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Energy and CO2 Footprint of Climate Model Intercomparison Projects
arXiv: Computers and SocietyInternationalHigh confidence1 min
What changed
Earth System Models (ESMs) used in climate research, particularly for Model Intercomparison Projects (MIPs), are increasingly reliant on High-Performance Computing (HPC) resources. Their computational demands are escalating due to finer spatial resolutions, integration of complex biogeochemical processes, and larger climate ensembles to manage uncertainty. This growth in computational intensity contributes to higher energy consumption and associated carbon footprints, as increases in peak computing performance have historically outpaced energy efficiency improvements, and the environmental costs of these projects are not yet adequately quantified.
Why it matters
Understanding and quantifying the energy and carbon footprint of computational climate modeling is crucial for sustainable research practices and effective resource allocation. The escalating demand for computing power necessitates strategic planning to mitigate environmental impacts while advancing critical climate science.
What to watch
Earth System Models (ESMs) are highly dependent on High-Performance Computing (HPC) resources for global climate simulation.
Forward consideration, not a verified fact.
Reported by arXiv: Computers and Society, International. The document itself is not reproduced here.
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