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HALathon 2021 UPPA

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# Type Année Titre doi Notice HAL accès HAL label OA
1 ART 2021 Construction and convergence analysis of conservative second order local time discretisation for linear wave equations hal-01894357 fichier
2 ART 2019 Equivalent boundary conditions for acoustic media with exponential densities. Application to the atmosphere in helioseismology 10.1016/j.amc.2019.04.065 hal-02320521 fichier openaccess
3 ART 2019 A comparison of a one-dimensional finite element method and the transfer matrix method for the computation of wind music instrument impedance 10.3813/AAA.919364 hal-01963674 fichier openaccess
4 ART 2019 Construction and analysis of fourth order, energy consistent, family of explicit time discretizations for dissipative linear wave equations hal-01894238 fichier
5 ART 2018 Model-based digital pianos: from physics to sound synthesis 10.1109/MSP.2018.2872349 hal-01894219 fichier
6 ART 2018 Atmospheric Radiation Boundary Conditions for the Helmholtz Equation 10.1051/m2an/2017059 hal-01581834 fichier openaccess
7 ART 2017 Atmospheric radiation boundary conditions for high frequency waves in time-distance helioseismology 10.1051/0004-6361/201731283 hal-01622697 fichier arxiv
8 ART 2017 Space/Time convergence analysis of a class of conservative schemes for linear wave equations 10.1016/j.crma.2016.12.009 hal-01421882 fichier openaccess
9 ART 2017 Computational helioseismology in the frequency domain: acoustic waves in axisymmetric solar models with flows 10.1051/0004-6361/201629470 hal-01403332 fichier arxiv
10 ART 2017 Numerical robustness of single-layer method with Fourier basis for multiple obstacle acoustic scattering in homogeneous media 10.1016/j.wavemoti.2017.10.011 hal-01667176 fichier openaccess
11 ART 2016 Time Domain Simulation of a Piano. Part 2 : Numerical Aspects hal-01085477 fichier
12 ART 2015 Fourth order energy-preserving locally implicit time discretization for linear wave equations 10.1002/nme.5130 hal-01222072 fichier openaccess
13 ART 2014 Energy based simulation of a Timoshenko beam in non-forced rotation. Application to the flexible piano hammer shank. hal-00918635 fichier
14 ART 2013 Modeling and simulation of a grand piano 10.1121/1.4809649 hal-00873089 fichier
15 ART 2013 Time domain simulation of a piano. Part 1 : model description. 10.1051/m2an/2013136 hal-00913775 fichier openaccess
16 ART 2013 Introduction and study of fourth order theta schemes for linear wave equations 10.1016/j.cam.2012.12.023 hal-00873048 fichier openaccess
17 ART 2012 Stability and dispersion analysis of improved time discretization for simply supported prestressed Timoshenko systems. Application to the stiff piano string. 10.1016/j.wavemoti.2012.11.002 hal-00757096 fichier openaccess
18 ART 2010 Energy preserving schemes for nonlinear Hamiltonian systems of wave equations: Application to the vibrating piano string 10.1016/j.cma.2010.04.013 inria-00534473 fichier openaccess
19 COMM 2020 The Virtual Workshop OpenWinD : a Python Toolbox Assisting Wind Instrument Makers 10.48465/fa.2020.0568 hal-02984478 fichier
20 COMM 2020 Bore Reconstruction of Woodwind Instruments Using the Full Waveform Inversion 10.48465/fa.2020.0161 hal-02996142 fichier
21 COMM 2019 MAESSTRO: A sound synthesis framework for Computer-Aided Design of piano soundboards hal-02281818 fichier
22 COMM 2017 Direct and inverse problem in multiple-scattering of small obstacles in homogeneous media. hal-01674526 fichier
