<div class="csl-bib-body">
<div class="csl-entry">Ullah, S., Pichler, B., Scheiner, S., & Hellmich, C. (2010). Shell-specific Interpolation of Measured 3D Displacements, for Micromechanics-Based Rapid Safety Assessment of Shotcrete Tunnels. <i>Computer Modeling in Engineering & Sciences</i>, <i>57</i>(3), 279–314. https://doi.org/10.3970/cmes.2010.057.279</div>
</div>
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dc.identifier.issn
1526-1492
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/166776
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dc.description.abstract
Point-wise optical measurements of 3D displacement vectors over time are a key input for monitoring shotcrete tunnel shells during construction according to the New Austrian Tunnelling Method (NATM). Aiming at estimation of the stresses prevailing in the highly loaded, hydrating material, we here deal with two different interpolation strategies for reconstructing, from measured displacement vectors, the 3D displacement field histories of the inner surface of the tunnel shell. The first approach considers spatial interpolation of displacement components in a fixed Cartesian base frame, while the second (new) approach refers to displacement components in a moving base frame consisting of vectors tangent to the cylindrical coordinate curves along the tunnel shell. Subsequently, thin shell kinematics allow for (analytical) conversion of the aforementioned displacement field histories into strain field histories throughout the entire tunnel shell. Finally, thermochemomechanical constitutive modeling (including extension of a recently developed, experimentally validated micro-viscoelasticity model for hydrating shotcrete, towards the nonlinear regime) allows for conversion of the aforementioned strain fields into stress fields. The latter differ qualitatively, depending on the chosen interpolation strategy. Thereby, the moving base frame-related interpolation scheme results in more realistic estimations of the actual load carrying behavior of an NATM tunnel.
en
dc.language.iso
en
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dc.relation.ispartof
Computer Modeling in Engineering & Sciences
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dc.subject
hydration
en
dc.subject
NATM
en
dc.subject
monitoring
en
dc.subject
displacement
en
dc.subject
interpolation
en
dc.subject
micromechanics
en
dc.subject
shell theory
en
dc.subject
shotcrete
en
dc.title
Shell-specific Interpolation of Measured 3D Displacements, for Micromechanics-Based Rapid Safety Assessment of Shotcrete Tunnels
en
dc.type
Artikel
de
dc.type
Article
en
dc.description.startpage
279
-
dc.description.endpage
314
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dc.type.category
Original Research Article
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tuw.container.volume
57
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tuw.container.issue
3
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tuw.journal.peerreviewed
true
-
tuw.peerreviewed
true
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tuw.researchTopic.id
M8
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tuw.researchTopic.id
M7
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tuw.researchTopic.id
M5
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tuw.researchTopic.id
M4
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tuw.researchTopic.id
C6
-
tuw.researchTopic.id
C1
-
tuw.researchTopic.name
Structure-Property Relationship
-
tuw.researchTopic.name
Special and Engineering Materials
-
tuw.researchTopic.name
Composite Materials
-
tuw.researchTopic.name
Non-metallic Materials
-
tuw.researchTopic.name
Modelling and Simulation
-
tuw.researchTopic.name
Computational Materials Science
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tuw.researchTopic.value
15
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tuw.researchTopic.value
5
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tuw.researchTopic.value
15
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5
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50
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tuw.researchTopic.value
10
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dcterms.isPartOf.title
Computer Modeling in Engineering & Sciences
-
tuw.publication.orgunit
E202-01 - Forschungsbereich Festigkeitslehre und Biomechanik
-
tuw.publication.orgunit
E202-03 - Forschungsbereich Baustatik und experimentelle Mechanik
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tuw.publisher.doi
10.3970/cmes.2010.057.279
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dc.identifier.eissn
1526-1506
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dc.description.numberOfPages
36
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tuw.author.orcid
0000-0002-6468-1840
-
wb.sci
true
-
wb.sciencebranch
Bautechnik
-
wb.sciencebranch
Physik, Mechanik, Astronomie
-
wb.sciencebranch.oefos
23
-
wb.sciencebranch.oefos
12
-
wb.facultyfocus
Materialwissenschaften
de
wb.facultyfocus
Building Materials
en
wb.facultyfocus.faculty
E200
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item.languageiso639-1
en
-
item.openairetype
research article
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item.grantfulltext
none
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no Fulltext
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item.cerifentitytype
Publications
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item.openairecristype
http://purl.org/coar/resource_type/c_2df8fbb1
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crisitem.author.dept
E202-03 - Forschungsbereich Baustatik und experimentelle Mechanik
-
crisitem.author.dept
E202-01 - Forschungsbereich Festigkeitslehre und Biomechanik
-
crisitem.author.dept
E202 - Institut für Mechanik der Werkstoffe und Strukturen
-
crisitem.author.orcid
0000-0002-6468-1840
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crisitem.author.parentorg
E202 - Institut für Mechanik der Werkstoffe und Strukturen
-
crisitem.author.parentorg
E202 - Institut für Mechanik der Werkstoffe und Strukturen