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1.Vladimir E. OSTASHEVorcid_16x16.png, D. Keith WILSONorcid_16x16.png, Carl R. HARTorcid_16x16.png, Baptiste CHIDEorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png (2024).
Discussion of sound propagation through the turbulent Martian atmosphere and implications for inference of turbulence spectra
J. Acoust. Soc. Am. 156, 1165–1170. doi:10.1121/10.0028166 doi.ico openalex-16x16.png
2.Virginie DARUorcid_16x16.png, Bjarne VINCENTorcid_16x16.png, Michael BAUDOINorcid_16x16.png (2024).
High-speed and acceleration micrometric jets induced by GHz streaming: A numerical study with direct numerical simulations
J. Acoust. Soc. Am. 155, 2470–2481. doi:10.1121/10.0025462 doi.ico hal.ico openalex-16x16.png
3.Laura MARTIN-MARTINorcid_16x16.png, Vincent CLAIRorcid_16x16.png, Christophe BOGEYorcid_16x16.png, Gwénaël GABARDorcid_16x16.png (2024).
Numerical study of the scattering of acoustic waves by an elliptic vortex
J. Acoust. Soc. Am. 155, 1707–1718. doi:10.1121/10.0025138 doi.ico openalex-16x16.png
4.Vladimir E. OSTASHEVorcid_16x16.png, Jules COLASorcid_16x16.png, Didier DRAGNAorcid_16x16.png, D. Keith WILSONorcid_16x16.png (2024).
Phase-preserving narrow- and wide-angle parabolic equations for sound propagation in moving media
J. Acoust. Soc. Am. 155, 1086–1102. doi:10.1121/10.0024460 doi.ico openalex-16x16.png
5.Baptiste CHIDEorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png, Tanguy BERTRAND, Xavier JACOB, Jérémie LASUE, Ralph LORENZorcid_16x16.png, Franck MONTMESSINorcid_16x16.png, Naomi MURDOCHorcid_16x16.png, George PLA-GARCÍAorcid_16x16.png, Fabien SEELorcid_16x16.png, Susanne SCHRÖDER, Alexander E. STOTTorcid_16x16.png, Manuel de la Torre JUAREZorcid_16x16.png, Roger C. WIENSorcid_16x16.png (2024).
An acoustic investigation of the near-surface turbulence on Mars
J. Acoust. Soc. Am. 155, 420–432. doi:10.1121/10.0024347 doi.ico openalex-16x16.png
6.Ariane EMMANUELLIorcid_16x16.png, Didier DRAGNAorcid_16x16.png, Sébastien OLLIVIER, Philippe BLANC-BENONorcid_16x16.png (2023).
Sonic boom propagation over real topography
J. Acoust. Soc. Am. 154, 16–27. doi:10.1121/10.0019938 doi.ico hal.ico openalex-16x16.png
7.Jules COLASorcid_16x16.png, Ariane EMMANUELLIorcid_16x16.png, Didier DRAGNAorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png, Benjamin COTTÉorcid_16x16.png, Richard J. A. M. STEVENSorcid_16x16.png (2023).
Wind turbine sound propagation: Comparison of a linearized Euler equations model with parabolic equation methods
J. Acoust. Soc. Am. 154, 1413–1426. doi:10.1121/10.0020834 doi.ico hal.ico openalex-16x16.png
8.Didier DRAGNAorcid_16x16.png, Ariane EMMANUELLIorcid_16x16.png, Sébastien OLLIVIER, Philippe BLANC-BENONorcid_16x16.png (2022).
Sonic boom reflection over urban areas
J. Acoust. Soc. Am. 152, 3323–3339. doi:10.1121/10.0016442 doi.ico openalex-16x16.png
9.Didier DRAGNAorcid_16x16.png, Ariane EMMANUELLIorcid_16x16.png, Sébastien OLLIVIER, Philippe BLANC-BENONorcid_16x16.png (2022).
