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Global thrust faulting on the Moon and the influence of tidal stresses

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dc.contributor.author Watters, Thomas R. en
dc.contributor.author Robinson, Mark S. en
dc.contributor.author Collins, Geoffrey C. en
dc.contributor.author Banks, Maria E. en
dc.contributor.author Daud, Katie en
dc.contributor.author Williams, Nathan R. en
dc.contributor.author Selvans, Michelle M. en
dc.date.accessioned 2015-10-01T14:31:51Z
dc.date.available 2015-10-01T14:31:51Z
dc.date.issued 2015
dc.identifier.citation Watters, Thomas R., Robinson, Mark S., Collins, Geoffrey C., Banks, Maria E., Daud, Katie, Williams, Nathan R., and Selvans, Michelle M. 2015. "<a href="https://repository.si.edu/handle/10088/27350">Global thrust faulting on the Moon and the influence of tidal stresses</a>." <em>Geology</em>. 43 (10):851&ndash;854. <a href="https://doi.org/10.1130/G37120.1">https://doi.org/10.1130/G37120.1</a> en
dc.identifier.issn 0091-7613
dc.identifier.uri http://hdl.handle.net/10088/27350
dc.description.abstract Lunar Reconnaissance Orbiter Camera images reveal a vast, globally distributed network of over 3200 lobate thrust fault scarps, making them the most common tectonic landform on the Moon. Based on their small scale and crisp appearance, crosscutting relations with small-diameter impact craters, and rates of infilling of associated small, shallow graben, these fault scarps are estimated to be younger than 50 Ma and may be actively forming today. The non-random distribution of the scarp orientations is inconsistent with isotropic stresses from late-stage global contraction as the sole source of stress. We propose that tidal stresses contribute significantly to the current stress state of the lunar crust. Orbital recession stresses superimposed on stresses from global contraction with the addition of diurnal tidal stresses result in non-isotropic compressional stress and thrust faults consistent with lobate scarp orientations. The addition of diurnal tidal stresses at apogee result in peak stresses that may help trigger coseismic slip events on currently active thrust faults on the Moon. en
dc.relation.ispartof Geology en
dc.title Global thrust faulting on the Moon and the influence of tidal stresses en
dc.type Journal Article en
dc.identifier.srbnumber 137426
dc.identifier.doi 10.1130/G37120.1
rft.jtitle Geology
rft.volume 43
rft.issue 10
rft.spage 851
rft.epage 854
dc.description.SIUnit NASM en
dc.description.SIUnit NASM-CEPS en
dc.description.SIUnit Peer-reviewed en
dc.citation.spage 851
dc.citation.epage 854


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