Laboratoire d’Acosutique de
l’Université du Mans, UMR CNRS 6613
+33 (0) 2 43 83 39 81
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Francois Gautier is professor at Le Mans University since
2008. He is teaching Acoustics and vibration at Ensim (Ecole nationale Supérieure
d’Ingénieurs du Mans) and is member of Laum (Laboratoire d’Acoustique de
l’Université du Mans, UMR CNRS 6613). He is an aeronautical engineer (graduated
from SupAéro, Toulouse, 1993). He holds a PhD in Acoustics from Le Mans
University in 1997. His main research areas concern
Vibroacoustics, Passive control of vibrations, Acoustic Black Hole effect,
Periodically architectured panels, Vibroacoustics of musical instruments. |
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Publications
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2023 [61] G.
Raybaud, J. Y. Lee, W. Jeon, A. Pelat,
F. Gautier, On the control of the absorption of an Acoustic Black Hole by
using attached point supports, Journal of Sound and Vibration, Volume 548,
2023, 117562, ISSN 0022-460X, https://doi.org/10.1016/j.jsv.2023.117562
[60] L. Lagny, M. Bruneau, F. Gautier, Pedagogically
treating topics as having several ways to be addressed: Harmonically varying
states of free-edge circular plates, J Acoust Soc Am 153, 3213 (2023), https://doi.org/10.1121/10.0019635 [59] P. O’Donoughue, F. Gautier, E. Meteyer, T.
Durand-Texte, M. Secail-Geraud, F. Foucart, O. Robin, A. Berry, M. Melon, C.
Pézerat, A. Pelat and P. Picart, Comparison of three full-field optical
measurement techniques applied to vibration analysis, Scientific Reports,
(2023) 13:3261, https://doi.org/10.1038/s41598-023-30053-9
2022 [58] G. Raybaud, M. Ouisse, J. Leng, A. Pelat, J.-P.
Groby, V. Romero-García, R. Picó, and F. Gautier. Control of
bending wave reflection at beam terminations by thermally tunable
subwavelength resonators. Journal of Sound and Vibration, 530 :116918, 2022. https://doi.org/10.1016/j.jsv.2022.116918 [57] H. Li, O. Doaré, C. Touzé, A. Pelat, F. Gautier,
Energy harvesting efficiency of unimorph piezoelectric acoustic black hole
cantilever shunted by resistive and inductive circuits, International Journal
of Solids and Structures, volume 238, pages
111409, 2022 https://doi.org/10.1016/j.ijsolstr.2021.111409 [56] L. Arbel, F.
Gautier, LeMo: an assembly kit for musical acoustics education, Journal of
New Music Research, p.1-15, Nov. 2022, https://doi.org/10.1080/09298215.2022.2150651
2021 [55] J. Leng, V. Romero-Garcia, F. Gautier, A.
Pelat, R. Pico, J.-P. Groby, Optimal absorption of flexural energy by
critical coupling a locally resonant grating, Wave in Random and Complex
Media, p. 1-23, 2021. https://doi.org/10.1080/17455030.2021.1930278 [54] G. Raybaud, G., Pelat, A., Ouisse, M., &
Gautier, F. (2021). Zero reflections by a 1D
Acoustic Black Hole termination using thermally controlled damping. Journal of Sound and Vibration, 510, 116282. DOI: 10.1016/j.jsv.2021.116282
[53] R. Beauvais, A. Pelat, F. Gautier, V. Florquin,
G. Vandenbossche, J. Gilbert, Inverse
identification of the acoustic pressure inside a U-shaped pipe line based on
acceleration measurements, Mechanical Systems and Signal Processing, volume
160, 107831, 2021. DOI: 10.1016/j.ymssp.2021.107831 [52] T. Durand-Texte, A. Pelat, F. Penelet, F.
Gautier, Thermal imaging of vibrational energy dissipated in a 2D acoustic
black hole pit featured, Appl. Phys. Lett. 118, 013901, 2021. DOI :
10.1063/5.0030983 [51] H. Li, M. Sécail-Géraud, A. Pelat, F. Gautier,
C. Touzé, Experimental evidence of energy transfer and vibration mitigation
in a vibro-impact acoustic black hole, Applied Acoustics, volume 182, pages
108168, DOI : 10.1016/j.apacoust.2021.108168 [50] H. Li, C. Touzé, F. Gautier, A. Pelat, Linear
and nonlinear dynamics of a plate with acoustic black hole, geometric and
contact nonlinearity for vibration mitigation, Journal of Sound and
Vibration, volume 508, pages 116206, 2021. DOI ;
10.1016%2Fj.jsv.2021.116206 2020 [49] T. Durand-Texte, A. Pelat, G. Penelet, F.