Sonic boom reflection over an isolated building and multiple buildings
J. Acoust. Soc. Am. 151, 3792 (15 pages). doi:10.1121/10.0010452 doi.ico openalex-16x16.png
10.Arthur GUIBARDorcid_16x16.png, Frédéric SÈBEorcid_16x16.png, Didier DRAGNAorcid_16x16.png, Sébastien OLLIVIER (2022).
Influence of meteorological conditions and topography on the active space of mountain birds assessed by a wave-based sound propagation model
J. Acoust. Soc. Am. 151, 3703 (16 pages). doi:10.1121/10.0011545 doi.ico openalex-16x16.png
11.Torea BLANCHARD, Pierre LECOMTEorcid_16x16.png, Manuel MELONorcid_16x16.png, Laurent SIMONorcid_16x16.png, K. HASSAN, R. NICOL (2022).
Experimental acoustic scene analysis using One-Eighth spherical fraction microphone array
J. Acoust. Soc. Am. 151, 180–192. doi:10.1121/10.0009230 doi.ico openalex-16x16.png
12.Pierre PINEAUorcid_16x16.png, Christophe BOGEYorcid_16x16.png (2021).
Numerical investigation of wave steepening and shock coalescence near a cold Mach 3 jet
J. Acoust. Soc. Am. 149, 357–370. doi:10.1121/10.0003343 doi.ico hal.ico openalex-16x16.png
13.Gabriel REGNAULTorcid_16x16.png, Cyril MAUGERorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png, Alexander A. DOINIKOVorcid_16x16.png, Claude INSERRAorcid_16x16.png (2021).
Signatures of microstreaming patterns induced by non-spherically oscillating bubbles
J. Acoust. Soc. Am. 150, 1188–11971. doi:10.1121/10.0005821 doi.ico hal.ico openalex-16x16.png
14.Ariane EMMANUELLIorcid_16x16.png, Didier DRAGNAorcid_16x16.png, Sébastien OLLIVIER, Philippe BLANC-BENONorcid_16x16.png (2021).
Characterization of topographic effects on sonic boom reflection by resolution of the Euler equations
J. Acoust. Soc. Am. 149, 2437 (14 pages). doi:10.1121/10.0003816 doi.ico hal.ico openalex-16x16.png
15.Alice DINSENMEYERorcid_16x16.png, Jérôme ANTONI, Quentin LECLÈRE, Antonio PEREIRAorcid_16x16.png (2020).
A probabilistic approach for cross-spectral matrix denoising: Benchmarking with some recent methods
J. Acoust. Soc. Am. 147, 3108–3123. doi:10.1121/10.0001098 doi.ico hal.ico openalex-16x16.png
16.Adrien DAGALLIER, Sylvain CHEINET, Mathias COSNEFROY, Winfried RICKERT, Thomas WEßLING, Pierre WEY, Daniel JUVÉ (2019).
Long-range acoustic localization of artillery shots using distributed synchronous acoustic sensors
J. Acoust. Soc. Am. 146, 4860–4872. doi:10.1121/1.5138927 doi.ico hal.ico openalex-16x16.png
17.Maria M. KARZOVA, Thomas LECHAT, Sébastien OLLIVIER, Didier DRAGNAorcid_16x16.png, Petr V. YULDASHEV, Vera A. KHOKHLOVA, Philippe BLANC-BENONorcid_16x16.png (2019).
Effect of surface roughness on nonlinear reflection of weak shock waves
J. Acoust. Soc. Am. 146, EL438–EL443. doi:10.1121/1.5133737 doi.ico hal.ico openalex-16x16.png
18.Maria M. KARZOVA, Thomas LECHAT, Sébastien OLLIVIER, Didier DRAGNAorcid_16x16.png, Petr V. YULDASHEV, Vera A. KHOKHLOVA, Philippe BLANC-BENONorcid_16x16.png (2019).
