M. A. Maiga, Modèle multi-bulles pour cavitation. Equation d'évolution pour la pression

Y. and A. Bouziad, Physical modelling of leading edge cavitation, Thèse de Doctorat, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00262236

N. Aquelet, Modélisation de l'impact hydrodynamique par un couplage fluide-structure, Thèse de Doctorat, 2004.

F. Axisa, Antunes : Modelling of mechanical systems -Fluid structure interaction, 2007.

M. R. Bailey, A. P. Evan, O. A. Sapozihnikov, and R. O. Cleveland, Colonius : Cavitation in shock wave lithotripsy, Fifth international symposium on cavitation, 2003.

S. Bal, H. Akyildiz, and M. Guner, Preliminary results of a numerical method for podded propulsors, Proceddings of the 2nd international conference on Technological Advances in Pod Propulsion (TPOD06), France, 2006.

M. F. Barone and J. L. Payne, Methods for simulation-based analysis of fluid-structure interaction, 2005.
DOI : 10.2172/875605

W. Batten, A. Bahaj, A. Molland, and J. Chaplin, Hydrodynamics of marine current turbines, Renewable Energy, vol.31, issue.2, pp.249-256, 2006.
DOI : 10.1016/j.renene.2005.08.020

M. Benaouicha, Contribution au développement d'algorithmes de couplage en interaction fluide-structure, Thèse de Doctorat, 2007.

M. Benaouicha, J. Astolfi, A. Ducoin, and S. Frikha, Coutier-Delgosha : A numerical study of cavitation induced vibration, ASME 2010 Pressure Vessels and Piping Conference, pp.35-42, 2010.

J. P. Blasques and C. Berggreen, Hydro-elastic analysis and optimization of a composite marine propeller, Marine Structures, vol.23, issue.1, pp.22-38, 2010.
DOI : 10.1016/j.marstruc.2009.10.002

A. Boer, A. Zuijlena, and H. Bijla, Review of coupling methods for non-matching meshes, Computer Methods in Applied Mechanics and Engineering, vol.196, issue.8, pp.1515-1525, 2007.
DOI : 10.1016/j.cma.2006.03.017

D. Boffi and L. Gastaldi, Stability and geometric conservation laws for ALE formulations, Computer Methods in Applied Mechanics and Engineering, vol.193, issue.42-44, pp.42-444717, 2004.
DOI : 10.1016/j.cma.2004.02.020

C. E. Brennen, Cavitation and bubble dynamics, 1995.
DOI : 10.1017/CBO9781107338760

R. and C. Amezcua, Analyse des écoulements cavitants stationnaires et instationnaires dans les turbomachines, Thèse de Doctorat, Ecole Nationale Supérieure d'Arts et Métiers ParisTech, 2009.

W. Cao, W. Huang, and R. D. , A Moving Mesh Method Based on the Geometric Conservation Law, SIAM Journal on Scientific Computing, vol.24, issue.1, pp.118-142, 2002.
DOI : 10.1137/S1064827501384925

J. Carlton, Marine propellers and propulsion, 2007.

P. Catalano and M. Amato, An evaluation of RANS turbulence modelling for aerodynamic applications, Aerospace Science and Technology, vol.7, issue.7, pp.493-509, 2003.
DOI : 10.1016/S1270-9638(03)00061-0

P. Causin, J. Gerbeau, and F. Nobile, Added-mass effect in the design of partitioned algorithms for fluid???structure problems, Computer Methods in Applied Mechanics and Engineering, vol.194, issue.42-44, 2004.
DOI : 10.1016/j.cma.2004.12.005

URL : https://hal.archives-ouvertes.fr/hal-00695954

O. Coutier-delgosha and J. Reboud, Fortes-Patella : Numerical study of the effect of the leading edge shape on cavitation around inducer blade sections, Fourth International Symposium on Cavitation, Etats-Unis, 2001.

H. De-becdelièvre, Etude du couplage fluide-structure en régime cavitant, Thèse de Master, 2009.

P. Delafin, F. Deniset, J. Astolfi, and J. Laurens, Prediction of hydrodynamic forces with and without transition model, 15th Numerical Towing Tank Symposium, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00745658

I. Dermid?i? and S. Muzaferija, Numerical method for coupled fluid flow, heat transfer and stress analysis using unstructured moving meshes with cells of arbitrary topology, Computer Methods in Applied Mechanics and Engineering, vol.125, pp.235-255, 1995.

