local time are collected for every latitude \(\pm \)0.5° at the pixels selected by the above described filter. The arrays contain the binned and averaged values.File Description: Each array contains the mean local time (expressed in hours after noon), mean regolith temperature and corresponding latitude
Data_array_Highlands_individual_latitudes.npy: Dataset for the highlands containing local time (expressed in hours after noon) and mean regolith temperature for every latitude \(\pm \)0.5° between -79° and +79°.
Data_array_Highlands_combined_latitudes.npy: Assuming that the regolith properties are the same in the northern and southern hemispheres, the data for negative and positive latitudes are combined.
Data_array_Maria_individual_latitudes.npy: Dataset for the maria containing local time (expressed in hours after noon) and mean regolith temperature for every latitude \(\pm \)0.5° between -60° and +60°.
Data_array_Maria_combined_latitudes.npy: Assuming that the regolith properties are the same in the northern and southern hemispheres, the data for negative and positive latitudes are combined.
创建时间:
2024-03-21