Irregular reflection of spark-generated shock pulses from a rigid surface: Mach-Zehnder interferometry measurements in air
J. Acoust. Soc. Am. 145, 26–35. doi:10.1121/1.5084266 doi.ico hal.ico openalex-16x16.png
19.Didier DRAGNAorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png (2017).
Sound propagation over the ground with a random spatially-varying surface admittance
J. Acoust. Soc. Am. 142, 2058–2072. doi:10.1121/1.5006180 doi.ico hal.ico openalex-16x16.png
20.Petr V. YULDASHEV, Sébastien OLLIVIER, Maria M. KARZOVA, Vera A. KHOKHLOVA, Philippe BLANC-BENONorcid_16x16.png (2017).
Statistics of peak overpressure and shock steepness for linear and nonlinear N-wave propagation in a kinematic turbulence
J. Acoust. Soc. Am. 142, 3402–3415. doi:10.1121/1.5015991 doi.ico hal.ico openalex-16x16.png
*.Thomas HAINAUT, Gwénaël GABARDorcid_16x16.png, Vincent CLAIRorcid_16x16.png (2016).
A numerical study of inflow turbulence distortion in the vicinity of blade leading edges
J. Acoust. Soc. Am. 140. doi:10.1121/1.4970824 doi.ico hal.ico openalex-16x16.png
21.Roberto SABATINI, Olivier MARSDEN, Christophe BAILLYorcid_16x16.png, Christophe BOGEYorcid_16x16.png (2016).
A numerical study of nonlinear infrasound propagation in a windy atmosphere
J. Acoust. Soc. Am. 140, 641. doi:10.1121/1.4958998 doi.ico hal.ico openalex-16x16.png
22.Pavel S. PETROV, Frédéric STURM (2016).
An explicit analytical solution for sound propagation in a three-dimensional penetrable wedge with small apex angle
J. Acoust. Soc. Am. 139, 1343–1352. doi:10.1121/1.4944692 doi.ico hal.ico openalex-16x16.png
23.Frédéric STURM (2016).
Leading-order cross term correction of three-dimensional parabolic equation models
J. Acoust. Soc. Am. 139, 263–270. doi:10.1121/1.4939735 doi.ico hal.ico openalex-16x16.png
24.Petr V. YULDASHEV, Maria M. KARZOVA, Vera A. KHOKHLOVA, Sébastien OLLIVIER, Philippe BLANC-BENONorcid_16x16.png (2015).
Mach-Zehnder interferometry method for acoustic shock wave measurements in air and broadband calibration of microphones
J. Acoust. Soc. Am. 137, 3314–3324. doi:10.1121/1.4921549 doi.ico hal.ico openalex-16x16.png
25.Maria M. KARZOVA, Vera A. KHOKHLOVA, Sébastien OLLIVIER, Édouard SALZEorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png (2015).
Characterization of spark-generated N-waves in air using an optical schlieren method
J. Acoust. Soc. Am. 137, 3244–3252. doi:10.1121/1.4921026 doi.ico hal.ico openalex-16x16.png
26.Sébastien OLLIVIER, Petr V. YULDASHEV, Cyril DESJOUY, Maria M. KARZOVA, Édouard SALZEorcid_16x16.png, Alexandra KOUMELA, Libor RUFER, Philippe BLANC-BENONorcid_16x16.png (2015).
Calibration of high frequency MEMS microphones and pressure sensors in the range 10 kHz–1 MHz
J. Acoust. Soc. Am. 138, 1823. doi:10.1121/1.4933787 doi.ico hal.ico openalex-16x16.png
27.Maria M. KARZOVA, Vera A. KHOKHLOVA, Édouard SALZEorcid_16x16.png, Sébastien OLLIVIER, Philippe BLANC-BENONorcid_16x16.png (2015).
Mach stem formation in reflection and focusing of weak shock acoustic pulses
J. Acoust. Soc. Am. 137, EL436 –EL442. doi:10.1121/1.4921681 doi.ico hal.ico openalex-16x16.png
28.Didier DRAGNAorcid_16x16.png, Keith ATTENBOROUGH, Philippe BLANC-BENONorcid_16x16.png (2015).