Gautier, and M. Sécail-Géraud, Thermal imaging of the structural damping
induced by an acoustic black hole, Journal of Applied Physics 127, 025102
(2020). DOI : 10.1063/1.5128089 [48] S.V. Sorokin, F. Gautier, A. Pelat, A hierarchy
of models of axisymmetric wave propagation in a fluid-filled periodic
cylindrical shell composed of high-contrast cells Mechanical Systems and
Signal Processing 136 (2020) 106487. DOI : 10.1016/j.ymssp.2019.106487 [47] J. Leng, V. Romero-García, A. Pelat, R. Picó,
J.-P. Groby, F. Gautier, Interpretation of the Acoustic Black Hole effect
based on the concept of critical coupling, Journal of Sound and Vibration
471 (2020) 115199. DOI : 10.1016/j.jsv.2020.115199 [46] A. Pelat, F. Gautier, F. Semperlotti, S.
Conlon, The Acoustic Black Hole : a review of theory and applications,
Journal of Sound and Vibration, vol. 450, 2020, DOI : 10.1016/j.jsv.2020.115316
[45]F. Gautier,
F.; Krylov, V.V., Special issue: Recent advances in Acoustic Black Hole
research, Journal of Sound and Vibration, Volume 476, 23 June 2020, Art. number 1153352020,DOI:
10.1016/j.jsv.2020.115335
[44] J. Plisson, A. Pelat, F. Gautier, V.
Romero Garcia, T. Bourdon, Experimental evidence of absolute
band gaps in phononic crystal pipes,
Applied Physics
Letter, 2020, volume 116, 20, 201902. DOI: 10.1063/5.0007532
2019 [43] G. Orelli Paiva, F. Ablitzer, F. Gautier, J.M.
Campos dos Santos, Collisions in double string plucked instruments : Physical
modelling and sound synthesis of the viola caipira, Journal of Sound and
Vibration 443 (2019) 178–197. DOI: 10.1016/j.jsv.2018.11.012
[42] H. Li, C. Touzé, A.Pelat, F. Gautier, X. Kong ,
A vibro-impact acoustic black hole for passive damping of flexural beam
vibrations, Journal of Sound and Vibration 450 (2019) 28–46. DOI : 10.1016/j.jsv.2019.03.004 [41] J. Leng, F. Gautier, A. Pelat, R. Pic, J.-P.
Groby, V. Romero-Garca, Limits of flexural wave absorption by open lossy
resonators: reflection and transmission problems, New J. Phys. 21 (053003),
2019. DOI : 10.1088/1367-2630/ab1761 [40] A. Pelat, T. Gallot, F. Gautier, On the control
of the first Bragg band gap in periodic continuously corrugated beam for
flexural vibration, Journal of Sound and Vibration, vol 446, pp 249-262,
2019, DOI : 10.1016/j.jsv.2019.01.029 2018 [39] G. Orelli Paiva, F. Ablitzer, F. Gautier, J. M.
Campos dos Santos, The Roving Wire-Breaking Technique: a low cost mobility
measurement procedure for string musical instruments, Applied Acoustics
Volume 139, October 2018, Pages 140- 148. https://doi.org/10.1016/j.apacoust.2018.04.032 2017 [38] V. Denis, A. Pelat,
C. Touzé, F. Gautier, Improvement of the acoustic black hole effect by using
energy transfer due to geometric nonlinearity, International Journal of
Non-Linear Mechanics, volume 94, pages 134-145, 2017, DOI : https://doi.org/10.1016/j.ijnonlinmec.2016.11.012 2016 [37] O. Aklouche, A. Pelat,
S. Maugeais, F. Gautier, Scattering of flexural waves by a pit of quadratic
profile inserted in
an infinite thin plate Journal of Sound and Vibration 375 (2016) 38–52. DOI : 10.1016/j.jsv.2016.04.034 [36] V. Denis, A. Pelat, F.
Gautier, Scattering effects induced by imperfections on an Acoustic Black
Hole placed at a
structural waveguide termination, J. Sound Vib. 362, 56-71 (2016). DOI:
10.1016/j.jsv.2015.10.016
[35] J. Poittevin, F.
