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expansion
Understanding the behaviour of seismically derived Poisson's ratio in near-surface characterization
Magnetic contributions to corundum-eskolaite and corundum-hematite phase equilibria: A DFT cluster expansion study
Hydrogen occupation and hydrogen-induced volume expansion in Fe 0.9 Ni 0.1 D x at high P-T conditions
Molecular simulation of the adsorption of the hydration inhibitor N1,N1’-(ethane-1,2-diethyl)bis(N1-(2-aminoethyl)ethane-1,2-diamine onto montmorillonite
Effect of a Water Phase on the Swelling Pressure and Water Retention of an Unsaturated Bentonite–Sand Mixture with Insignificant Osmotic Suction
The origin of Patagonia: insights from Permian to Middle Triassic magmatism of the North Patagonian Massif
Bring Back Systematic Broadband Surface‐Wave Magnitude Practice
In-situ combustion front monitoring and tracking using InSAR
Swelling characteristics of bentonite after long-term dissolution in alkaline solution
Breaking it Down: Mechanical Processes in the Weathering Engine
Prediction for swelling deformation of fractal-textured bentonite and its sand mixtures in salt solution
Prediction of swelling characteristics of compacted GMZ bentonite in salt solution incorporating ion-exchange reactions
Origin and consequences of non-stoichiometry in iron carbide Fe 7 C 3
Hydrodynamic role of groundwater in bolide impact: Evidence from the Kentland structure, Indiana, USA
ABSTRACT The extremely important role of groundwater has been largely overlooked in studies of meteorite and comet impact processes. Beyond the radius of plasma generation, impacts can produce massive shattering in saturated porous rocks. Fluid pressure rise reduces rock strength and facilitates hydrofracture, to produce intraformational monomict breccias, faulting, and generation of mobile polymict breccia slurries. Decompression of a deep “transient” crater accounts for complex central uplift and gravitational collapse of tremendous slide blocks that in turn cause injection and ejection of fluidized breccia. As pore fluid pressures equilibrate, frictional strength increases, and the structural form is locked into stability. Evidence is reported here for Kentland, Indiana, where quarry rocks display relatively low pressure-temperature (elastic to ductile transition, 100 kb–100 °C) impact phases of the model of D. Stöffler. Breccias include monomict, polymict, mixed polymict-fault, and conventional fault types. The monomict breccias are associated with aquifer beds and formed by pervasive shockwave transmission on impact. Polymict breccias are derived from all rock types and formed from late stage injection-ejection pseudoviscous slurries. These processes can apply to similar impacts like Wells Creek, Flynn Creek, Decaturville, Sierra Madre, and many others.