An overview of testing methods for aeroengine fan noise
暂无分享,去创建一个
Xun Huang | Huanxian Bu | Xin Zhang | Xin Zhang | Xun Huang | Huanxian Bu
[1] Huanxian Bu,et al. A conceptual study of utilizing compressive-sensing-based fan noise mode detection for aeroengine prognostic and health management. , 2020, The Journal of the Acoustical Society of America.
[2] Xun Huang,et al. Experimental Analysis of Cooling Fan Noise by Wavelet-Based Beamforming and Proper Orthogonal Decomposition , 2020, IEEE Access.
[3] Mats Åbom,et al. Acoustic plane-wave decomposition by means of multilayer perceptron neural networks , 2020 .
[4] Shane V. Lympany,et al. Methodology for Measuring Higher-Order Acoustic Modes in Uniform Heated Flows , 2020 .
[5] Xiaofeng Sun,et al. On the role of acoustic reflections from duct boundaries in fan flutter , 2020 .
[6] Bo Peng,et al. Experimental study of airfoil-rotor interaction noise by wavelet beamforming. , 2020, The Journal of the Acoustical Society of America.
[7] Xun Huang,et al. Deep neural networks for waves assisted by the Wiener–Hopf method , 2020, Proceedings of the Royal Society A.
[8] Ce Zhang,et al. Beamforming of phased microphone array for rotating sound source localization , 2020 .
[9] Justin Jaworski,et al. Aeroacoustics of Silent Owl Flight , 2020 .
[10] Huanxian Bu,et al. A compressive-sensing-based method for radial mode analysis of aeroengine fan noise , 2020 .
[11] Jianyun Yangzhou,et al. A deep neural network approach to acoustic source localization in a shallow water tank experiment. , 2019, The Journal of the Acoustical Society of America.
[12] P. Spalart,et al. Unsteady Simulations of a Fan/Outlet-Guide-Vane System: Broadband-Noise Computation , 2019, AIAA Journal.
[13] Siyang Zhong,et al. An efficient computation of cascade-gust interaction noise based on a hybrid analytical and boundary element method , 2019, Journal of Sound and Vibration.
[14] Mats Åbom,et al. AI methods for duct acoustics , 2019, The Journal of the Acoustical Society of America.
[15] Fernando Gea-Aguilera,et al. On the effects of fan wake modelling and vane design on cascade noise , 2019, Journal of Sound and Vibration.
[16] P. Jeschke,et al. Rotor–Stator Interactions in a 2.5-Stage Axial Compressor—Part I: Experimental Analysis of Tyler–Sofrin Modes , 2019, Journal of Turbomachinery.
[17] Xun Huang,et al. A tutorial example of duct acoustics mode detections with machine-learning-based compressive sensing. , 2019, The Journal of the Acoustical Society of America.
[18] Xavier Ottavy,et al. Project PHARE-2—A High-Speed UHBR Fan Test Facility for a New Open-Test Case , 2019, Journal of Turbomachinery.
[19] D. Sutliff. A 20 Year Retrospective of The Advanced Noise Control Fan – Contributions to Turbofan Noise Research , 2019, AIAA Propulsion and Energy 2019 Forum.
[20] P. Tucker,et al. Toward Future Installations: Mutual Interactions of Short Intakes With Modern High Bypass Fans , 2019, Journal of Turbomachinery.
[21] Huanxian Bu,et al. Compressive sensing method with enhanced sparsity for aeroengine duct mode detection. , 2019, The Journal of the Acoustical Society of America.
[22] P. Jeschke,et al. Rotor–Stator Interactions in a 2.5-Stage Axial Compressor—Part II: Impact of Aerodynamic Modeling on Forced Response , 2019, Journal of Turbomachinery.
[23] Wr Graham,et al. Cross-Correlation-Based Identification of Rotating Sources , 2019, AIAA Journal.
