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- W4366990570 abstract "<strong class=journal-contentHeaderColor>Abstract.</strong> Martian gullies are kilometer-scale geologically young features with a source alcove, transportation channel, and depositional fan. On the walls of impact craters, these gullies typically incise into bedrock or surfaces modified by latitude dependent mantle (LDM; inferred as consisting ice and admixed dust) and glaciation. To better understand the differences in alcoves and fans of gullies formed in different substrates and infer the flow types that led to their formation, we have analyzed the morphology and morphometry of 167 gully systems in 29 craters distributed between 30° S and 75° S. Specifically we measured length, width, gradient, area, relief, and relief ratio of alcove and fan, melton ratio, relative concavity index, and perimeter, form factor, elongation ratio and circularity ratio of the alcoves. Our study reveals that alcoves formed in LDM/glacial deposits are more elongated than the alcoves formed in bedrock, and possess a distinctive V-shaped cross section. We have found that mean gradient of fans formed by gullies sourced in bedrock is steeper than the mean gradient of fans of gullies sourced in LDM/glacial deposits. These differences between gullies were found to be statistically significant and discriminant analysis has confirmed that alcove perimeter, alcove relief and fan gradient are the most important variables for differentiating gullies according to their source substrates. The comparison between the melton ratio, alcove length and fan gradient of Martian and terrestrial gullies reveals that Martian gully systems were likely formed by terrestrial debris-flow like processes. It is likely that the present-day sublimation of CO<sub>2</sub> ice on Mars provided the adequate flow fluidization for the formation of deposits akin to terrestrial debris-flow like deposits." @default.
- W4366990570 created "2023-04-27" @default.
- W4366990570 creator A5024687141 @default.
- W4366990570 date "2023-04-25" @default.
- W4366990570 modified "2023-10-12" @default.
- W4366990570 title "Reply on RC2" @default.
- W4366990570 doi "https://doi.org/10.5194/esurf-2022-64-ac2" @default.
- W4366990570 hasPublicationYear "2023" @default.
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