23 COMM 2016 Equivalent boundary conditions for acoustic media with exponential densities hal-01691768 fichier
24 COMM 2016 On a boundary layer phenomenon in acoustic media hal-01691616 fichier
25 COMM 2015 Performance assessments of absorbing conditions for the reverse time-harmonic migration hal-01184102 fichier
26 COMM 2015 Solving the forward problem of helioseismology in the frequency domain hal-01264023 fichier
27 COMM 2015 High Order Absorbing Boundary Conditions for the 2D Helmholtz Equation hal-01264019 fichier
28 COMM 2015 Energy analysis of structural changes in pianos hal-01296947 fichier
29 COMM 2015 Fourth-order energy-preserving locally implicit time discretization for linear wave equations 10.1002/nme.5130 hal-01264044 fichier openaccess
30 COMM 2014 Fourth order energy-preserving localy implicit discretization for linear wave equations hal-01067115 fichier
31 COMM 2013 Modeling the piano. Numerical Aspects. hal-00873629 fichier
32 COMM 2013 Modeling the grand piano hal-00873616 fichier
33 COMM 2013 Acoustics of pianos: physical modeling, simulations and experiments hal-00873639 fichier
34 COMM 2013 Numerical Analysis of a reduced formulation of an elasto-acoustic scattering problem hal-00873633 fichier
35 COMM 2013 Dispersion analysis of improved time discretization for simply supported prestressed Timoshenko systems. Application to the stiff piano string. hal-00873632 fichier
36 COMM 2011 Modeling and numerical simulation of a grand piano. hal-00688966 fichier
37 COMM 2010 Transitoires de piano et non-linéarités des cordes : mesures et simulations hal-00539771 fichier
38 COMM 2010 Modeling and numerical simulation of a nonlinear system of piano strings coupled to a soundboard. hal-00688964 fichier
39 COMM 2009 Energy preserving scheme for non linear systems of wave equations. Application to piano strings. hal-00688959 fichier
40 COUV 2013 Simuler le son d'un piano hal-00913678 fichier
41 REPORT 2020 Viscothermal models for wind musical instruments hal-02917351 fichier
42 REPORT 2019 About the transfert matrix method in the context of acoustical wave propagation in wind instruments hal-02019515 fichier
43 REPORT 2018 Solving time-harmonic Galbrun's equation with an arbitrary flow. Application to Helioseismology hal-01833043 fichier
44 REPORT 2016 High Order Finite Element Method for solving Convected Helmholtz equation in radial and axisymmetric domains. Application to Helioseismology hal-01295077 fichier
45 REPORT 2016 A study of the numerical robustness of single-layer method with Fourier basis for multiple obstacle scattering in homogeneous media hal-01408904 fichier
46 REPORT 2016 Equivalent boundary conditions for acoustic media with exponential densities. Application to the atmosphere in helioseismology hal-01371580 fichier
47 REPORT 2014 Derivation of high order absorbing boundary conditions for the Helmholtz equation in 2D hal-01085180 fichier
48 REPORT 2014 Energy based simulation of a Timoshenko beam in non-forced rotation. Application to the flexible piano hammer shank. hal-00929938 fichier
49 REPORT 2012 Modeling and simulation of a grand piano. hal-00768234 fichier
50 REPORT 2012 Physical parameters for piano modeling hal-00688679 fichier
51 REPORT 2012 Time domain simulation of a piano. Part 1 : model description. hal-00739380 fichier
52 REPORT 2012 Stability and dispersion analysis of improved time discretization for simply supported prestressed Timoshenko systems. Application to the stiff piano string. hal-00738233 fichier
53 REPORT 2012 Introduction and study of fourth order theta schemes for linear wave equations hal-00738324 fichier