[24] Harry Brouwer,et al. Phased array beamforming to identify broadband noise sources in the interstage section of a turbofan engine , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[25] Michael G. Jones,et al. Design of an Advanced Inlet Liner for the Quiet Technology Demonstrator 3 , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[26] Taylor R. Marotta,et al. Comparison of In-Duct Phased Array Measurements , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[27] Danillo C. Reis,et al. Inlet liner design for a fan noise test rig , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[28] S. Rienstra. Solutions and Properties of the Pridmore-Brown equation , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[29] U. Tapken,et al. Investigation of Sound Generation and Transmission Effects Through the ACAT1 Fan Stage using Compressed Sensing-based Mode Analysis , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[30] Ulf Tapken,et al. Correction: Radial mode breakdown of the ACAT1 fan broadband noise generation in the bypass duct using a sparse sensor array , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[31] S. Fauqueux. Duct azimuthal and radial modal detection on the CFD modeling of UHBR engine tonal noise , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[32] Paul E. Slaboch,et al. Supersonic Engine Inlet Tone Noise Radiation , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[33] Michael G. Jones,et al. Flight Test Methodology for NASA Advanced Inlet Liner on 737MAX-7 Test Bed (Quiet Technology Demonstrator 3) , 2019, 25th AIAA/CEAS Aeroacoustics Conference.
[34] Sharon Gannot,et al. Machine learning in acoustics: Theory and applications. , 2019, The Journal of the Acoustical Society of America.
[35] Michael G. Jones,et al. Acoustic Directivity and Insertion Loss Measurements of Advanced Liners Installed the Inlet of the DGEN Aeropropulsion Research Turbofan , 2019 .
[36] Paolo Castellini,et al. Acoustic beamforming for noise source localization – Reviews, methodology and applications , 2019, Mechanical Systems and Signal Processing.
[37] R. Miserda,et al. Numerical Simulation of Multiple Pure Tone Noise Generated by Supersonic Rotor Cascades , 2019, Journal of Propulsion and Power.
[38] Q. Leclère,et al. A review of acoustic imaging methods using phased microphone arrays , 2019, CEAS Aeronautical Journal.
[39] Benjamin Winhart,et al. Experimental and Numerical Investigation of Secondary Flow Structures in an Annular Low Pressure Turbine Cascade Under Periodic Wake Impact—Part 1: Experimental Results , 2019, Journal of Turbomachinery.
[40] Khaled Shaalan,et al. Speech Recognition Using Deep Neural Networks: A Systematic Review , 2019, IEEE Access.
[41] J. Boussuge,et al. Tonal Noise Prediction of a Modern Turbofan Engine With Large Upstream and Downstream Distortion , 2019, Journal of Turbomachinery.
[42] Peter Schmollgruber,et al. Multidisciplinary Exploration of DRAGON: an ONERA Hybrid Electric Distributed Propulsion Concept , 2019, AIAA Scitech 2019 Forum.
[43] S. Moreau. Turbomachinery Noise Predictions: Present and Future , 2019, Acoustics.
[44] L. Hultgren,et al. Semi-Empirical Modeling and Prediction of Direct Combustor Noise , 2018 .
[45] Xun Huang,et al. The control of aerodynamic sound due to boundary layer pressure gust scattering by trailing edge serrations , 2018, Journal of Sound and Vibration.
[46] Victor Mileshin,et al. A Review of New Experimental Technologies for the Development of Advanced Fans with High Bypass Ratio , 2018, International Journal of Turbomachinery, Propulsion and Power.
[47] Xun Huang,et al. Wind-Tunnel Investigation on the Compressive-Sensing Technique for Aeroengine Fan Noise Detection , 2018, AIAA Journal.
[48] Axel Holewa,et al. Fan tonal noise from aircraft aeroengines with short intake: A study at approach , 2018, International Journal of Aeroacoustics.
[49] M. Dahl,et al. Dual Rotating Rake Measurements of Higher-Order Duct Modes: Validation Using Experimental and Numerical Data , 2018 .
[50] János Vad,et al. Comparison of the Rotating Source Identifier and the Virtual Rotating Array Method , 2018, Periodica Polytechnica Mechanical Engineering.
[51] Jean-François Brouckaert,et al. Clean Sky research and demonstration programmes for next-generation aircraft engines , 2018, The Aeronautical Journal.
[52] S. Fauqueux,et al. Modal Deconvolution Method in a Finite Circular Duct, using Flush-mounted Microphones , 2018, 2018 AIAA/CEAS Aeroacoustics Conference.
[53] Richard F. Bozak,et al. Measurement of Noise Reduction from Acoustic Casing Treatments Installed Over a Subscale High Bypass Ratio Turbofan Rotor , 2018, 2018 AIAA/CEAS Aeroacoustics Conference.
[54] L. Simonassi,et al. On the Influence of an Acoustically Optimized Turbine Exit Casing Onto the Unsteady Flow Field Downstream of a Low Pressure Turbine Rotor , 2018, Journal of Turbomachinery.
[55] Philippe R. