Preprints

Filtering by Subject: Physical Sciences and Mathematics

Depositional processes, bedform development and hybrid bed formation in rapidly decelerated cohesive (mud–sand) sediment flows

Jaco H Baas, James L Best, Jeff Peakall

Published: 2018-01-15
Subjects: Earth Sciences, Physical Sciences and Mathematics, Sedimentology

Flows with high suspended sediment concentrations are common in many sedimentary environments, and their flow properties may show a transitional behaviour between fully turbulent and quasi-laminar plug flows. The characteristics of these transitional flows are known to be a function of both clay concentration and type as well as the applied fluid stress, but so far the interaction of these [...]

A phase diagram for turbulent, transitional and laminar clay suspension flows

Jaco H Baas, James L Best, Jeff Peakall, et al.

Published: 2018-01-15
Subjects: Earth Sciences, Physical Sciences and Mathematics, Sedimentology

New phase diagrams for the dynamic structure of clay-laden open-channel flows are proposed. These diagrams can be used to distinguish between turbulent Newtonian, transitional, and laminar non-Newtonian flow behavior, on the basis of the balance between turbulent forces (approximated by the horizontal components of flow velocity and turbulence intensity) and cohesive forces (approximated by the [...]

Relict topography within the Hangay Mountains in central Mongolia: Quantifying long-term exhumation and relief change in an old landscape

Kalin T. McDannell, Peter K. Zeitler, Bruce D. Idleman

Published: 2018-01-14
Subjects: Earth Sciences, Geochemistry, Geology, Geomorphology, Physical Sciences and Mathematics, Tectonics and Structure

The Hangay Mountains are a high-elevation, low-relief landscape within the greater Mongolian Plateau of central Asia. New bedrock apatite (U-Th)/He single-grain ages from the Hangay span ~70 to 200 Ma, with a mean of 122.7 ± 24.0 Ma (2σ). Detrital apatite samples from the Selenga and Orkhon Rivers, north of the mountains, yield dominant (U-Th)/He age populations of ~115 to 130 Ma, as well as an [...]

Cenozoic tectonics of the Tuz Gölü Basin (Central Anatolian Plateau, Turkey)

David Fernández-Blanco, Giovanni Bertotti, Attila Çiner

Published: 2018-01-13
Subjects: Earth Sciences, Geology, Physical Sciences and Mathematics

We present a new 3D geologic model for the architecture and Cenozoic tectonic evolution of the Tuz Gölü Basin, a major sedimentary basin in the Central Anatolian orogenic plateau. This model is grounded on 7 depth-converted seismic reflection profiles in combination with the analysis of backstripped subsidence curves, isochore maps, and a palinspastically restored cross-section. Two stages of [...]

Climate-driven unsteady denudation and sediment flux in a high-relief unglaciated catchment-fan using 26Al and 10Be: Panamint Valley, California

Cody Mason, Brian Romans

Published: 2018-01-13
Subjects: Earth Sciences, Geochemistry, Geology, Geomorphology, Physical Sciences and Mathematics, Sedimentology

Environmental changes within erosional catchments of sediment routing systems are predicted to modulate sediment transfer dynamics. However, empirical and numerical models that predict such phenomena are difficult to test in natural systems over multi-millennial timescales. Tectonic boundary conditions and climate history in the Panamint Range, California, are relatively well-constrained by [...]

A consistent global approach for morphometric characterisation of subaqueous landslides

Michael Andrew Clare, Christopher Aiden-Lee Jackson, David Voelker, et al.

Published: 2018-01-12
Subjects: Earth Sciences, Geology, Geophysics and Seismology, Life Sciences, Physical Sciences and Mathematics, Sedimentology, Stratigraphy

Landslides are common in aquatic settings worldwide, from lakes and coastal environments to the deep-sea. Fast-moving, large volume landslides can potentially trigger destructive tsunamis. Landslides damage and disrupt global communication links and other critical marine infrastructure. Landslide deposits act as foci for localised, but important deep-seafloor biological communities. Under burial, [...]

Exploring carbonate reef flat hydrodynamics and potential formation and growth mechanisms for motu

Alejandra Ortiz, Andrew D. Ashton

Published: 2018-01-11
Subjects: Earth Sciences, Geomorphology, Oceanography and Atmospheric Sciences and Meteorology, Physical Sciences and Mathematics

Atolls, which develop as reef-building coral platforms extend to near sea level, typically consist of a shallow reef flat encircling a central lagoon. Often, sub-aerial islets, known as motu or reef islands, consisting of sand, gravel, and coral detritus, can be found perched on the reef flat. Here, we use hydrodynamic numerical modeling (XBeach) to better understand the role of waves and [...]