A. Ducoin, Etude expérimentale et numérique du chargement hydrodynamique des corps portants en régime transitoire avec prise en compte du couplage fluide structure, Thèse de Doctorat, 2008.

A. Ducoin, J. Astolfi, F. Deniset, and S. Jean-françois, Computational and experimental investigation of flow over a transient pitching hydrofoil, European Journal of Mechanics - B/Fluids, vol.28, issue.6, pp.728-743, 2009.
DOI : 10.1016/j.euromechflu.2009.06.001

URL : https://hal.archives-ouvertes.fr/hal-01206317

A. Ducoin, S. Benramdane, J. Astolfi, and F. Deniset, Etude expérimentale et numérique du champ de pression pariétale sur corps portant en mouvement forcé, 18ème Congrès Français de Mécanique, 2007.

A. Ducoin and Y. Young, Hydroelastic response and stability of a hydrofoil in viscous flow, Second International Symposium on Marine Propulsors smp'11, Allemagne, 2011.
DOI : 10.1016/j.jfluidstructs.2012.12.011

C. Farhat, C. Degand, and B. Koobus, Torsional springs for two-dimensional dynamic unstructured fluid meshes, Computer Methods in Applied Mechanics and Engineering, vol.163, issue.1-4, pp.231-245, 1998.
DOI : 10.1016/S0045-7825(98)00016-4

C. Farhat, P. Geuzaine, and G. Brown, Application of a three-field nonlinear fluid???structure formulation to the prediction of the aeroelastic parameters of an F-16 fighter, Computers & Fluids, vol.32, issue.1, pp.3-29, 2003.
DOI : 10.1016/S0045-7930(01)00104-9

C. Farhat, P. Geuzaine, and C. Grandmont, The Discrete Geometric Conservation Law and the Nonlinear Stability of ALE Schemes for the Solution of Flow Problems on Moving Grids, Journal of Computational Physics, vol.174, issue.2, pp.669-694, 2001.
DOI : 10.1006/jcph.2001.6932

C. Farhat and M. Lesoinne, Two efficient staggered algorithms for the serial and parallel solution of three-dimensional nonlinear transient aeroelastic problems, Computer Methods in Applied Mechanics and Engineering, vol.182, issue.3-4, pp.499-515, 2000.
DOI : 10.1016/S0045-7825(99)00206-6

M. Farhat, A. Chakravarty, and J. Field, Luminescence from hydrodynamic cavitation, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.83, issue.1751, pp.591-606, 2011.
DOI : 10.1098/rsta.1999.0327

M. A. Fernández, J. Gerbeau, and C. , Grandmont : A projection semi-implicite scheme for the coupling of an elastic structre with an incompressible fluid, 2005.

M. A. Fernández, J. Gerbeau, and C. , A projection algorithm for fluid???structure interaction problems with strong added-mass effect, Comptes Rendus Mathematique, vol.342, issue.4, pp.279-284, 2006.
DOI : 10.1016/j.crma.2005.12.017

J. Ferziger, Peric : Computational method for fluid dynamics, 2002.

G. Fokoua, C. Gabillet, and C. Colin, Experimental study of bubble drag interaction in a Taylor Couette flow, Proceedings of the 8th International Conference on Multiphase Flow, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00973223

J. Franc and J. , Michel : Fundamentals of cavitation, 2005.

S. Frikha, Etude numérique et expérimentale des écoulements cavitants sur corps portants

J. Gerbeau, Vidrascu : A quasi-newton algorithm based on a reduced model for fluid/structure interaction problems in blood flows, 2003.

P. Geuzaine, C. Grandmont, and C. Farhat, Design and analysis of ALE schemes with provable second-order time-accuracy for inviscid and viscous flow simulations, Journal of Computational Physics, vol.191, issue.1, pp.206-227, 2003.
DOI : 10.1016/S0021-9991(03)00311-5

E. Goncalves, Numerical study of cavitating flows with thermodynamic effect, Computers & Fluids, vol.39, issue.1, pp.99-113, 2010.
DOI : 10.1016/j.compfluid.2009.07.009

URL : https://hal.archives-ouvertes.fr/hal-00530261

H. Guillard and C. Farhat, On the significance of the geometric conservation law for flow computations on moving meshes, Computer Methods in Applied Mechanics and Engineering, vol.190, issue.11-12, pp.1467-1482, 2000.
DOI : 10.1016/S0045-7825(00)00173-0