54 REPORT 2012 Toucher la corde sensible hal-00913639 fichier
55 REPORT 2010 Energy Preserving Schemes for Nonlinear Hamiltonian Systems of Wave Equations. Application to the Vibrating Piano String. inria-00444470 fichier
56 THESE 2012 Modélisation et simulation numérique d'un piano par modèles physiques pastel-00690351 fichier
57 UNDEFINED 2021 Full waveform inversion for bore reconstruction of woodwind-like instruments hal-03231946 fichier

Références complètes

  1. Juliette Chabassier, Sébastien Imperiale. Construction and convergence analysis of conservative second order local time discretisation for linear wave equations. ESAIM: Mathematical Modelling and Numerical Analysis, EDP Sciences, In press. ⟨hal-01894357v4⟩
  2. Juliette Chabassier, Marc Duruflé, Victor Péron. Equivalent boundary conditions for acoustic media with exponential densities. Application to the atmosphere in helioseismology. Applied Mathematics and Computation, Elsevier, 2019, 361, pp.177-197. ⟨10.1016/j.amc.2019.04.065⟩. ⟨hal-02320521⟩
  3. Robin Tournemenne, Juliette Chabassier. A comparison of a one-dimensional finite element method and the transfer matrix method for the computation of wind music instrument impedance. Acta Acustica united with Acustica, Hirzel Verlag, 2019, 105 (5), pp.838. ⟨10.3813/AAA.919364⟩. ⟨hal-01963674v2⟩
  4. Juliette Chabassier, Julien Diaz, Sébastien Imperiale. Construction and analysis of fourth order, energy consistent, family of explicit time discretizations for dissipative linear wave equations. ESAIM: Mathematical Modelling and Numerical Analysis, EDP Sciences, In press. ⟨hal-01894238v2⟩
  5. Balazs Bank, Juliette Chabassier. Model-based digital pianos: from physics to sound synthesis. IEEE Signal Processing Magazine, Institute of Electrical and Electronics Engineers, 2018, 36 (1), pp.11. ⟨10.1109/MSP.2018.2872349⟩. ⟨hal-01894219⟩
  6. Hélène Barucq, Juliette Chabassier, Marc Duruflé, Laurent Gizon, Michael Leguèbe. Atmospheric Radiation Boundary Conditions for the Helmholtz Equation. ESAIM: Mathematical Modelling and Numerical Analysis, EDP Sciences, 2018, 52 (3), ⟨10.1051/m2an/2017059⟩. ⟨hal-01581834v2⟩
  7. Damien Fournier, Michaël Leguèbe, Chris S. Hanson, Laurent Gizon, Hélène Barucq, et al.. Atmospheric radiation boundary conditions for high frequency waves in time-distance helioseismology. Astronomy and Astrophysics - A&A, EDP Sciences, 2017, 608 (A109), pp.1-9. ⟨10.1051/0004-6361/201731283⟩. ⟨hal-01622697v2⟩
  8. Juliette Chabassier, Sebastien Imperiale. Space/Time convergence analysis of a class of conservative schemes for linear wave equations. Comptes Rendus Mathématique, Elsevier Masson, 2017, 355 (3), pp.282-289. ⟨10.1016/j.crma.2016.12.009⟩. ⟨hal-01421882⟩
  9. Laurent Gizon, Hélène Barucq, Marc Duruflé, Chris Hanson, Michael Leguèbe, et al.. Computational helioseismology in the frequency domain: acoustic waves in axisymmetric solar models with flows. Astronomy and Astrophysics - A&A, EDP Sciences, 2017, 600, pp.A35. ⟨10.1051/0004-6361/201629470⟩. ⟨hal-01403332⟩
  10. Hélène Barucq, Juliette Chabassier, Ha Pham, Sébastien Tordeux. Numerical robustness of single-layer method with Fourier basis for multiple obstacle acoustic scattering in homogeneous media. Wave Motion, Elsevier, 2017, 77, pp.40-63. ⟨10.1016/j.wavemoti.2017.10.011⟩. ⟨hal-01667176⟩
  11. Juliette Chabassier, Marc Duruflé, P Joly. Time Domain Simulation of a Piano. Part 2 : Numerical Aspects. ESAIM: Mathematical Modelling and Numerical Analysis, EDP Sciences, 2016, 50 (1), pp.93-133. ⟨hal-01085477⟩
