DI026-07
Constraints on Thermal History of Mars from Depth of Pore Closure Below InSight

Tuesday, 15 December 2020: 10:24
Virtual
Szilard Gyalay, University of California Santa Cruz, Earth and Planetary Sciences, Santa Cruz, CA, United States, Francis Nimmo, University of California-Santa Cruz, Earth and Planetary Sciences, Santa Cruz, CA, United States, Ana-Catalina Plesa, German Aerospace Center (DLR), Berlin, Germany and Mark A Wieczorek, Observatoire de la Côte d'Azur, Nice, France
Abstract:
Planetary crusts undergo viscous closure of pores at depth; if the thickness of this porous layer can be measured, constraints on crustal thermal evolution can be derived. We apply a pore closure model developed for the Moon to Mars and take into account the geological processes that may alter the depth of this transition region. If the 8-11 km deep discontinuity in seismic wave speed detected by the InSight lander marks the base of the porous layer, the heat flux at the time the porosity was created must exceed 60 mW m-2, probably indicating a time prior to 4 Ga.