Preprints

Filtering by Subject: Physical Sciences and Mathematics

Terrestrial environmental change across the onset of the PETM and the associated impact on biomarker proxies: a cautionary tale

Gordon Neil Inglis, Alex Farnsworth, Margaret Collinson, et al.

Published: 2019-04-29
Subjects: Biogeochemistry, Earth Sciences, Geochemistry, Geology, Physical Sciences and Mathematics

The Paleocene-Eocene Thermal Maximum (PETM; ~ 56 million years ago (Ma) is the most severe carbon cycle perturbation event of the Cenozoic. Although the PETM is associated with warming in both the surface (~up to 8°C) and deep ocean (~up to 5°C), there are relatively few terrestrial temperature estimates from the onset of this interval. The associated response of the hydrological cycle during the [...]

A long-term, high-latitude record of Eocene hydrological change in the Greenland region

Gordon Neil Inglis, Matthew Carmichael, Alex Farnsworth, et al.

Published: 2019-04-26
Subjects: Biogeochemistry, Earth Sciences, Geochemistry, Geology, Physical Sciences and Mathematics

A range of proxy approaches have been used to reconstruct short-term changes to Earth’s hydrological cycle during the early Eocene hyperthermals. However, little is known about the response of Earth’s hydrological and biogeochemical systems to long-term Cenozoic cooling, which began following the Early Eocene Climatic Optimum (53.3 – 49.4 million years ago; Ma). Here, we use the molecular [...]

Stratigraphy of Architectural Elements of a Buried Monogenetic Volcanic System and Implications for Geoenergy Exploration

Alan Bischoff, Andrew Nicol, Jim Cole, et al.

Published: 2019-04-26
Subjects: Earth Sciences, Geology, Physical Sciences and Mathematics

Large volumes of magma emplaced and deposited within sedimentary basins can have an impact on their architectural style and geological evolution. Over the last decade, continuous improvement in techniques such as seismic volcano-stratigraphy and 3D seismic visualization of igneous rocks buried in sedimentary basins has helped increase knowledge about these “volcanic basins”. Here, we unravel the [...]

Application of multivariate statistical methods to hydrogeological property parameterisation from geotechnical and geophysical data

Gareth Digges La Touche, Sarah Alexander, Jo Birch, et al.

Published: 2019-04-26
Subjects: Earth Sciences, Environmental Sciences, Geology, Hydrology, Other Earth Sciences, Physical Sciences and Mathematics, Water Resource Management

Hydrogeological data sets are often relatively sparse compared to the scale of investigation, resulting in degrees of uncertainty which, although constrained, may be considered as not acceptable for achieving the desired precision in numerical modelling. The potential use of multivariate statistical methods in identifying correlations between geotechnical properties of the rock mass and hydraulic [...]

Bayesian parameter estimation for space and time interacting earthquake rupture model using historical and physics-based simulated earthquake catalogs

Luis Ceferino, Percy Galvez, Jean Paul Ampuero, et al.

Published: 2019-04-25
Subjects: Civil and Environmental Engineering, Civil Engineering, Earth Sciences, Engineering, Geophysics and Seismology, Physical Sciences and Mathematics, Risk Analysis

This paper presents a robust parameter estimation technique for a probabilistic earthquake hazard model that captures time and space interactions between earthquake mainshocks. The approach addresses the existing limitations of parameter estimation techniques by developing a Bayesian formulation and leveraging physics-based simulated synthetic catalogs to expand the limited datasets of historical [...]

Influence of dissolution on frictional properties of carbonate faults

Hadrien Rattez, Fabrizio Disidoro, Jean Sulem, et al.

Published: 2019-04-25
Subjects: Civil and Environmental Engineering, Civil Engineering, Earth Sciences, Engineering, Geophysics and Seismology, Physical Sciences and Mathematics

Velocity stepping experiments have been performed on a simulated calcite gouge using an annular shear apparatus to investigate the effect of dissolution on the frictional properties of a carbonate fault. The tested material was put in contact with hydrochloric acid at different concentration in order to dissolve the grains. Particle size analysis shows that the small grains tend to disappear due [...]

A heuristic model inversion for coupled thermo-hydro-mechanical modeling of triaxial experiments

Jack Lin, Mustafa Sari, Sotiris Alevizos, et al.

Published: 2019-04-25
Subjects: Applied Mathematics, Civil and Environmental Engineering, Engineering, Geotechnical Engineering, Physical Sciences and Mathematics

As multiphysics geomechanical models get developed, their increasing complexity and number of parameters make it particularly difficult to calibrate against experimental data. In this contribution, we present a heuristic workflow to invert for parameters of a coupled Thermo-Hydro-Mechanical (THM) model in a way that helps the theoretical modellers refine their definition of the underlying [...]

Radiation Hazard evaluation and spatial dose rate mapping in mineralized region of Siwaliks: A case study from Una, Kangra and Hamirpur distt, Himachal Pradesh, India.