On the inadvisability of using single parameter impedance models for representing the acoustical properties of ground surfaces
J. Acoust. Soc. Am. 138, 2399–2413. doi:10.1121/1.4931447 doi.ico hal.ico openalex-16x16.png
29.Didier DRAGNAorcid_16x16.png, Pierre PINEAUorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png (2015).
A generalized recursive convolution method for time-domain propagation in porous media
J. Acoust. Soc. Am. 138, 1030–1042. doi:10.1121/1.4927553 doi.ico hal.ico openalex-16x16.png
30.Maarten C. J. HORNIKX, Didier DRAGNAorcid_16x16.png (2015).
Application of the Fourier pseudospectral time-domain method in orthogonal curvilinear coordinates for near-rigid moderately curved surfaces
J. Acoust. Soc. Am. 138, 425–435. doi:10.1121/1.4922954 doi.ico hal.ico openalex-16x16.png
31.Édouard SALZEorcid_16x16.png, Petr V. YULDASHEV, Sébastien OLLIVIER, Vera A. KHOKHLOVA, Philippe BLANC-BENONorcid_16x16.png (2014).
Laboratory-scale experiment to study nonlinear N-wave distortion by thermal turbulence
J. Acoust. Soc. Am. 136, 556–566. doi:10.1121/1.4887458 doi.ico hal.ico openalex-16x16.png
32.Olivier MARSDEN, Christophe BOGEYorcid_16x16.png, Christophe BAILLYorcid_16x16.png (2014).
A study of infrasound propagation based on high-order finite difference solutions of the Navier-Stokes equations
J. Acoust. Soc. Am. 135, 1083–1095. doi:10.1121/1.4864793 doi.ico hal.ico openalex-16x16.png
33.Didier DRAGNAorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png, Franck POISSON (2014).
Impulse propagation over a complex site: A comparison of experimental results and numerical predictions
J. Acoust. Soc. Am. 135, 1096–1105. doi:10.1121/1.4864286 doi.ico hal.ico openalex-16x16.png
34.Loïc EHRHARDT, Sylvain CHEINET, Daniel JUVÉ, Philippe BLANC-BENONorcid_16x16.png (2013).
Evaluating a linearized Euler equations model for strong turbulence effects on sound propagation
J. Acoust. Soc. Am. 133, 1922–1933. doi:10.1121/1.4792150 doi.ico hal.ico openalex-16x16.png
35.Frédéric STURM, Alexios KORAKAS (2013).
Comparisons of laboratory scale measurements of three-dimensional acoustic propagation with solutions by a parabolic equation model
J. Acoust. Soc. Am. 133, 108–118. doi:10.1121/1.4770252 doi.ico hal.ico openalex-16x16.png
36.Didier DRAGNAorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png, Franck POISSON (2013).
Time-domain solver in curvilinear coordinates for outdoor sound propagation over complex terrain
J. Acoust. Soc. Am. 133, 3751–3763. doi:10.1121/1.4803863 doi.ico hal.ico openalex-16x16.png
37.Sylvain CHEINET, Loïc EHRHARDT, Daniel JUVÉ, Philippe BLANC-BENONorcid_16x16.png (2012).
Unified modeling of turbulence effects on sound propagation
J. Acoust. Soc. Am. 132, 2198–2209. doi:10.1121/1.4748584 doi.ico openalex-16x16.png
38.Mikhael AVERIYANOV, Sébastien OLLIVIER, Vera A. KHOKHLOVA, Philippe BLANC-BENONorcid_16x16.png (2011).
Random focusing of nonlinear acoustic N-waves in fully developed turbulence: laboratory scale experiment
J. Acoust. Soc. Am. 130 (13 pages). doi:10.1121/1.3652869 doi.ico openalex-16x16.png
39.Mikhael AVERIYANOV, Philippe BLANC-BENONorcid_16x16.png, Robin CLEVELAND, Vera A. KHOKHLOVA (2011).