Gautier, C. Pézerat and P. Picart, High-speed holographic metrology:
principle, limitations, and application to vibroacoustics of structures, Optical
Engineering 55(12), 121717 (December 2016), DOI 10.1117/1.OE.55.12.121717
[34] J.
Poittevin, P. Picart,F. Gautier, C. Pézerat, Multipoint holographic
vibrometer : Design, limits and applications, Instrumentation Mesure
Metrologie, Volume 15, Issue 1-2, 2016, Pages 79-119, https://doi.org/10.3166/I2M.15.1-2.79-119 [33] T. Weisser, J.P. Groby, O. Dazel, F. Gautier, E. Deckers, S. Futatsugi, L. Monteiro, Acoustic behavior of a
rigidly backed
poroelastic layer with periodic resonant inclusions by a multiple scattering
approach, Journal of the Acoutical Society of
America, 139(2):617-629, Feb. 2016. https://doi.org/10.1121/1.4940669 [32] E.D. Nobrega, F. Gautier, A. Pelat, J.M.C. Dos Santos, Vibration band gaps for
elastic metamaterial rods using wave finite element method, Mechanical Systems and Signal
Processing, Volume 79, 15 October 2016, Pages 192–202. DOI : https://doi.org/10.1016/j.ymssp.2016.02.059 2015 [31] J. POITTEVIN, PICART
P., FAURE C., GAUTIER F., PEZERAT C., 2015, Multi-point vibrometer based on
high-speed digital in-line holography, Applied Optics, Vol. 54, Issue 11, pp.
3185-3196, 2015. DOI:10.1117/12.2184459 [30] V. DENIS, F. GAUTIER,
A. PELAT, J. POITTEVIN, Measurement and modelling of the reflection
coefficient of an acoustic black hole termination, Journal of Sound and
Vibration, Volume 349, 4 August 2015, Pages 67–79. DOI: 10.1016/j.jsv.2015.03.043
[29] J. POITTEVIN, PICART
P., GAUTIER F., PEZERAT C., Quality assessment of combined
quantization-shot-noise-induced decorrelation noise in high-speed !digital
holographic metrology, Optics express Vol.23, N°4, pp. 30917-30932, 2015. DOI: 10.1364/OE.23.030917
[28]V. FREOUR, F. GAUTIER,
B. DAVID, M. CURTIT, Extraction and analysis of body-induced partials of guitar
tones, Journal of the Acoustical Society of America, 138, 3930 (2015). DOI: 10.1121/1.4937749
2014 [27] A.
Elmaian, F. Gautier, C. Pezerat, J.-M. Duffal, How can automotive friction-induced noises be
related to physical mechanisms? Applied Acoustics,76(2014), 391-401. DOI: 10.1016/j.apacoust.2013.09.004
[26] V. Denis, A. Pelat, F. Gautier, B. Elie, Modal Overlap
Factor of a beam with an Acoustic Black Hole termination, Journal of Sound
and Vibration, Vol. 333 (12), 2014, p. 2475–2488. DOI: 10.1016/j.jsv.2014.02.005
[25]
S. Foucaud, G.Michon, Y. Gourinat, A. Pelat, F.Gautier, Artificial cochlea and
acoustic black hole travelling waves observation: Model and experimental
results, Journal of Sound and Vibration, 333 (15), 2014, p. 3428–3439. DOI: 10.1016/j.jsv.2014.03.016
[24] B. ELIE, F. GAUTIER, B.
DAVID, Acoustic signature of violins based on bridge transfer mobility
measurements, Journal of the Acoustical Society of America, Vol. 136, N°3,
Sept. 2014, 1385-1393, J. Acoust. Soc. Am. 136, 1385 (2014). DOI: 10.1121/1.4892762
2013 [23] M.
Leclercq, M. Karray, V. Isnard, F. Gautier, P. Picart, Evaluation of
surface acoustic waves on the human skin using quasi-time-averaged digital
Fresnel holograms, Applied Optics, Vol.52, N°1, 136-146, (2013) [22] E.P. Bowyer, D.J. O’Boy, V.V. Krylov, F. Gautier, "Experimental investigation of damping flexural vibrations in plates containing tapered indentations of power-law profile”, Applied Acoustics, 74 (2013), 553-560.
