[HTML][HTML] Landlab v2. 0: A software package for Earth surface dynamics

KR Barnhart, EWH Hutton, GE Tucker… - Earth Surface …, 2020 - esurf.copernicus.org
Numerical simulation of the form and characteristics of Earth's surface provides insight into
its evolution. Landlab is an open-source Python package that contains modularized …

CSDMS: a community platform for numerical modeling of Earth surface processes

GE Tucker, EWH Hutton, MD Piper… - Geoscientific Model …, 2022 - gmd.copernicus.org
Computational modeling occupies a unique niche in Earth and environmental sciences.
Models serve not just as scientific technology and infrastructure but also as digital containers …

[HTML][HTML] Modeling soil and landscape evolution–the effect of rainfall and land-use change on soil and landscape patterns

WM van der Meij, AJAM Temme, J Wallinga… - Soil, 2020 - soil.copernicus.org
Humans have substantially altered soil and landscape patterns and properties due to
agricultural use, with severe impacts on biodiversity, carbon sequestration and food security …

Multi-objective optimisation of a rock coast evolution model with cosmogenic 10Be analysis for the quantification of long-term cliff retreat rates

JR Shadrick, MD Hurst, MD Piggott… - Earth Surface …, 2021 - esurf.copernicus.org
This paper presents a methodology that uses site-specific topographic and cosmogenic 10
Be data to perform multi-objective model optimisation of a coupled coastal evolution and …

CHONK 1.0: landscape evolution framework: cellular automata meets graph theory

B Gailleton, LC Malatesta… - Geoscientific Model …, 2024 - gmd.copernicus.org
Landscape evolution models (LEMs) are prime tools for simulating the evolution of source-to-
sink systems through ranges of spatial and temporal scales. A plethora of various empirical …

Multiscale topographic complexity analysis with pyTopoComplexity

LSH Lai, AM Booth, AR Duvall, E Herzig - EGUsphere, 2024 - egusphere.copernicus.org
pyTopoComplexity is a Python package designed for efficient and customizable
quantification of topographic complexity using four advanced methods: two-dimensional …