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Sparse Ambient Resonance Measurements Reveal Dynamic Properties of Freestanding Rock Arches.

Authors :
Geimer, Paul R.
Finnegan, Riley
Moore, Jeffrey R.
Source :
Geophysical Research Letters. 5/16/2020, Vol. 47 Issue 9, p1-9. 9p.
Publication Year :
2020

Abstract

The dynamic properties of freestanding rock landforms are a function of fundamental material and mechanical parameters, facilitating noninvasive vibration‐based structural assessment. Characterization of resonant frequencies, mode shapes, and damping ratios, however, can be challenging at culturally sensitive geologic features, such as rock arches, where physical access is limited. Using sparse ambient vibration measurements, we describe three resonant modes between 1 and 40 Hz for 17 natural arches in Utah spanning a range of lengths from 3–88 m. Modal polarization data are evaluated to combine field observations with 3‐D numerical models. We find outcrop‐scale elastic moduli vary from 0.8 to 8.0 GPa, correlated with diagenetic processes and identify low damping at all sites. Correlation of dense‐array measurements from one arch validates predictions of simple bending modes and fixed boundary conditions. Our results establish use of sparse ambient resonance measurements for structural assessment and monitoring of arches and similar freestanding geologic features worldwide. Plain Language Summary: Natural rock arches vibrate under ambient conditions with a unique set of frequencies controlled by geometry, host material, and interactions with nearby bedrock. Recent rockfall events at well‐known arches in Utah have highlighted the need to develop noninvasive assessment methods to better understand how these sensitive landforms evolve. To reduce site impacts, we employed limited instrumentation to measure ambient vibrations of 17 arches across Utah for identification of resonant frequencies. We combine direct observations with predictive numerical models to visualize resonant mode shapes and describe the controlling material properties and structural boundaries. In defining the first three modes of each site, we are able to characterize dynamic properties at arches encompassing several geologic formations and a range of length scales. These results establish a versatile method for structural evaluations of arches and other significant freestanding geologic features. Key Points: Single‐station ambient vibration data and numerical modeling describe the dynamic response of natural arches with limited site accessDense seismic array directly resolves resonant mode shapes, validating predictions of simple bending modes and fixed boundary conditionsSandstone arches in Utah resonate between 1 and 40 Hz, exhibit low damping, and have stiffness that vary with diagenetic conditions [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00948276
Volume :
47
Issue :
9
Database :
Academic Search Index
Journal :
Geophysical Research Letters
Publication Type :
Academic Journal
Accession number :
143197579
Full Text :
https://doi.org/10.1029/2020GL087239