journal article Jul 01, 2016

Reduced scale models based on similitude theory: A review up to 2015

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References
213
[1]
Adelman (1968)
[2]
Alves "Scaling impacted structures when the prototype and the model are made of different materials" Int J Solids Struct (2006) 10.1016/j.ijsolstr.2005.03.003
[3]
Alves "Scaling the impact of a mass on a structure" Int J Impact Eng (2006) 10.1016/j.ijimpeng.2004.09.009
[4]
Ambur DR, Prasad CB, Rose, CA, Feraboli P, Jackson WC. Scaling the non-linear impact response of flat and curved composite panels. In: 46th AIAA/ASME/ASCE/AHS/ASC structures, structural dynamics and materials conference, Austin, TX, United States; 2005. 10.2514/6.2005-2224
[5]
Anderson (1992)
[6]
Atkins "Scaling in combined plastic flow and fracture" Int J Mech Sci (1988) 10.1016/0020-7403(88)90053-7
[7]
Atkins "Scaling laws for elastoplastic fracture" Int J Fract (1999) 10.1023/a:1018683830486
[8]
Baker "Similarity methods in engineering dynamics: theory and practice of scale modeling" (1991)
[9]
Bazant "Scaling laws in mechanics of failure" J Eng Mech (1993) 10.1061/(asce)0733-9399(1993)119:9(1828)
[10]
Belvin "15 meter hoop-column antenna dynamics: test and analysis" (1986)
[11]
Belvin (1986)
[12]
Bernstein (1974)
[13]
Blanchard (1968)
[14]
Blanchard (1977)
[15]
Blok "On hydrodynamic aspects of ship collision with rigid or non-rigid structures" (1979)
[16]
Calle "Ship collision: a brief survey" (2011)
[17]
Canfield "Similarity rules for scaling solar sail systems" (2004)
[18]
Canfield (2010)
[19]
Carden (1964)
[20]
Carrillo "Scaling effects in the low velocity impact response of fiber-metal laminates" J Reinf Plast Compos (2008) 10.1177/0731684407084904
[21]
Cartmell "On the performance prediction and scale modelling of a motorised momentum exchange propulsion tether" (2003)
[22]
Catherine (1965)
[23]
Catherine (1968)
[24]
Chambers (2009)
[25]
Charlton Model analysis of structures (1953)
[26]
Cho "An advanced method to correlate scale models with distorted configurations" J Mech Des (2005) 10.1115/1.1825044
[27]
Cho "Empirical similitude method for the functional test with rapid prototypes" (1997)
[28]
Cho "Error measures for functional product testing" (1999)
[29]
Cho "Novel empirical similarity method for the reliable product test with rapid prototypes" (1998)
[30]
Cho "Online functional testing with rapid prototypes: a novel empirical similarity method" Rapid Prototyp J (1998) 10.1108/13552549810223000
[31]
Chouchaoui "Similitude study for laminated cylindrical tube under tension, torsion, bending, internal and external pressure – Part i: Governing equations" Compos Struct (1999) 10.1016/s0263-8223(98)00068-3
[32]
Chouchaoui "Similitude study for a laminated cylindrical tube under tension, torsion, bending, internal and external pressure – Part ii: Scale models" Compos Struct (1999) 10.1016/s0263-8223(98)00069-5
[33]
Christoforou "Effect of flexibility on low velocity impact response" J Sound Vib (1998) 10.1006/jsvi.1998.1807
[34]
Christoforou "Scaling of low-velocity impact response in composite structures" Compos Struct (2009) 10.1016/j.compstruct.2009.06.002
[35]
Chuk "A comparison of rapid prototyping techniques used for wind tunnel model fabrication" Rapid Prototyp J (1998) 10.1108/13552549810239030
[36]
Chung "Shaking table and pseudodynamic tests for the evaluation of the seismic performance of base isolated structures" Eng Struct (1999) 10.1016/s0141-0296(97)00211-3
[37]
Dang-guo "Design and manufacture methods of rapid prototyping wind-tunnel models based on photopolymer-resin" Rapid Prototyp J (2013) 10.1108/13552541311292691
[38]
Dang-guo "A preliminary design and manufacturing study of hybrid lightweight high-speed wind-tunnel models" Rapid Prototyp J (2011) 10.1108/13552541111098626
[39]
Davis (1994)
[40]
De Rosa "A scaling procedure for the response of an isolated system with high modal overlap factor" Mech Syst Signal Process (2008) 10.1016/j.ymssp.2008.01.007
[41]
De Rosa "On the use of the asymptotic scaled modal analysis for time-harmonic structural analysis and for the prediction of coupling loss factors for similar systems" Mech Syst Signal Process (2010) 10.1016/j.ymssp.2009.07.008
[42]
De Rosa "A similitude for structural acoustic enclosures" Mech Syst Signal Process (2012) 10.1016/j.ymssp.2012.01.018
[43]
De Rosa "Structural similitudes for the dynamic response of plates and assemblies of plates" Mech Syst Signal Process (2011) 10.1016/j.ymssp.2010.10.004
[44]
Dornfeld "Direct dynamic testing of stereolithographic models" (1994)
[45]
Dutson "Application of similitude techniques to functional testing of rapid prototypes" Rapid Prototyp J (2003) 10.1108/13552540310455593
[46]
Dutson AJ, Wood KL. Foundations and applications of the empirical similitude method (esm). Unpublished.
[47]
Emori "Scale models of automobile collisions with breakaway obstacles" Exp Mech (1973)
[48]
Ezra (1962)
[49]
Fasanella "Impact testing and simulation of a crashworthy composite fuselage section with energy-absorbing seats and dummies" (2002)
[50]
Ferguson "Replica model scaling for high strain-rate events" Int J Impact Eng (1995) 10.1016/0734-743x(94)00065-5

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227
A Review of Similitude Methods for Structural Engineering

Alessandro Casaburo, Giuseppe Petrone · 2019

Applied Mechanics Reviews
Metrics
227
Citations
213
References
Details
Published
Jul 01, 2016
Vol/Issue
119
Pages
81-94
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Funding
FCT – Fundação para a Ciência e a Tecnologia
Cite This Article
Cristiano P. Coutinho, António J. Baptista, José Dias Rodrigues (2016). Reduced scale models based on similitude theory: A review up to 2015. Engineering Structures, 119, 81-94. https://doi.org/10.1016/j.engstruct.2016.04.016