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Featured researches published by Tobias Hoerth.


Journal of Geophysical Research | 2014

In situ measurements of impact-induced pressure waves in sandstone targets

Tobias Hoerth; Frank Schäfer; Siegfried Nau; Jürgen Kuder; Michael H. Poelchau; Klaus Thoma; Thomas Kenkmann

In the present study we introduce an innovative method for the measurement of impact-induced pressure waves within geological materials. Impact experiments on dry and water-saturated sandstone targets were conducted at a velocity of 4600 m/s using 12 mm steel projectiles to investigate amplitudes, decay behavior, and speed of the waves propagating through the target material. For this purpose a special kind of piezoresistive sensor capable of recording transient stress pulses within solid brittle materials was developed and calibrated using a Split-Hopkinson pressure bar. Experimental impact parameters (projectile size and speed) were kept constant and yielded reproducible signal curves in terms of rise time and peak amplitudes. Pressure amplitudes decreased by 3 orders of magnitude within the first 250 mm (i.e., 42 projectile radii). The attenuation for water-saturated sandstone is higher compared to dry sandstone which is attributed to dissipation effects caused by relative motion between bulk material and interstitial water. The proportion of the impact energy radiated as seismic energy (seismic efficiency) is in the order of 10−3. The present study shows the feasibility of real-time measurements of waves caused by hypervelocity impacts on geological materials. Experiments of this kind lead to a better understanding of the processes in the crater subsurface during a hypervelocity impact.


Meteoritics & Planetary Science | 2013

The MEMIN research unit: Scaling impact cratering experiments in porous sandstones

Michael H. Poelchau; Thomas Kenkmann; Klaus Thoma; Tobias Hoerth; Anja Dufresne; Frank Schäfer


Meteoritics & Planetary Science | 2013

Hypervelocity impacts on dry and wet sandstone: Observations of ejecta dynamics and crater growth

Tobias Hoerth; Frank Schäfer; Klaus Thoma; Thomas Kenkmann; Michael H. Poelchau; Bernd Lexow; Alexander Deutsch


Meteoritics & Planetary Science | 2013

Crater morphology in sandstone targets: The MEMIN impact parameter study

Anja Dufresne; Michael H. Poelchau; Thomas Kenkmann; Alexander Deutsch; Tobias Hoerth; Frank Schäfer; Klaus Thoma


Meteoritics & Planetary Science | 2013

Ejection behavior characteristics in experimental cratering in sandstone targets

Frank Sommer; Fiona Reiser; Anja Dufresne; Michael H. Poelchau; Tobias Hoerth; Alexander Deutsch; Thomas Kenkmann; Klaus Thoma


Procedia Engineering | 2015

Momentum Transfer in Hypervelocity Impact Experiments on Rock Targets

Tobias Hoerth; Frank Schäfer; Jan Hupfer; Oliver Millon; Matthias Wickert


Icarus | 2014

Impact cratering experiments into quartzite, sandstone and tuff: The effects of projectile size and target properties on spallation

Michael H. Poelchau; Thomas Kenkmann; Tobias Hoerth; Frank Schäfer; Michael Rudolf; Klaus Thoma


Meteoritics & Planetary Science | 2018

Experimental impact cratering: A summary of the major results of the MEMIN research unit

Thomas Kenkmann; Alexander Deutsch; Klaus Thoma; Matthias Ebert; Michael H. Poelchau; Elmar Buhl; Eva-Regine Carl; Georg Dresen; Anja Dufresne; Nathanaël Durr; Lars Ehm; Christian U. Grosse; Max Gulde; Nicole Güldemeister; Christopher Hamann; Lutz Hecht; Stefan Hiermaier; Tobias Hoerth; Astrid Kowitz; Falko Langenhorst; Bernd Lexow; Hanns-Peter Liermann; Robert Luther; Ulrich Mansfeld; Dorothee Moser; Manuel Raith; Wolf Uwe Reimold; Martin Sauer; Frank Schäfer; Ralf Schmitt


International Journal of Impact Engineering | 2017

Hugoniot data of Seeberger sandstone up to 7 GPa

Tobias Hoerth; Frank Bagusat; Stefan Hiermaier


Rock Mechanics and Rock Engineering | 2016

Analysis of the Behavior of Sedimentary Rocks Under Impact Loading

Oliver Millon; Maria Luisa Ruiz-Ripoll; Tobias Hoerth

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Frank Schäfer

Fraunhofer Institute for High-Speed Dynamics

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Klaus Thoma

Fraunhofer Institute for High-Speed Dynamics

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Oliver Millon

Fraunhofer Institute for High-Speed Dynamics

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Siegfried Nau

Fraunhofer Institute for High-Speed Dynamics

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Stefan Hiermaier

Fraunhofer Institute for High-Speed Dynamics

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T. Kenkmann

University of Freiburg

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