Nonlinear and diffraction effects in propagation of N-waves in randomly inhomogeneous moving media
J. Acoust. Soc. Am. 129, 1760–1772. doi:10.1121/1.3557034 doi.ico openalex-16x16.png
40.Petr V. YULDASHEV, Sébastien OLLIVIER, Mikhael AVERIYANOV, Oleg SAPOZHNIKOV, Vera A. KHOKHLOVA, Philippe BLANC-BENONorcid_16x16.png (2010).
Nonlinear propagation of spark-generated N-waves in air : Modeling and measurements using acoustical and optical methods
J. Acoust. Soc. Am. 128, 3321–3333. doi:10.1121/1.3505106 doi.ico openalex-16x16.png
41.Blandine ARGUILLAT, Denis RICOT, Christophe BAILLYorcid_16x16.png, Gilles ROBERT (2010).
Measured wavenumber : Frequency spectrum associated with acoustic and aerodynamic wall pressure fluctuations
J. Acoust. Soc. Am. 128, 1655. doi:10.1121/1.3478780 doi.ico openalex-16x16.png
42.Alexios KORAKAS, Frédéric STURM, J.-P. SESSAREGO, D. FERRAND (2009).
Scaled model experiment of long-range across-slope pulse propagation in a penetrable wedge
J. Acoust. Soc. Am. 126, EL22–EL27. doi:10.1121/1.3141890 doi.ico openalex-16x16.png
43.Benjamin COTTÉorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png (2009).
Time-domain simulations of sound propagation in a stratified atmosphere over an impedance ground
J. Acoust. Soc. Am. 125, EL202–EL207. doi:10.1121/1.3104633 doi.ico openalex-16x16.png
44.Frédéric STURM, S. IVANSSON, Y. JIANG, N. CHAPMAN (2008).
Numerical investigation of out-of-plane sound propagation in a shallow water experiment
J. Acoust. Soc. Am. 124, EL341–EL346. doi:10.1121/1.3008068 doi.ico openalex-16x16.png
45.Arganthaël BERSON, Philippe BLANC-BENONorcid_16x16.png (2007).
Nonperiodicity of the flow within the gap of a thermoacoustic couple at high amplitudes
J. Acoust. Soc. Am. 122, EL122–EL127. doi:10.1121/1.2771370 doi.ico openalex-16x16.png
46.Benjamin COTTÉorcid_16x16.png, R. Lee CULVER, David L. BRADLEY (2007).
Scintillation index of high frequency acoustic signals forward scattered by the ocean surface
J. Acoust. Soc. Am. 121, 120–131. doi:10.1121/1.2382457 doi.ico openalex-16x16.png
47.Bertrand LIHOREAU, Benoît GAUVREAU, Michel BÉRENGIER, Philippe BLANC-BENONorcid_16x16.png, Isabelle CALMET (2006).
Outdoor sound propagation modeling in realistic environments: Application of coupled parabolic and atmospheric models
J. Acoust. Soc. Am. 120, 110–119. doi:10.1121/1.2204455 doi.ico hal.ico openalex-16x16.png
48.Denis RICOT, R. CAUSSE, N. MISDARIIS (2005).
Aerodynamic excitation and sound production of blown-closed free reeds without acoustic coupling : the example of the accordion reed.
J. Acoust. Soc. Am. 117, 2279–2290.
49.Frédéric STURM (2005).
Numerical study of broadband sound pulse propagation in three-dimensional oceanic waveguides.
J. Acoust. Soc. Am. 117, 1058–1079. doi:10.1121/1.1855791 doi.ico openalex-16x16.png
50.Jean-Pierre DALMONT, Joël GILBERT, Jean KERGOMARD, Sébastien OLLIVIER (2005).
An analytical prediction of the oscillation and extinction thresholds of a clarinet
J. Acoust. Soc. Am. 118, 3294–3305. doi:10.1121/1.2041207 doi.ico openalex-16x16.png
51.David MARX, Philippe BLANC-BENONorcid_16x16.png (2005).