[21]
B. Elie, F. Gautier, B. David, Estimation of Mechanical properties of panels based on modal density
and mean mobility measurements, Mechanical Systems and Signal Processing,
Vol. 40 (2), 2013, p. 628–644 2012 [20] J. Cuenca, F. Gautier, L.
Simon, Harmonic Green’s functions for flexural waves in semi-infinite
plates with arbitrary boundary conditions and high-frequency approximation for convex polygonal plates,
Journal of Sound and Vibration 331 (2012) 1426–1440 [19] S.
Daltrop, A.Kotlicki, C. Waltham, N. Wolfe, B. Elie, F. Gautier, Vibroacoustic
Characteristics of a Gothic Harp, Journal of the Acoustical Society of America, 131 (1), 837-843 (2012),
https://doi.org/10.1121/1.3651223 [18] B. Elie, F. Gautier, B. David, Macro parameters describing the mechanical behavior
of classical guitars, Journal of the Acoustical Society of America,132(6),
4013-4024 (2012). https://doi.org/10.1121/1.4765077 [17] F. Gautier, G. Nief, J. Gilbert, J. P. Dalmont, Vibro-acoustics of organ pipes — revisiting
the Miller Experiment, Journal of the Acoustical Society of America, 131(1), Pt 2. January
2012, 737-738. https://doi.org/10.1121/1.3651792 2011 [16] V.B. Georgiev, J. Cuenca,
F. Gautier, L. Simon, V.V. Krylov, Damping of structural vibrations in
beams and elliptical plates using the acoustic black hole effect, Journal of
Sound and Vibration 330 (2011) 2497–2508. 2010 [15] J.
L. Le Carrou, Q. Leclere, F. Gautier, Some characteristics of the harp’s soundboard
radiation, Journal of the Acoustical Society of America, 127 (5), May 2010,
p. 3203-3211. 2009 [14] J. CUENCA, F. GAUTIER,
L. SIMON, The image source method for
calculating the vibrations of simply supported convex polygonal plates,
Journal of Sound and Vibration, 322(2009), p. 1048-1069. [13] J.-L.LE CARROU, F. GAUTIER, R. BADEAU,
Sympathetic modes in the concert harp, Acta Acustica United with Acustica,
Vol. 95 (2009) 744 – 752. 2008 [12] G. NIEF, F. GAUTIER,
J.P. DALMONT, J. GILBERT, Influence of wall
vibrations on the behavior of a simplified wind instrument, Journal of the
Acoustical Society of America, 124, 1320-1331, 2008 2008 [11] F. GAUTIER, J. GILBERT, J.P DALMONT, R. PICO
VILA, Wave propagation in a fluid filled rubber tube: theoretical and
experimental results for Korteweg’s wave, Acta Acustica united with Acustica,
93(3), 2007, p.333-344. 2007 [10] R. PICO, F. GAUTIER, J.
REDONDO. Acoustic input impedance of
a vibrating cylindrical tube, Journal of Sound and Vibration, 301(2007),
649-664. [9] R. PICO, F. GAUTIER,
Vibroacoustics of slightly distorded cylindrical shells: model of the
acoustic input impedance, Journal of Sound and Vibration, 302 (2007),
p.18-38. [8] M.H. MOULET, F. GAUTIER,
Reflection, transmission and coupling coefficients of longitudinal and
flexural wave at beams junctions. Part II: experimental and theoretical
results, Acta Acustica United with Acustica, 93 (2007), p. 37-47. [7] J. R. F. ARRUDA, F. GAUTIER, L. V. DONADON,
Computing reflection and transmission coefficients for plate reinforcement
beams, Journal of Sound and Vibration, septembre 2004, 307(2007), p. 564-577. [6] J.-L. LE CARROU, F.
GAUTIER, E. FOLTETE, Experimental study of A0 and T1 modes of the concert
harp, Journal of the Acoustical Society of America, 121(1), 2007, p. 559-567. 2006 [5] F. GAUTIER, M.H. MOULET,
J.C. PASCAL, Reflection, transmission and coupling coefficients of
longitudinal and flexural wave at beams junctions. Part I : measurement
methods, Acta Acustica United with
Acustica, 92 (2006), p.982-997. 2005 [4] J.-L. LE CARROU, F. GAUTIER, N. DAUCHEZ, J.
