Embracing Large Language Model (LLM) Technologies in Hydrology Research
https://doi.org/10.31223/X58421 #EarthSciences #Hydrology
Summertime sediment storage on the Alaskan Beaufort Shelf and implications for ice-sediment rafting and shelf erosion
https://doi.org/10.31223/X5CX38 #PhysicalSciencesAndMathematics #Arctic #ContinentalShelf #Erosion #SedimentTransport
Thermogenic Methane Production in Antarctic Subglacial Hydrocarbon Seeps
https://doi.org/10.31223/X5HM89 #PhysicalSciencesAndMathematics #Antarctica #Subglacial #Methane #Hydrocarbon #PlanetaryAnalog
Collaborative Assessment of a Large-Scale Integrated Landscape Restoration Project in the Steep-Slope Regions of Central Africa
https://doi.org/10.31223/X5NF0S #Engineering #LifeSciences #Burundi #Terraces #Slow-formingTerraces #Participation #ProjectEvaluation #LandAndWaterManagement #LandscapePerception #LandscapeRestoration
Ediacaran coupling of climate and biosphere dynamics
https://doi.org/10.31223/X5S42P #Climate #Glaciology #Paleontology #Sedimentology #Stratigraphy #Ediacaran #EarthSystem #ClimateState #Glaciations
Solar control of global mean temperature outweighed since 1940s by anthropogenic warming (by airborne soot, not CO2): literature synthesis
https://doi.org/10.31223/X5WX49 #OceanographyAndAtmosphericSciencesAndMeteorology #HoloceneClimate #AnthropogenicWarming #GeographicallyHeterogenousWarming #AirborneSoot #EnergyPolicy
Hothouse hydrology: Evolving river dynamics in the Eocene Montllobat and Castissent Formations, Southern Pyrenees
https://doi.org/10.31223/X51M8Z #PhysicalSciencesAndMathematics #Sedimentology #Stratigraphy #Palaeohydrology #LandscapeDynamics #Climate #Tectonics
Mercury budget in global rivers at present-day: impacts from reservoirs and dams
https://doi.org/10.31223/X55B0D #Biogeochemistry #EarthSciences #EnvironmentalHealthAndProtection #EnvironmentalMonitoring #EnvironmentalSciences #WaterResourceManagement #Mercury #EarthSystemModel #Erosion #WaterManagement
Plausible global emissions scenario for the 2℃-target aligned with China’s net-zero pathway
https://doi.org/10.31223/X5942B #EarthSciences
Modern Cave Monitoring Informs Interpretations of Past Climate Change: Applications to Titan Cave, Wyoming
https://doi.org/10.31223/X52M88 #EarthSciences #EnvironmentalMonitoring #EnvironmentalSciences #Geochemistry #Geology #Geomorphology #Hydrology #Speleology
Is abyssal dark oxygen production even possible at all?
https://doi.org/10.31223/X5DT6P #Chemistry #EnvironmentalSciences #OceanographyAndAtmosphericSciencesAndMeteorology #PhysicalSciencesAndMathematics
Modern Cave Monitoring Informs Interpretations of Past Climate Change: Applications to Titan Cave, Wyoming
https://doi.org/10.31223/X52M88 #EarthSciences #EnvironmentalMonitoring #EnvironmentalSciences #Geochemistry #Geology #Geomorphology #Hydrology #Speleology
Persistent high-pressure magma storage beneath a near-ridge ocean island volcano (Isla Floreana, Galápagos)
https://doi.org/10.31223/X5JM8M #PhysicalSciencesAndMathematics #Galapagos #MantlePlume #MagmaStorage #VolcanicEvolution
Fracturing during freezing in salty ice: preliminary analysis using a low-cost model system
https://doi.org/10.31223/X5P994 #EarthSciences #Glaciology #PhysicalSciencesAndMathematics #IceShelves #Ice/oceanInteractions #GlaciologicalModelExperiments #IcePhysics
Fracturing during freezing in salty ice: preliminary analysis using a low-cost model system
https://doi.org/10.31223/X5P994 #EarthSciences #Glaciology #PhysicalSciencesAndMathematics #IceShelves #Ice/oceanInteractions #GlaciologicalModelExperiments #IcePhysics
A comment on the indicator capacity of Artemisia pollen in pre-Holocene paleoecology
https://doi.org/10.31223/X5T420 #Paleontology #Artemisia #PollenMorphology #BioclimaticFeatures #Paleoecology #Pre-holocene
Drastic Changes in Atmospheric CO2 Concentration Led to Biological Mass Extinction and Explosion
https://doi.org/10.31223/X5XT6B #EarthSciences #EnvironmentalSciences #Paleontology #DinosaurExtinctionTheory #AtmosphericCo2 #NetPrimaryProduction #EcologicalNiche #BiologicalMassExtinction #BiologicalExplosion #GlobalWarming #Geoengineering
Low computational cost stochastic Gassmann fluid substitution modelling of hydrogen and carbon dioxide in clastic storage reservoirs
https://doi.org/10.31223/X5QB0C #Geology #GeophysicsAndSeismology #Ccs #FluidSubstitution #QuantitativeSeismicModelling #Ukcs #Hydrogen #RockPhysics
Orange and Orange-Volcanoes: a New Open and Collaborative Platform to Perform Data-Driven Investigations and Machine Learning Analyses in Petrology and Volcanology
https://doi.org/10.31223/X5FT60 #EarthSciences #Geochemistry #MultivariateAnalysis #Volcanology #OrangeDataMining #Data-drivenInvestigations #IgneousPetrology #Volcanology #CompositionalDataAnalysis(coda) #MachineLearning
Detecting rapid lateral changes of upper mantle discontinuities using azimuth-dependent P-wave receiver functions and multimode surface waves
https://doi.org/10.31223/X5KM7J #PhysicalSciencesAndMathematics #ReceiverFunction #SurfaceWaves #Australia #Lithosphere-asthenosphereBoundary #Mid-lithosphericDiscontinuity #X-discontinuity
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