Computation of the temperature distortion in the stack of a standing-wave thermoacoustic refrigerator.
J. Acoust. Soc. Am. 118, 2993–2999. doi:10.1121/1.2063087 doi.ico openalex-16x16.png
52.Frédéric STURM, J.A. FAWCETT (2003).
On the use of higher-order azimuthal schemes in 3-D PE modeling
J. Acoust. Soc. Am. 113, 3134–3145. doi:10.1121/1.1572138 doi.ico openalex-16x16.png
53.Jean-Pierre DALMONT, Joël GILBERT, Sébastien OLLIVIER (2003).
Nonlinear characteristics of single-reed instruments: quasistatic volume flow and reed opening measurements
J. Acoust. Soc. Am. 114, 2253–2262. doi:10.1121/1.1603235 doi.ico openalex-16x16.png
54.Benoît GAUVREAU, Michel BÉRENGIER, Philippe BLANC-BENONorcid_16x16.png, Claude DEPOLLIER (2002).
Traffic noise prediction with the PE method : validation of a split-step Pade approach in complex environments.
J. Acoust. Soc. Am. 112, 2680–2687. doi:10.1121/1.1509074 doi.ico openalex-16x16.png
55.Philippe BLANC-BENONorcid_16x16.png, Bart LIPKENS, Laurent DALLOIS, Mark F. HAMILTON, David T. BLACKSTOCK (2002).
Propagation of finite amplitude sound through turbulence : modelling with geometrical acoustics and the parabolic approximation.
J. Acoust. Soc. Am. 11, 487–498. doi:10.1121/1.1404378 doi.ico openalex-16x16.png
56.Vladimir E. OSTASHEVorcid_16x16.png, Erik M. SALOMONS, Steven F. CLIFFORD, R.J. LATAITIS, D. Keith WILSONorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png, Daniel JUVÉ (2001).
Sound propagation in a turbulent atmosphere near the ground : a parabolic equation approach.
J. Acoust. Soc. Am. 109, 1894–1908. doi:10.1121/1.1356022 doi.ico openalex-16x16.png
57.N. RIZET, M. BRISSAUD, P. GONNARD, Jean-Christophe BÉRA, Michel SUNYACH (2000).
Modal control of beam flexural vibration.
J. Acoust. Soc. Am. 107, 2061–2067.
58.Marc C. JACOBorcid_16x16.png, Alain LOUISOT, Sylvie GUERRAND (1999).
Measurements of sound radiated by turbulent wall jets past singularities
J. Acoust. Soc. Am. 105, 1136. doi:10.1121/1.425411 doi.ico hal.ico openalex-16x16.png
59.Patrick CHEVRET, Philippe BLANC-BENONorcid_16x16.png, Daniel JUVÉ (1996).
A numerical model for sound propagation through a turbulent atmosphere near the ground.
J. Acoust. Soc. Am. 100, 3587–3599. doi:10.1121/1.417224 doi.ico openalex-16x16.png
60.Michael J. KARWEIT, Philippe BLANC-BENONorcid_16x16.png, Daniel JUVÉ, Geneviève COMTE-BELLOT (1991).
Simulation of the propagation of an acoustic wave through a turbulent velocity field : a study of phase variance.
J. Acoust. Soc. Am. 89, 52–62. doi:10.1121/1.400415 doi.ico hal.ico openalex-16x16.png
61.E. JAILLARDON, M. CATTARELLI, L. ASTIC, Bernard GAY (1991).
Model of the rat nasal cavity anatomy by a CAD code.
J. Acoust. Soc. Am. 16, 836.
62.Daniel JUVÉ (1988).
A note on the use of intensity vector maps for source identification
J. Acoust. Soc. Am. 83, 1936–1939. doi:10.1121/1.396478 doi.ico hal.ico openalex-16x16.png
 
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