Earth topography and its subsurface are the result of complex interactions between tectonics and climate. Sediments in the shallow subsurface contain resources including water and energy that are vital for mankind. They also provide temporary and long-term waste and energy storage. At the same time active deformation and rapid climate change interact posing significant risk for natural hazards such as debris flow, hillslope instabilities, and active faulting. To address these pressing challenges in the realm of Earth-climate interactions, it is imperative to enhance our expertise in connecting extensive datasets with deterministic forward models. This session aims to bring together research on climate - surface processes - tectonics interactions across a wide range of spatial and temporal scales using big-data informed models focussing on fundamental questions: (1) What are the short- and long-term interactions of the tectonic-surface process feedback system? (2) What is the influence of on-going climate change on the frequency and magnitude of rapid geomorphic events such as landslides and debris flow and how is this influenced by surface morphology and environmental conditions? (3) How is the subsurface responding to short-term climate variability including anthropogenic climate change and how does this affect water and energy resources? (4) How do tectonic processes such as mountain building, continental rifting, and mantle flow respond to changes in global climatic events and surface-mass transfers and how do inherited structures control this response? (5) How can we integrate and exploit big data in the Earth sciences to better constrain coupled geodynamic, surface process, and climate models?
GD4
Understanding climate – surface processes – tectonics interactions using big data-informed models
Co-organized by GM7/TS4
Convener:
Ritske S. Huismans
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Co-conveners:
Delphine Rouby,
Magdalena Scheck-Wenderoth,
Bodo Bookhagen,
Hui Tang