URL : https://hal.archives-ouvertes.fr/hal-00871722

X. He, Y. Hong, and R. Wang, Hydroelastic optimisation of a composite marine propeller in a non-uniform wake, Ocean Engineering, vol.39, pp.14-23, 2012.
DOI : 10.1016/j.oceaneng.2011.10.007

B. Hübner and E. Walhorn, A monolithic approach to fluid???structure interaction using space???time finite elements, Computer Methods in Applied Mechanics and Engineering, vol.193, issue.23-26, pp.2087-2104, 2004.
DOI : 10.1016/j.cma.2004.01.024

C. Kassiotis, Nonlinear Fluid-Structure Interaction : a Partitioned Approach and its Application Through Component Technology, Thèse de doctorat, 2009.
URL : https://hal.archives-ouvertes.fr/tel-00453394

B. Koobus and C. Farhat, Second-order time-accurate and geometrically conservative implicit schemes for flow computations on unstructured dynamic meshes, Computer Methods in Applied Mechanics and Engineering, vol.170, issue.1-2, pp.103-129, 1999.
DOI : 10.1016/S0045-7825(98)00207-2

URL : https://hal.archives-ouvertes.fr/hal-00379006

P. Krishnaswamy, Flow modelling of partially cavitating hydrofoils, Thèse de Doctorat, 2000.

P. Krishnaswamy, P. Andersen, and K. S. , Re-entrant jet modelling for partially cavitating two-dimensional hydrofoils, Fourth International Symposium on Cavitation, 2001.

R. Kunz, D. Boger, J. Chyczewski, D. Stinebring, H. Gibeling et al., Multiphase CFD analysis of natural and ventilated cavitation about submerged bodies, Proceedings of FEDSM 99 -3rd ASME/JSME Joint Fluids Engineering Conference, 1999.

R. Kunz, D. Boger, D. Stinebring, T. Chyczewski, J. Lindau et al., A preconditioned Navier???Stokes method for two-phase flows with application to cavitation prediction, Computers & Fluids, vol.29, issue.8, pp.849-875, 2000.
DOI : 10.1016/S0045-7930(99)00039-0

P. , L. Tallec, and J. Mouro, Structures en grands déplacements couplées à des fluides en mouvement, 1996.

Y. Lecoffre, Bruit de cavitation, Acoustiques et Techniques, vol.38, pp.48-54, 2004.

T. Leighton, M. Farhat, and J. Field, Cavitation luminescence from flow over a hydrofoil in a cavitation tunnel, Journal of Fluid Mechanics, vol.480, pp.43-60, 2003.
DOI : 10.1017/S0022112003003732

J. Leroux, Etude expérimentale en tunnel hydrodynamique des instabilités de la cavitation par poche sur hydrofoil par la mesure spatio-temporelle du champ de pression pariétal, Thèse de Doctorat, 2003.

H. Liu and Y. Young, Static divergence of self-twisting composite rotors, Journal of Fluids and Structures, vol.26, issue.5, pp.841-847, 2010.
DOI : 10.1016/j.jfluidstructs.2010.05.002

N. Maman and C. Farhat, Matching fluid and structure meshes for aeroelastic computations: A parallel approach, Computers & Structures, vol.54, issue.4, pp.779-785, 1995.
DOI : 10.1016/0045-7949(94)00359-B

G. Markou, Z. Mouroutis, D. Charmpis, and P. M. , The ortho-semi-torsional (OST) spring analogy method for 3D mesh moving boundary problems, Computer Methods in Applied Mechanics and Engineering, vol.196, issue.4-6, pp.747-765, 2007.
DOI : 10.1016/j.cma.2006.04.009

G. Marsh, A new start for marine propellers. Reinforced Plastics, pp.34-38, 2004.

I. Mejri-chtioui, Analyse de l'écoulement instationnaire cavitant dans les inducteurs, Thèse de Doctorat, Ecole Nationale Supérieure des Arts et Métiers de Paris, 2006.

F. Menter, Eddy viscosity transport equations and their relation to the k-e model. Rapport de recherche NASA TM-108854, National Aeronautics and Space Administration, 1994.

F. Menter, P. Sharkey, S. Yakubov, and M. Kuntz, Overview of fluid-strucutre coupling in ANSYS-CFX, Proceedings of Offshore Mechanics and Arctic Engineering -OMAE, num, pp.2006-92145, 2006.