GILBERT , Modelling of sympathetic string vibrations, Acta Acustica united
with Acustica, vol.91, 277-288, 2005. 2004 [3] F. GAUTIER, N. DAUCHEZ, Acoustic intensity
measurement of the sound field radiated by a concert harp, Applied Acoustics, Vol.64, p.1231-1331,
2004 1998 [2] F. GAUTIER, N. TAHANI,
Vibroacoustics of cylindrical pipes : internal radiation modal coupling,
Journal of Sound and Vibration, 215(5), p.1165-1179, 1998. [1] F. GAUTIER, N. TAHANI, Vibroacoustic
behaviour of a simplified musical wind instrument, Journal of Sound and
Vibration, 213(1), p.107-125,1998. |
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TheSIS (currenT)
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[Th22] A. COUINEAUX, Instabilités de
frottement : application à la modélisation physique du cristal Baschet,
financement Ministériel, Frédéric Ablitzer, co-encadrant 60%, François
Gautier (dir. Thèse 40%), 2019- 2025. Césure en 2022-2023 à Sapienza Università di Roma. [Th21] S. SAMAAN, Etude du bruit et des
vibrations générées par un jet d’écoulement en conduit cylindrique – application
à la quantification de fuites, thèse cifre entreprise Chpolanski, C. Pezerat
(40%), C. Schram (Von Karman Institute, Bruxelles, 20%), F. Gautier (40%),
2019-2022, soutenance prévue en 2023. [Th20] A. BESSE, Réduction du bruit cabine
dans un avion au moyen de Trous Noirs Acoustique, Projet AIRBUS - MAMBO,
Financement DGAC, 2022-2025. Direction F. Gautier (40%), codirecteur A. Pelat
(30%), co-encadrant F. Ablitzer (30%) 2022. [Th19] S. AVETISOV, Contrôle passif des
vibrations d’une structure au moyen de filtres de Herschel-Quincke.
Financement MESR. Cotutelle avec l’Université d’Aalborg, Danemark. Directeur
de thèse A. Pelat (40%), co-directeur F. Gautier (30%), co-directeur S.
Sorokin (30%) [Th18] L. LAGNY, Vibrométrie holographique
champ large appliquée aux structures complexes, Personnel détaché de
l’Education Nationale, Encadrants : P. Picart (Dir thèse 50%), S.
Montrésor (co-dir 10%), F. Gautier (co-encadrant 40%), soutenance prévue en
2023 |
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THESIS (DEFENDED)
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[T17] G. RAYBAUD,
Conception de panneaux non rayonnants basée sur l’utilisation de trous noirs
acoustiques augmentés, encadrement F. Gautier (dir thèse 40%), A. Pelat
(30%), M. Ouisse (Université de Franche Comté, 30%), 2018-2021. https://theses.hal.science/tel-03772524 [Th16] J.
PLISSON, Conception de filtres vibratoires multi-ondes par
optimisation de guides d’ondes structuraux périodiques, thèse Cifre Tesco
Technologies, encadrement F. Gautier (dir thèse, 40%), A. Pelat(30%), V.
Romero(30%), 2018-2021. https://theses.hal.science/tel-03524415v1 [Th15] J. LENG, Contrôle des ondes de flexion au moyen d’absorbeurs parfaits sub-longueur
d’onde : application au Trou Noir Acoustique. Thèse
de doctorat d’Acoustique, Financement régional LMAC, co-direction de thèse
avec l’Université de Valencia, Espagne, F. Gautier (dir. thèse 40%), V.