The effect of meteoric phreatic diagenesis and spring sapping on the formation of submarine collapse structures in the Biak Basin, Eastern Indonesia

David Patrick Gold

Published: 2018-01-11
Subjects: Earth Sciences, Geomorphology, Physical Sciences and Mathematics

The islands of Biak and Supiori, situated in the Bird’s Head region of New Guinea, comprise predominantly Neogene age carbonate units that extend offshore into the adjacent Biak Basin. Unusual geomorphologic features including pockmarks, headless canyons and semi-circular collapse structures identified in multibeam bathymetric imagery occur on the southern margin of the Biak Basin. These [...]

Local and Remote Influences on the Heat Content of the Labrador Sea: an Adjoint Sensitivity Study

Dan Jones, Gael Forget, Bablu Sinha, et al.

Published: 2018-01-11
Subjects: Oceanography, Oceanography and Atmospheric Sciences and Meteorology, Physical Sciences and Mathematics

The Labrador Sea is one of the few regions on the planet where the interior ocean can exchange heat directly with the atmosphere via strong, localized, wintertime convection, with possible implications for the state of North Atlantic climate and global surface warming. Using an observationally-constrained ocean adjoint model, we find that annual mean Labrador Sea heat content is sensitive to [...]

Upscaling permeability in anisotropic volcanic systems

Jamie Ian Farquharson, Fabian Wadsworth

Published: 2018-01-11
Subjects: Earth Sciences, Physical Sciences and Mathematics, Volcanology

Permeability is an increasingly prevalent metric included in volcano modelling; however, it is a property that can exhibit anisotropy in volcanic environments. Permeability of a layered medium can be described by the arithmetic or harmonic means of the permeabilities of the constituent units, depending on the orientation of flow with respect to layering (i.e. flow parallel or perpendicular to [...]

Leaf trait acclimation amplifies simulated climate warming in response to elevated carbon dioxide

Marlies Kovenock, Abigail L.S. Swann

Published: 2018-01-10
Subjects: Earth Sciences, Ecology and Evolutionary Biology, Environmental Sciences, Life Sciences, Physical Sciences and Mathematics, Physiology, Plant Sciences

Vegetation modifies Earth’s climate by controlling the fluxes of energy, carbon, and water. Of critical importance is a better understanding of how vegetation responses to climate change will feedback on climate. Observations show that plant traits respond to elevated carbon dioxide concentrations. These plant trait acclimations can alter leaf area and thus productivity and surface energy fluxes. [...]

Linked Geoscience Data in practice: Where W3C standards meet domain knowledge, data visualization and OGC standards

Xiaogang Ma

Published: 2018-01-10
Subjects: Computer Sciences, Earth Sciences, Geology, Physical Sciences and Mathematics

The geoscience community is now facing both the challenge and the opportunity caused by the vast amount of datasets that can be made available on the Web. An efficient “data environment” on the Web has the potential to enable geoscientists to conduct their research in ways that never existed before. Standards developed by the Open Geospatial Consortium have already been used widely to build data [...]

Moisture balance over the Iberian Peninsula according to a regional climate model: The impact of 3DVAR data assimilation.

Santos J. González-Rojí, Jon Saenz, Gabriel Ibarra-Berastegi, et al.

Published: 2018-01-10
Subjects: Atmospheric Sciences, Climate, Meteorology, Oceanography and Atmospheric Sciences and Meteorology, Physical Sciences and Mathematics

An analysis of the atmospheric branch of the hydrological cycle by means of a 15 km resolution numerical integration performed using WRF nested in ERA Interim is presented. Two WRF experiments covering the period 2010-2014 were prepared. The first one (N) was configured as in standard numerical downscaling experiments. The second one (D), with the same parameterizations, included a step of 3DVAR [...]

River Restoration Design Framework

Shawn Michael Chartrand, Marwan Hassan

Published: 2018-01-10
Subjects: Environmental Sciences, Natural Resources and Conservation, Physical Sciences and Mathematics

This preprint provides a design framework for river restoration and enhancement efforts. The preprint will be of interest to watershed stakeholder groups, jurisdictional permitting staff and river restoration practitioners.

Protected Places: A Survey of Laws on Archaeological Site and Cave Location Confidentiality and Their Potential Impact on Library Reference Policies and Services

Linda Zellmer

Published: 2018-01-09
Subjects: Earth Sciences, Library and Information Science, Other Earth Sciences, Physical Sciences and Mathematics, Social and Behavioral Sciences

Librarians who work with maps and other forms of spatial information are often asked for information about the location of a place. These questions can range from the location of a village or farm where an ancestor lived to more cryptic questions, such as the location of the Garden of Eden based on its Biblical description. Most librarians will attempt to answer locational questions by directing [...]

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