  12. Juliette Chabassier, Sébastien Imperiale. Fourth order energy-preserving locally implicit time discretization for linear wave equations. International Journal for Numerical Methods in Engineering, Wiley, 2015, ⟨10.1002/nme.5130⟩. ⟨hal-01222072⟩
  13. Juliette Chabassier, Marc Duruflé. Energy based simulation of a Timoshenko beam in non-forced rotation. Application to the flexible piano hammer shank.. Journal of Sound and Vibration, Elsevier, 2014, 333 (26), pp.7198-7215. ⟨hal-00918635v2⟩
  14. Juliette Chabassier, Patrick Joly, Antoine Chaigne. Modeling and simulation of a grand piano. Journal of the Acoustical Society of America, Acoustical Society of America, 2013, 134, pp.648. ⟨10.1121/1.4809649⟩. ⟨hal-00873089⟩
  15. Juliette Chabassier, Antoine Chaigne, Patrick Joly. Time domain simulation of a piano. Part 1 : model description.. ESAIM: Mathematical Modelling and Numerical Analysis, EDP Sciences, 2013, 48 (05), pp.1241-1278. ⟨10.1051/m2an/2013136⟩. ⟨hal-00913775v2⟩
  16. Juliette Chabassier, Sébastien Imperiale. Introduction and study of fourth order theta schemes for linear wave equations. Journal of Computational and Applied Mathematics, Elsevier, 2013, 245, pp.194-212. ⟨10.1016/j.cam.2012.12.023⟩. ⟨hal-00873048⟩
  17. Juliette Chabassier, Sébastien Imperiale. Stability and dispersion analysis of improved time discretization for simply supported prestressed Timoshenko systems. Application to the stiff piano string.. Wave Motion, Elsevier, 2012, 50 (3), pp.456-480. ⟨10.1016/j.wavemoti.2012.11.002⟩. ⟨hal-00757096⟩
  18. Juliette Chabassier, Patrick Joly. Energy preserving schemes for nonlinear Hamiltonian systems of wave equations: Application to the vibrating piano string. Computer Methods in Applied Mechanics and Engineering, Elsevier, 2010, 199 (45-48), pp.2779-2795. ⟨10.1016/j.cma.2010.04.013⟩. ⟨inria-00534473⟩
  19. Juliette Chabassier, Augustin Ernoult, Olivier Geber, Augustin Humeau, Alexis Thibault, et al.. The Virtual Workshop OpenWinD : a Python Toolbox Assisting Wind Instrument Makers. e-Forum Acusticum, Dec 2020, Lyon / Virtual, France. ⟨10.48465/fa.2020.0568⟩. ⟨hal-02984478⟩
  20. Augustin Ernoult, Juliette Chabassier. Bore Reconstruction of Woodwind Instruments Using the Full Waveform Inversion. e-Forum Acusticum, Dec 2020, Lyon / Virtual, France. ⟨10.48465/fa.2020.0161⟩. ⟨hal-02996142⟩
  21. Benjamin Elie, Xavier Boutillon, Juliette Chabassier, Kerem Ege, Bernard Laulagnet, et al.. MAESSTRO: A sound synthesis framework for Computer-Aided Design of piano soundboards. ISMA 2019, Sep 2019, Detmold, Germany. ⟨hal-02281818v2⟩
  22. Ha Pham, Hélène Barucq, Juliette Chabassier, Sébastien Tordeux. Direct and inverse problem in multiple-scattering of small obstacles in homogeneous media.. Journées jeunes chercheur-e-s sur la résolution de problèmes d’ondes harmoniques de grande taille, Nov 2017, Paris, France. pp.1-64. ⟨hal-01674526⟩
  23. Juliette Chabassier, Marc Duruflé, Victor Péron. Equivalent boundary conditions for acoustic media with exponential densities. Eighth Singular Days , Jun 2016, Nancy, France. ⟨hal-01691768⟩
  24. Hélène Barucq, Juliette Chabassier, Marc Duruflé, Victor Péron. On a boundary layer phenomenon in acoustic media. WONAPDE 2016 - 5th Chilean Workshop on Numerical Analysis of Partial Differential Equations, Jan 2016, Concepción, Chile. pp.1-42. ⟨hal-01691616⟩
  25. Hélène Barucq, Morgane Bergot, Juliette Chabassier, Julien Diaz. Performance assessments of absorbing conditions for the reverse time-harmonic migration. PANACM 2015 - 1st Pan-American Congress on Computational Mechanic, Apr 2015, Buenos Aires, Argentina. pp.1-8. ⟨hal-01184102⟩
