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dc.contributor.author
Rawlinson, Nicholas
dc.contributor.author
Fichtner, Andreas
dc.contributor.author
Sambridge, Malcolm
dc.contributor.author
Young, Mallory K.
dc.contributor.editor
Dmowska, Renata
dc.date.accessioned
2023-10-19T13:10:08Z
dc.date.available
2017-06-11T14:54:02Z
dc.date.available
2023-10-19T12:19:24Z
dc.date.available
2023-10-19T13:10:08Z
dc.date.issued
2014
dc.identifier.isbn
978-0-12-800371-8
en_US
dc.identifier.isbn
978-0-12-800272-8
en_US
dc.identifier.issn
0065-2687
dc.identifier.other
10.1016/bs.agph.2014.08.001
en_US
dc.identifier.uri
http://hdl.handle.net/20.500.11850/94982
dc.description.abstract
Seismic tomography is a powerful tool for illuminating Earth structure across a range of scales, but the usefulness of any image that is generated by this method is dependent on our ability to quantify its uncertainty. This uncertainty arises from the ill-posed nature of the tomographic inverse problem, which means that multiple models are capable of satisfying the data. The goal of this review is to provide an overview of the current state of the art in the assessment of uncertainty in seismic tomography, and issue a timely reminder that compared to the rapid advances made in many other areas of Earth imaging, uncertainty assessment remains underdeveloped and is often ignored or given minimal treatment in published studies. After providing a historical perspective that dates back to the pioneering work of the early 1970s, the factors that control solution nonuniqueness are discussed, which include data coverage, data noise, choice of parameterization, method used for data prediction and formulation of the inverse problem. This is followed by a description of common methods used to assess solution uncertainty and a commentary on their strengths and weaknesses. The final section of the review presents four case studies involving data sets from Australia and Europe that use different methods to assess uncertainty. The descriptive nature of this review, which does not contain detailed mathematical derivations, means that it is suitable for the many nonspecialists who make use of seismic tomography results but may not have a full appreciation of their reliability.
en_US
dc.language.iso
en
en_US
dc.publisher
Academic Press
en_US
dc.subject
Inverse problems
en_US
dc.subject
Seismic tomography
en_US
dc.subject
Uncertainty analysis
en_US
dc.subject
Wave propagation
en_US
dc.title
Seismic tomography and the assessment of uncertainty
en_US
dc.type
Book Chapter
dc.date.published
2014-09-20
ethz.journal.title
Advances in Geophysics
ethz.journal.volume
55
en_US
ethz.journal.abbreviated
Adv. geophys.
ethz.pages.start
1
en_US
ethz.pages.end
76
en_US
ethz.identifier.wos
ethz.publication.place
San Diego, CA
en_US
ethz.publication.status
published
en_US
ethz.leitzahl
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02330 - Dep. Erd- und Planetenwissenschaften / Dep. of Earth and Planetary Sciences::02506 - Institut für Geophysik / Institute of Geophysics::03971 - Fichtner, Andreas / Fichtner, Andreas
en_US
ethz.leitzahl.certified
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02330 - Dep. Erd- und Planetenwissenschaften / Dep. of Earth and Planetary Sciences::02506 - Institut für Geophysik / Institute of Geophysics::03971 - Fichtner, Andreas / Fichtner, Andreas
ethz.date.deposited
2017-06-11T14:54:33Z
ethz.source
ECIT
ethz.identifier.importid
imp593652b63418f34463
ethz.ecitpid
pub:149116
ethz.eth
yes
en_US
ethz.availability
Metadata only
en_US
ethz.rosetta.installDate
2017-07-14T17:56:41Z
ethz.rosetta.lastUpdated
2024-02-03T05:26:36Z
ethz.rosetta.exportRequired
true
ethz.rosetta.versionExported
true
ethz.COinS
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