Romero (20%), A. Pelat (20%), R. Pico, (20%), 2019. https://theses.hal.science/tel-02443214v1 [Th14] R. BEAUVAIS, Propagation
des ondes acoustiques dans les tuyauteries de compresseur ; simulations dans
le domaine temporel. Thèse de doctorat d’Acoustique, Financement CIFRE,
entreprise SIM Enginering, Directeur de thèse : directeur J. Gilbert (40%),
F. Gautier co-dir (30%, A. Pelat co-encadrant (30%), 2019. https://www.theses.fr/2019LEMA1015 [Th13] G. PAIVA, Caractéristiques
vibroacoustiques de la guitare brésilienne, Thèse de doctorat d’Acoustique en
co-tutelle avec l’université de Campinas, Financement Université de Campinas,
Brésil (soutien financier FAPESP), Directeur de thèse : F.Gautier (40%),
F. Ablitzer (30%), co-encadrant, J.M. Santos, co-directeur (30%), 2017. https://univ-lemans.hal.science/tel-01745927/ [Th12] O. AKLOUCHE,
Amortissement de structures bi-dimentionnelles par effet trou noir acoustique,
Thèse de doctorat d’Acoustique, Financement IRT J.Verne, Directeur de
thèse : F. Gautier (40%), co-encadrant A.Pelat( 30%), S. Maugeais (30%),
2017. https://theses.hal.science/tel-01717745/file/2017LEMA1030.pdf [Th11] M. NOBOU DASSI,
Vibroacoustique des structures automobiles en composite, Thèse de doctorat
d’Acoustique, Financement Projet Européen ITN Gresimo, Directeur de thèse :
F.Gautier (50%), C.Pezerat, co-directeur (50%), 2015 [Th10] J. POITTEVIN, Mesure de champs vibratoires
par holographie optique numérique ultra-rapide, Thèse
de doctorat d’Acoustique, Financement IRT J.Verne, Directeur de thèse :
P.Picart(40%), co-directeur F. Gautier (30%), C.Pezerat (30%), 2015. [Th9] M. REGNIEZ,
Amortissement des vibrations d’un réflecteur d’antenne de satellite par
micro-perforations, Thèse de doctorat d’Acoustique, Financement CNES –
co-financement Thales Alenia Space, Directeur de thèse : F. Gautier
(40%), co-directeur C.Pezerat (30%), co-encadrant A.Pelat (30%), 2015. https://hal.science/tel-01163673/file/These_MREGNIEZ_s75924.pdf [Th8] V. DENIS,
caractérisation et modélisation de l’effet trou noir acoustique dans des
milieux mono-dimentionnels, Thèse
de doctorat d’Acoustique, Financement MESR, Directeur de thèse : F.
Gautier (50%), co-encadrant A.Pelat (50%), 2014 [Th7] A. ELMAIAN,
Methodologies de simulation des bruits automobiles induits par le frottement.
Thèse de doctorat d’Acoustique, Financement CIFRE Renault, Directeur de
thèse : F. Gautier (40%), co-directeur C. Pezerat (30%), J. Gilbert
(30%), 2013. https://theses.hal.science/tel-00839253/document [Th6] B. ELIE,
Caractérisation vibratoire et acoustique des instruments à cordes :
application à l’aide à la facture instrumentale, Thèse de doctorat
d’acoustique de l’université du Maine, Novembre 2012, Financement ANR PAFI,
Directeur de thèse, F. Gautier (60%), co-directeur B. David (telecom-Paris
Tech, 40%), 2012. https://theses.hal.science/file/index/docid/833885/filename/These_Benjamin_Elie.pdf [Th5] J. CUENCA, Dynamique
des structures assemblées en moyennes et hautes fréquences : modèles
basés sur des rayons vibratoires. Thèse de doctorat d’acoustique de
l’Université du Maine, Novembre 2009. Directeur de thèse L. Simon (50%),
co-directeur F. Gautier (50%), 2009. https://theses.hal.science/tel-00442260 [Th4] G. NIEF, Couplage
fluide interne – structure mécanique, application aux instruments à vent. Thèse
de doctorat d’acoustique, novembre 2008, Financement MESR, Directeur de thèse
J. Gilbert(40%) , co-directeurs J.P. Dalmont (30%), F. Gautier (30%), 2008. https://theses.hal.science/tel-00366843/ [Th3] J-L. LE CARROU,
Vibroacoustique de la harpe, Thèse de doctorat d’acoustique, Université du
Maine, novembre 2006.Financement MESR, Directeur de thèse : J.Gilbert,
F. Gautier (80%), N. Dauchez, 2006. https://theses.hal.science/tel-00133443/file/These_LeCarrou.pdf [Th2] R. PICO VILA,
Vibroacoustique des conduits cylindriques faiblement distordus, étude de
l’influence des vibrations de paroi sur les oscillations des instruments de
musique à vent. Thèse de doctorat d’acoustique, cotutelle entre l’Université
Polytechnique de Valence (Espagne) et l’Université du Maine. Directeurs de
thèse J.Gilbert et J. Ramis, co-directeurs F. Gautier (60%), et R. Redondo, Prix
de la thèse université du Maine 2005. Thèse soutenue en 2004. [Th1] M.H.
MOULET, Les jonctions en mécanique vibratoire :
représentation par matrice de diffusion et caractérisation expérimentale pour
des poutres assemblées. Thèse de doctorat d’acoustique, Université du Maine. Financement
MESR, Directeur de thèse J.C. Pascal (30%,) co-directeur F. Gautier (70%),
2003. |
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