J. Morand, Ohayon : Fluid-structure interaction : applied numerical methods, 1995.

K. Morinishi and T. Fukui, An eulerian approach for fluid-structure interaction Problems, Computers & Fluids, vol.35, pp.92-98, 2012.

N. Mulcahy, B. Prusty, and C. Gardiner, Flexible composite hydrofoils and propeller blades, International Maritime Conference, pp.27-29, 2010.

C. Pellone and J. , Franc : Analyse des effets thermiques en cavitation, 11èmes journée de l, 2007.

J. Penrose, D. Hose, C. Staples, I. Hamill, I. Jones et al., Fluid structure interactions : coupling of CFD and FE, 18th CAD-FEM User's Meeting -International Congress on FEM Technology, 2000.

S. Phoemsapthawee, Développement d'un modèle de cavitation à poche sur hydrofoils et hélices en régimes transitoires, implémentation sur codes potentiels et validation expérimentale

S. Phoemsapthawee, J. Leroux, J. Laurens, and F. Deniset, A Transpiration Velocities Based Sheet Cavitation Model, Ship Technology Research, vol.56, issue.4, pp.161-176, 2009.
DOI : 10.1179/str.2009.56.4.003

URL : https://hal.archives-ouvertes.fr/hal-00449108

M. Picard, Développement et validation d'algorithmes de calcul pour simulations couplées fluide/structure, Thèse de Master

S. Piperno, Simulation numériques des phénomènes d'interaction fluide-structure, Thèse de Doctorat, Ecole des Ponts et Chaussées, 1995.

S. Piperno, Explicit/implicit fluid/structure staggered procedures with a structural predictor and fluid subcycling for 2D inviscid aeroelastic simulations, International Journal for Numerical Methods in Fluids, vol.134, issue.10, pp.1207-1226, 1997.
DOI : 10.1002/(SICI)1097-0363(19971130)25:10<1207::AID-FLD616>3.0.CO;2-R

URL : https://hal.archives-ouvertes.fr/hal-00607776

S. Piperno and C. , Farhat : Design of efficient partitioned procedures for the transient solution of aeroelastic problem, Revue Européenne des Eléments Finis, vol.9, pp.6-7655, 2000.

S. Piperno and C. Farhat, Partitioned procedures for the transient solution of coupled aroelastic problems -Part II : energy transfer analysis and three-dimensional applications, Computer Methods in Applied Mechanics and Engineering, vol.190, pp.24-253147, 2001.

S. Piperno and C. Farhat, Partitioned procedures for the transient solution of coupled aroelastic problems Part I: Model problem, theory and two-dimensional application, Computer Methods in Applied Mechanics and Engineering, vol.124, issue.1-2, pp.79-112, 1995.
DOI : 10.1016/0045-7825(95)92707-9

S. Piperno, B. Larrouturou, and M. Lesoinne, Analysis and Compensation of Numerical Damping in a One-Dimensional Aeroelastic Problem, International Journal of Computational Fluid Dynamics, vol.6, issue.2, pp.157-174, 1996.
DOI : 10.1016/0021-9991(74)90011-4

URL : https://hal.archives-ouvertes.fr/hal-00607821

V. Pomero and D. Bonneau, Le phénomène de cavitation, pp.24-27, 2002.

B. Pouffary, R. Fortes-patella, and J. Reboud, Numerical simulation of cavitating flow around a 2D hydrofoil : a barotropic approch, Fifth International Symposium on Cavitation, Japon, 2003.

B. Pouffary, R. Fortes-patella, J. Reboud, and P. Lambert, Numerical analysis of cavitation instabilities in inducer blade cascade, Journal of Fluids Engineering, vol.1308, issue.4, pp.41302-41303, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00265999

C. Rajakumar and C. Rogers, The Lanczos algorithm applied to unsymmetric generalized eigenvalue problem, International Journal for Numerical Methods in Engineering, vol.11, issue.5, pp.1009-1026, 1991.
DOI : 10.1002/nme.1620320506

C. Rhie and W. Chow, A numerical study of the turbulent flow past an isolated airfoil with trailing edge separation, 3rd Joint Thermophysics, Fluids, Plasma and Heat Transfer Conference, pp.1525-1532, 1983.
DOI : 10.2514/6.1982-998

M. Robin, Validation d'une chaîne de calcul couplé fluide-structure pour le dimensionnement des structures sous écoulement, Thèse de Master, INP ENSE3 -DCNS, 2013.

