Preprints

There are 4726 Preprints listed.

Preservation of autogenic processes and allogenic forcings within set-scale aeolian architecture I: numerical experiments

Travis Eric Swanson, David Mohrig, Gary Kocurek, et al.

Published: 2018-10-31
Subjects: Earth Sciences, Physical Sciences and Mathematics, Stratigraphy

A reduced complexity aeolian dune stratification model is developed and applied to explore the role of dune morphodynamics in the creation of synthetic sections of aeolian stratigraphy originating from three sets of environmental forcing: 1) steady wind transport capacity, 2) steady bed aggradation and variable wind transport capacity, and 3) steady wind transport capacity and bed aggradation. In [...]

New constraints from Central Chile on the origins of enriched continental compositions in thick-crusted arc magmas

Penny E Wieser, Stephen Judson Turner, Tamsin A Mather, et al.

Published: 2018-10-31
Subjects: Earth Sciences, Geochemistry, Physical Sciences and Mathematics, Volcanology

Magmas from continental arcs built on thick crust have elevated incompatible element abundances and “enriched” radiogenic isotope ratios compared to magmas erupted in island and continental arcs overlying thinner crust. The relative influence of the slab, mantle, and upper plate on this variability is heavily debated. The Andean Southern Volcanic Zone (SVZ; 33-46° S) is an ideal setting to [...]

Overpressure Transfer Through Interconnected Igneous Intrusions

Nick Schofield, Simon Paul Holford, Alex Edwards, et al.

Published: 2018-10-30
Subjects: Earth Sciences, Geology, Geophysics and Seismology, Physical Sciences and Mathematics, Tectonics and Structure, Volcanology

Paper looking at the transference of overpressure through interconnected igneous intrusions within sedimentary basins. The manuscript highlights the current under-recognized hazard in both scientific and hydrocarbon drilling in vicinity of subsurface igneous complexes.

Intermediate-magnitude postseismic slip follows intermediate-magnitude (M 4 to 5) earthquakes in California

Mohamed A. Alwahedi, Jessica Cleary Hawthorne

Published: 2018-10-29
Subjects: Earth Sciences, Geophysics and Seismology, Physical Sciences and Mathematics

The magnitude of postseismic slip is useful for constraining physical models of fault slip. Here we examine the postseismic slip following intermediate-magnitude (M 4 to 5) earthquakes by systematically analyzing data from borehole strainmeters in central and northern California. We assess the noise in the data and identify 36 records from 12 earthquakes that can be interpreted. We estimate [...]

Radiolysis via radioactivity is not responsible for rapid methane oxidation in subterranean air

Arndt Schimmelmann, Angel Fernandez Cortes, Soledad Cuezva, et al.

Published: 2018-10-29
Subjects: Earth Sciences, Geochemistry, Life Sciences, Physical Sciences and Mathematics

Atmospheric methane is rapidly lost when it enters humid subterranean critical and vadose zones (e.g., air in soils and caves). Because methane is a source of carbon and energy, it can be consumed by methanotrophic methane-oxidizing bacteria. As an additional subterranean sink, it has been hypothesized that methane is oxidized by natural radioactivity-induced radiolysis that produces energetic [...]

Mangrove pollen of Indonesia and its suitability as a sea-level indicator

Simon Engelhart, Benjamin Horton, David H. Roberts, et al.

Published: 2018-10-26
Subjects: Earth Sciences, Environmental Sciences, Geography, Physical and Environmental Geography, Physical Sciences and Mathematics, Social and Behavioral Sciences

We investigated the mangroves of Southeast Sulawesi, Indonesia, to assess their potential as proxies for reconstructing sea level during the Holocene. Initial investigations confirmed that the mangrove species demonstrate zonations parallel to the shoreline and are dominated by the family Rhizophoraceae with Avicennia, Heritiera and Sonneratia also important constituents of the mangroves. We [...]

Spectral Mixture Analysis as a Unified Framework for the Remote Sensing of Evapotranspiration

Daniel Sousa, Christopher Small

Published: 2018-10-25
Subjects: Earth Sciences, Environmental Monitoring, Environmental Sciences, Natural Resources and Conservation, Other Earth Sciences, Physical Sciences and Mathematics, Water Resource Management

This analysis proposes a unified framework for estimation of evapotranspiration (ET) using spectral mixture analysis (SMA) based on globally standardized substrate, vegetation, and dark (SVD) endmembers (EMs). Using all available Landsat 8 scenes from a month in the peak growing season (June) in a diverse 90 x 120 km region in northern California, we characterize the relationship between each of [...]