  26. Laurent Gizon, Hélène Barucq, Marc Duruflé, C. Aaron Birch, Juliette Chabassier, et al.. Solving the forward problem of helioseismology in the frequency domain. THE 12TH INTERNATIONAL CONFERENCE ON MATHEMATICAL AND NUMERICAL ASPECTS OF WAVE PROPAGATION, Jul 2015, Karlsruhe, Germany. ⟨hal-01264023⟩
  27. Hélène Barucq, Juliette Chabassier, Morgane Bergot. High Order Absorbing Boundary Conditions for the 2D Helmholtz Equation. THE 12TH INTERNATIONAL CONFERENCE ON MATHEMATICAL AND NUMERICAL ASPECTS OF WAVE PROPAGATION, Jul 2015, Karlsruhe, Germany. ⟨hal-01264019⟩
  28. Antoine Chaigne, Juliette Chabassier, Marc Duruflé. Energy analysis of structural changes in pianos. Vienna Talk on Music Acoustics, Sep 2015, Vienna, Austria. ⟨hal-01296947⟩
  29. Juliette Chabassier, Sebastien Imperiale. Fourth-order energy-preserving locally implicit time discretization for linear wave equations. WAVES 2015 - The 12th international conference on mathematical and numerical aspects of wave propagation, Jul 2015, Karlsruhe, Germany. ⟨10.1002/nme.5130⟩. ⟨hal-01264044⟩
  30. Juliette Chabassier, Sébastien Imperiale. Fourth order energy-preserving localy implicit discretization for linear wave equations. SECOND FRENCH-RUSSIAN WORKSHOP ON COMPUTATIONAL GEOPHYSICS, Sep 2014, Novosibirsk, Russia. ⟨hal-01067115⟩
  31. Juliette Chabassier, Antoine Chaigne, Marc Duruflé, Patrick Joly. Modeling the piano. Numerical Aspects.. WAVES 13 : 11th International Conference on Mathematical and Numerical Aspects of Waves, Jun 2013, Tunis, Tunisia. ⟨hal-00873629⟩
  32. Antoine Chaigne, Juliette Chabassier, Patrick Joly. Modeling the grand piano. WAVES 13 : 11th International Conference on Mathematical and Numerical Aspects of Waves, Jun 2013, Tunis, Tunisia. ⟨hal-00873616⟩
  33. Antoine Chaigne, Juliette Chabassier, Nicolas Burban. Acoustics of pianos: physical modeling, simulations and experiments. SMAC 2013 - Stockholm Music Acoustics Conference 2013, KTH Royal Institute of Technology, Jul 2013, Stockholm, Sweden. ⟨hal-00873639⟩
  34. Hélène Barucq, Juliette Chabassier, Julien Diaz, Elodie Estecahandy. Numerical Analysis of a reduced formulation of an elasto-acoustic scattering problem. WAVES 13 : 11th International Conference on Mathematical and Numerical Aspects of Waves, Jun 2013, Gammarth, Tunisia. ⟨hal-00873633⟩
  35. Juliette Chabassier, Sébastien Imperiale. Dispersion analysis of improved time discretization for simply supported prestressed Timoshenko systems. Application to the stiff piano string.. WAVES 13 : 11th International Conference on Mathematical and Numerical Aspects of Waves, Jun 2013, Tunis, Tunisia. ⟨hal-00873632⟩
  36. Juliette Chabassier, Patrick Joly. Modeling and numerical simulation of a grand piano.. WAVES 11 : 10th International Conference on Mathematical and Numerical Aspects of Wawes, Jul 2011, Vancouver, Canada. pp.00. ⟨hal-00688966⟩
  37. Juliette Chabassier, Antoine Chaigne, Patrick Joly. Transitoires de piano et non-linéarités des cordes : mesures et simulations. 10ème Congrès Français d'Acoustique, Apr 2010, Lyon, France. ⟨hal-00539771⟩
  38. Juliette Chabassier, Antoine Chaigne. Modeling and numerical simulation of a nonlinear system of piano strings coupled to a soundboard.. ICA 2010 : 20th International Congress on Acoustics, Aug 2010, Syndey, Katoomba, Australia. pp.590. ⟨hal-00688964⟩
  39. Juliette Chabassier, Patrick Joly. Energy preserving scheme for non linear systems of wave equations. Application to piano strings.. WAVES 2009 : The 9th International Conference on Mathematical and Numerical Aspects of Wawes Propagation, Jun 2009, Pau, France. pp.00. ⟨hal-00688959⟩