Pragya Pandit, Dibakar Ghosh

Published: 2019-04-25
Subjects: Environmental Health and Protection, Environmental Sciences, Physical Sciences and Mathematics

The following work is a part of wider uranium prospecting programme of the Atomic Mineral Directorate for Exploration and Research (AMD) for mapping radioactive anomalies in mineralized regions of Siwalik, Himachal Pradesh. This study reports the analysis of average activity concentration, potential radiological hazards; radium equivalent activity (Raeq), external hazard index (Hex), internal [...]

The Incredible Lightness of Water Vapor

Da Yang, Seth Seidel

Published: 2019-04-25
Subjects: Climate, Oceanography and Atmospheric Sciences and Meteorology, Physical Sciences and Mathematics

The molar mass of water vapor is significantly less than that of dry air. This makes a moist parcel lighter than a dry parcel of the same temperature and pressure. This effect is referred to as the vapor buoyancy effect and has often been overlooked in climate studies. We propose that this effect increases Earths outgoing longwave radiation (OLR) and stabilizes Earths climate. We illustrate this [...]

A physics-based approach of deep interseismic creep for viscoelastic strike-slip earthquake cycle models

Lucile Bruhat

Published: 2019-04-25
Subjects: Earth Sciences, Geophysics and Seismology, Physical Sciences and Mathematics

Most geodetic inversions of surface deformation rates consider the depth distribution of interseismic fault slip-rate to be time invariant. However, some numerical simulations show down-dip penetration of dynamic rupture into regions with velocity-strengthening friction, with subsequent up-dip propagation of the locked-to-creeping transition. Recently, Bruhat & Segall (2017) developed a new [...]

The El Niño – La Niña cycle and recent trends in supply and demand of net primary productivity in African drylands

Abdulhakim M Abdi, Anton Vrieling, G. T. Yengoh, et al.

Published: 2019-04-24
Subjects: Climate, Environmental Sciences, Geography, Nature and Society Relations, Oceanography and Atmospheric Sciences and Meteorology, Physical and Environmental Geography, Physical Sciences and Mathematics, Remote Sensing, Social and Behavioral Sciences

The role of El Niño-Southern Oscillation (ENSO) in the balance between supply and demand of net primary productivity (NPP) over Africa is unclear. Here, we analyze the impact of ENSO on this balance in a spatially explicit framework using gridded population data from the WorldPop project, satellite-derived data on NPP supply, and statistical data from the United Nations. Our analyses demonstrate [...]

Anomalous structure of MgCO3 liquid and the buoyancy of carbonatite melts

Sean M. Hurt, Aaron S. Wolf

Published: 2019-04-23
Subjects: Earth Sciences, Geochemistry, Mineral Physics, Physical Sciences and Mathematics

MgCO3 is one of the most important components of mantle-derived carbonatite melts, and yet also one of the most difficult to study experimentally. Attempts to constrain its thermodynamic properties are hampered by decarbonation, which occurs at only ~500 °C, far below its metastable 1 bar melting temperature. Molecular dynamic simulations, however, can predict the thermodynamic properties of the [...]

Field and LiDAR data observations of erosion on anthropogenic valley fills and associated landscape produced by mountaintop removal/valley fill coal mining in Central Appalachia

Miles Reed, Steve Kite

Published: 2019-04-19
Subjects: Earth Sciences, Geomorphology, Physical Sciences and Mathematics

Mountaintop removal/valley fill coal mining (MTR/VF) in Central Appalachia has buried an estimated 4000 km of headwater streams, but the geomorphic implications of the constructed anthropogenic valley fills and associated mined landscape have been studied very little. This landscape requires no maintenance in perpetuity once reclamation is considered to be complete. The first ever field-based [...]

High-angular resolution electron backscatter diffraction as a new tool for mapping lattice distortion in geological minerals

David Wallis, Lars Hansen, T. Ben Britton, et al.

Published: 2019-04-19
Subjects: Earth Sciences, Geology, Mineral Physics, Physical Sciences and Mathematics

Analysis of distortions of the crystal lattice within individual mineral grains is central to the investigation of microscale processes that control and record tectonic events. These distortions are generally combinations of lattice rotations and elastic strains, but a lack of suitable observational techniques has prevented these components being mapped simultaneously and routinely in earth [...]

Route Schematization With Polygonal Landmarks

Marcelo Galvao, Angela Schwering, Jakub Krukar, et al.

Published: 2019-04-19
Subjects: Geographic Information Sciences, Geography, Physical Sciences and Mathematics, Social and Behavioral Sciences

GPS-based navigation devices use large-scale visualizations of the route, where the focus lies on turn instructions. Although efficient on the wayfinding task, this approach does not support survey knowledge acquisition, which is essential for the user to build up a cognitive map and obtain orientation. Another visualization option is the small-scale topographic overview of the route. However, [...]

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