Flow-Substrate Interactions in Aggrading and Degrading Submarine Channels

Anjali M Fernandes, James Buttles, David Mohrig

Published: 2018-10-24
Subjects: Civil and Environmental Engineering, Earth Sciences, Engineering, Geology, Geomorphology, Other Civil and Environmental Engineering, Physical Sciences and Mathematics, Sedimentology, Stratigraphy

Connecting real time measurements of current-bed interactions to the temporal evolution of submarine channels can be extremely challenging in natural settings. We present a suite of physical experiments that offer insight into the spectrum of interactions between turbidity currents and their channels, from (i) detachment-limited erosion to (ii) transport-limited erosion to (iii) pure deposition. [...]

Volume transports and temperature distributions in the main Arctic Gateways: A comparative study between an ocean reanalysis and mooring-derived data

Marianne Pietschnig, Michael Mayer, Takamasa Tsubouchi, et al.

Published: 2018-10-24
Subjects: Oceanography, Oceanography and Atmospheric Sciences and Meteorology, Physical Sciences and Mathematics

Oceanic transports through the Arctic gateways represent an integral part of the polar climate system, but comprehensive in-situ-based estimates of this quantity have been lacking in the past. New observation-based estimates of oceanic volume, temperature and freshwater transports have recently become available. Those estimates have been derived from moored observations in the four major gateways [...]

Initiation and Arrest of Earthquake Ruptures due to Elongated Overstressed Regions

Martin Galis, Jean Paul Ampuero, Paul Martin Mai, et al.

Published: 2018-10-23
Subjects: Earth Sciences, Geophysics and Seismology, Physical Sciences and Mathematics

The initiation of natural and induced earthquakes is promoted in fault areas where the shear stress is close to fault strength. In many important situations, these overstressed fault areas (or “asperities”) are very elongated; for example, in the case of a fault intersecting a reservoir subject to fluid-injection, or the stress concentration along the bottom of a seismogenic zone induced by deep [...]

An Evaluation between Time-term, Reciprocal Time and Refraction Tomography Analysis Methods for obtaining 2-D shallow Seismic Velocity Models over Synthetic Traveltimes

Ahmed Jaddoa Al-Heety

Published: 2018-10-22
Subjects: Earth Sciences, Geophysics and Seismology, Physical Sciences and Mathematics

Shallow seismic refraction is the principal geophysical method for environmental and engineering site investigations to image the shallow subsurface. We present an assessment of three inversion methods, namely Time-Term inversion, Reciprocal Time methods and Refraction tomography inversion by using commercial software (SeisImager™) by using a synthetic first-arrival-time dataset that was made by [...]

SSPipeline: A pipeline for estimating and characterizing uncertainty in coastal storm surge levels

John Letey, Mingxuan Zhang, Tony Wong

Published: 2018-10-22
Subjects: Computer Sciences, Engineering, Numerical Analysis and Scientific Computing, Physical Sciences and Mathematics, Statistical Models, Statistics and Probability

Effective management of coastal risks demands projections of flood hazards that account for a wide variety of potential sources of uncertainty. Two typical approaches for estimating flood hazards include (1) direct physical process-based modeling of the storms themselves and (2) statistical modeling of the distributions and relevant characteristics of extreme sea level events. Recently, flexible [...]

Disruption of Long-Term Effusive-Explosive Activity at Santiaguito, Guatemala

Oliver Lamb, Anthony Lamur, Alejandro Díax-Moreno, et al.

Published: 2018-10-19
Subjects: Earth Sciences, Geophysics and Seismology, Physical Sciences and Mathematics, Volcanology

Rapid transitions in eruptive activity during lava dome eruptions pose significant challenges for monitoring and hazard assessment efforts. A comprehensive understanding of the dynamic evolution of active lava dome systems requires extensive multi-parametric datasets to fully constrain and understand rapid shifts in eruptive behavior, but few such datasets have been compiled. The Santiaguito lava [...]

Advancing global flood hazard simulations by improving comparability, benchmarking, and integration of global flood models

Jannis Hoch, Mark Trigg

Published: 2018-10-19
Subjects: Earth Sciences, Hydrology, Physical Sciences and Mathematics

In recent years, a range of global flood models (GFMs) were developed, each utilizing different process descriptions as well as validation data sets and methods. To quantify the magnitude of these differences, studies assessed the performance of GFMs on the continental and catchment level. Since the default models set-ups resulted in locally marked [...]

Natural and Anthropogenic Controls on Wood Loads in River Corridors of the Rocky, Cascade, and Olympic Mountains, USA

Daniel Scott, Ellen Wohl

Published: 2018-10-18
Subjects: Earth Sciences, Geomorphology, Physical Sciences and Mathematics

Wood in rivers creates habitat, shapes the morphology of valley bottoms, and acts as a pool of organic carbon (OC). Effective riverine wood management depends on a robust understanding of the spatial distribution of wood throughout river networks. This motivates the analysis of wood load in relation to both reach- and basin-scale processes. We present wood load data coupled with precipitation, [...]

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