  40. Juliette Chabassier. Simuler le son d'un piano. Mathématiques de la Planète Terre, 2013. ⟨hal-00913678⟩
  41. Alexis Thibault, Juliette Chabassier. Viscothermal models for wind musical instruments. [Research Report] RR-9356, Inria Bordeaux Sud-Ouest. 2020. ⟨hal-02917351⟩
  42. Juliette Chabassier, Robin Tournemenne. About the transfert matrix method in the context of acoustical wave propagation in wind instruments. [Research Report] RR-9254, INRIA Bordeaux. 2019. ⟨hal-02019515⟩
  43. Juliette Chabassier, Marc Duruflé. Solving time-harmonic Galbrun's equation with an arbitrary flow. Application to Helioseismology. [Research Report] RR-9192, INRIA Bordeaux. 2018. ⟨hal-01833043⟩
  44. Juliette Chabassier, Marc Duruflé. High Order Finite Element Method for solving Convected Helmholtz equation in radial and axisymmetric domains. Application to Helioseismology. [Research Report] RR-8893, Inria Bordeaux Sud-Ouest. 2016. ⟨hal-01295077⟩
  45. Hélène Barucq, Juliette Chabassier, Ha Pham, Sébastien Tordeux. A study of the numerical robustness of single-layer method with Fourier basis for multiple obstacle scattering in homogeneous media. [Research Report] RR-8988, Inria Bordeaux Sud-Ouest. 2016. ⟨hal-01408904⟩
  46. Juliette Chabassier, Marc Duruflé, Victor Péron. Equivalent boundary conditions for acoustic media with exponential densities. Application to the atmosphere in helioseismology. [Research Report] RR-8954, Inria Bordeaux Sud-Ouest; Université de Pau et des Pays de l'Adour; Université de Bordeaux. 2016. ⟨hal-01371580⟩
  47. Hélène Barucq, Morgane Bergot, Juliette Chabassier, Elodie Estecahandy. Derivation of high order absorbing boundary conditions for the Helmholtz equation in 2D. [Research Report] RR-8632, INRIA Bordeaux; INRIA. 2014. ⟨hal-01085180⟩
  48. Juliette Chabassier, Marc Duruflé. Energy based simulation of a Timoshenko beam in non-forced rotation. Application to the flexible piano hammer shank.. [Research Report] RR-8450, INRIA. 2014, pp.24. ⟨hal-00929938⟩
  49. Juliette Chabassier, Antoine Chaigne, Patrick Joly. Modeling and simulation of a grand piano.. [Research Report] RR-8181, INRIA. 2012, pp.29. ⟨hal-00768234v3⟩
  50. Juliette Chabassier, Marc Duruflé. Physical parameters for piano modeling. [Technical Report] RT-0425, INRIA. 2012, pp.24. ⟨hal-00688679v2⟩
  51. Juliette Chabassier, Antoine Chaigne, Patrick Joly. Time domain simulation of a piano. Part 1 : model description.. [Research Report] RR-8097, INRIA. 2012. ⟨hal-00739380⟩
  52. Juliette Chabassier, Sébastien Imperiale. Stability and dispersion analysis of improved time discretization for simply supported prestressed Timoshenko systems. Application to the stiff piano string.. [Research Report] RR-8088, INRIA. 2012, pp.39. ⟨hal-00738233v2⟩
  53. Juliette Chabassier, Sébastien Imperiale. Introduction and study of fourth order theta schemes for linear wave equations. [Research Report] RR-8090, INRIA. 2012, pp.31. ⟨hal-00738324v2⟩
  54. Juliette Chabassier. Toucher la corde sensible. [Rapport de recherche] GENCI. 2012. ⟨hal-00913639⟩
  55. Juliette Chabassier, Patrick Joly. Energy Preserving Schemes for Nonlinear Hamiltonian Systems of Wave Equations. Application to the Vibrating Piano String.. [Research Report] RR-7168, INRIA. 2010, pp.70. ⟨inria-00444470⟩
  56. Juliette Chabassier. Modélisation et simulation numérique d'un piano par modèles physiques. Analyse numérique [math.NA]. Ecole Polytechnique X, 2012. Français. ⟨pastel-00690351⟩
  57. Augustin Ernoult, Juliette Chabassier, Samuel Rodriguez, Augustin Humeau. Full waveform inversion for bore reconstruction of woodwind-like instruments. 2021. ⟨hal-03231946⟩