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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
frost action
Ice? Salt? Pressure? Sediment deformation structures as evidence of late-stage shallow groundwater in Gale crater, Mars Open Access
Winter weathering of fractured sedimentary rocks in a temperate climate: observation of freeze–thaw and thermal processes on the Niagara Escarpment, Hamilton, Ontario Open Access
Study on Stability Analysis of Soil-Rock-Mixture Slopes under Freeze-Thaw Erosion in Greater Khingan Mountains Open Access
Cavernous Decay of Granite and Granitic Gneiss, Central Dronning Maud Land, Antarctica Available to Purchase
Re-evaluation of the 1941 Rock Slide at Brilliant Cut, Pittsburgh, Pennsylvania Available to Purchase
Frost action and human occupation during the Late Pleistocene in the Italian Southern Alps: micromorphological evidences from the Caverna Generosa cave Available to Purchase
Breaking it Down: Mechanical Processes in the Weathering Engine Available to Purchase
The formation of gullies on Mars today Available to Purchase
Abstract A decade of high-resolution monitoring has revealed extensive activity in fresh Martian gullies. Flows within the gullies are diverse: they can be relatively light, neutral or dark, colourful or bland, and range from superficial deposits to 10 m-scale topographic changes. We observed erosion and transport of material within gullies, new terraces, freshly eroded channel segments, migrating sinuous curves, channel abandonment, and lobate deposits. We also observed early stages of gully initiation, demonstrating that these processes are not merely modifying pre-existing landforms. The timing of activity closely correlates with the presence of seasonal CO 2 frost, so the current changes must be part of ongoing gully formation that is driven largely by its presence. We suggest that the cumulative effect of many flows erodes alcoves and channels, and builds lobate aprons, with no involvement of liquid water. Instead, flows may be fluidized by sublimation of entrained CO 2 ice or other mechanisms. The frequent activity is likely to have erased any features dating from high-obliquity periods, so fresh gully geomorphology at middle and high latitudes is not evidence for past liquid water. CO 2 ice-driven processes may have been important throughout Martian geological history and their deposits could exist in the rock record, perhaps resembling debris-flow sediments. Supplementary material: Figures, animations and a summary table describing details of known gully activity are available at https://doi.org/10.6084/m9.figshare.c.3936886
Dune-slope activity due to frost and wind throughout the north polar erg, Mars Available to Purchase
Abstract Repeat, high-resolution imaging of dunes within the Martian north polar erg have shown that these dune slopes are very active, with alcoves forming along the dune brink each Mars year. In some areas, a few hundred cubic metres of downslope sand movement have been observed, sometimes moving the dune brink ‘backwards’. Based on morphological and activity-timing similarities of these north polar features to southern dune gullies, identifying the processes forming these features is likely to have relevance for understanding the general evolution/modification of dune gullies. To determine alcove-formation model constraints, we have surveyed seven dune fields, each over 1–4 Mars winters. Consistent with earlier reports, we found that alcove-formation activity occurs during the autumn–winter seasons, before or while the stable seasonal frost layer is deposited. We propose a new model in which alcove formation occurs during the autumn, and springtime sublimation activity then enhances the feature. Summertime winds blow sand into the new alcoves, erasing small alcoves over a few Mars years. Based on the observed rate of alcove erasure, we estimated the effective aeolian sand transport flux. From this, we proposed that alcove formation may account for 2–20% of the total sand movement within these dune fields. Supplementary material: A full listing of the HiRISE images used within this study and supplementary images, and analysis descriptions are available at https://doi.org/10.6084/m9.figshare.c.3936919
Rock Mass Characterization and Stability Evaluation of Mount Rushmore National Memorial, Keystone, South Dakota Available to Purchase
Development of a Rapid System To Diagnose Ground Settlement Available to Purchase
Evaluation of Rockfall-hazard Potential For Rockville, Utah, Following a 2013 Fatal Rockfall Available to Purchase
Utilization of Polymers To Improve Soft Clayey Soils Using the Deep Mixing Method Available to Purchase
Deciphering the role of solar-induced thermal stresses in rock weathering Available to Purchase
Resistance to weathering and retreatability of composite protective nanostructured coatings applied to Pendelikon marbles Available to Purchase
Abstract The protection of Pendelikon marbles to weathering has been the main aim of numerous and longstanding studies. Latest scientific approaches in the field of conservation include methods for self-cleaning surfaces that mimic natural phenomena. In our research, we have critically studied and implemented by means of nanotechnology, the development of a biomimetic composite, protective, hybrid nanostructured film. The mineral substrates have been coated with a fluorosilanic base matrix and furthermore top-coated with a nanostructured synthesis made from amorphous silicon dioxide, sprayed using the ‘alla prima’ technique. The behaviour of the composite protective coating has been evaluated in terms of wettability, retreatability and resistance to weathering.