C. L. Rumsey and S. X. Ying, Prediction of high lift: review of present CFD capability, Progress in Aerospace Sciences, pp.145-180, 2002.
DOI : 10.1016/S0376-0421(02)00003-9

Y. Saito, I. Nakamori, and T. Ikohagi, Numerical analysis of unsteady vaporous cavitating flow around a hydrofoil, Fifth International Symposium on Cavitation, num. Cav03-OS-1-006, 2003.

I. Senocak, Computational methodology for the simulation of turbulent cavitating flows, Thèse de Doctorat, 2002.

I. Senocak and W. Shyy, A Pressure-Based Method for Turbulent Cavitating Flow Computations, Journal of Computational Physics, vol.176, issue.2, pp.363-383, 2002.
DOI : 10.1006/jcph.2002.6992

J. Sigrist, Méthodes numériques de calculs couplés fluide/structure : Cas du fluide s'écoulant, Techniques de l'Ingénieur. Techniques de l'Ingénieur, 2010.

A. K. Singhal, M. M. Athavale, L. Huiying, and J. Yu, Mathematical Basis and Validation of the Full Cavitation Model, Journal of Fluids Engineering, vol.124, issue.3, pp.617-624, 2002.
DOI : 10.1115/1.1486223

H. Soyoma and D. Macodiyo, Improvement of fatigue strength on stainless steel by cavitating jet in air, Fifth International Symposium on Cavitation (CAV), num. Cav03-OS-2-3-002, 2003.

N. Tani, S. Tsuda, N. Yamanishi, and Y. Yoshida, Development and validation of new cryogenic cavitation model for rocket turbopump inducer, Proceedings of the 7th International Symposium on Cavitation (CAV), num, 2009.

T. Tezduyar, S. Sathe, R. Keedy, and K. Stein, Space???time finite element techniques for computation of fluid???structure interactions, Computer Methods in Applied Mechanics and Engineering, vol.195, issue.17-18, pp.2002-2027, 2006.
DOI : 10.1016/j.cma.2004.09.014

R. Venet and A. Pavie, La cavitation à l'origine des bruits du coeur et des accidents de décompression en plongée

G. Wang and M. Ostoja-starzewski, Large eddy simulation of a sheet/cloud cavitation on a NACA0015 hydrofoil, Applied Mathematical Modelling, vol.31, issue.3, pp.417-447, 2007.
DOI : 10.1016/j.apm.2005.11.019

E. Weitendorf, On the History of Propeller Cavitation and Cavitation Tunnels, Fourth International Symposium on Cavitation, num. CAV2001 :sessionB9.001, 2001.

Y. Young, Time-dependent hydroelastic analysis of cavitating propulsors, Journal of Fluids and Structures, vol.23, issue.2, pp.269-295, 2007.
DOI : 10.1016/j.jfluidstructs.2006.09.003

Y. Young, Fluid???structure interaction analysis of flexible composite marine propellers, Journal of Fluids and Structures, vol.24, issue.6, pp.799-818, 2008.
DOI : 10.1016/j.jfluidstructs.2007.12.010

Y. Young, M. Motley, and R. Yeung, Hydroelastic Response of Wind or Tidal Turbines, Volume 4: Ocean Engineering; Ocean Renewable Energy; Ocean Space Utilization, Parts A and B, pp.2009-80087, 2009.
DOI : 10.1115/OMAE2009-80087

W. Yuan, J. Sauer, and G. Schnerr, Modeling and computation of unsteady cavitation flows in injection nozzles, M????canique & Industries, vol.2, issue.5, pp.383-394, 2001.
DOI : 10.1016/S1296-2139(01)01120-4

C. Yvin, Couplage fluide-structure par une chaîne de calculs open-source, Thèse de Master, 2010.

L. Zhang and M. Gay, Immersed finite element method for fluid-structure interactions, Journal of Fluids and Structures, vol.23, issue.6, pp.839-857, 2007.
DOI : 10.1016/j.jfluidstructs.2007.01.001

P. Zwart, A. Gerber, and T. Belamri, A two phase flow model for predicting cavitation dynamics, International Conference on Multiphase Flow ICMF, p.152, 2004.