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- W4322004529 abstract " Landscape Evolution Models (LEM) play a vital role in illustrating the complex landscaperesponses to various geomorphic processes. These models favour replicating various evolutionprocesses over an extensive range of temporal and spatial scales. LEMs are also suitable forsimulating the effect of volcanic activity on landscape features. Olympus Mons, the largestshield volcano in our solar system, acts as the perfect landform for this analysis. TharsisVolcanic Landforms on Mars, such as Olympus Mons and Tharsis Montes, are consideredanalogues of basaltic shield volcanoes on Earth. The shield volcanoes of Tharsis are comparedto terrestrial Hawaiian volcanoes and Deccan volcanism and are often interpreted as hotspotplume volcanism. The stream power incision model (SPIM) is used in landscape evolutionmodels to simulate river incisions. In this study, we utilised LandLab software to performnumerical evolution modelling on Olympus Mons. The initial topography of the researchregion is established using a DEM, and the maximum elevation of Olympus Mons is 21241.0metres. The erodibility (Ksp) value, based on the lithological and climatic conditions, is takenas 1 𝑀𝑎– ¹ under Hawaiian conditions considering the basaltic type rock property of Olympusmons. With a concavity index value of 0.5 and zero upliftment, the model is run for 100000years to observe its evolution. Our results reveal a change in the maximum elevation of 21241.0to 21179.68, i.e., 124 m, due to the process of erosion. The results give an idea about how theoriginal volcanic landform, like that of Hawaii, must have shaped into the present landformdue to various geomorphic factors. " @default.
- W4322004529 created "2023-02-26" @default.
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- W4322004529 date "2023-05-15" @default.
- W4322004529 modified "2023-10-16" @default.
- W4322004529 title "Landform Evolution Modelling of Volcanic Landforms using Landlab: A case study of Olympus Mons" @default.
- W4322004529 doi "https://doi.org/10.5194/egusphere-egu23-13051" @default.
- W4322004529 hasPublicationYear "2023" @default.
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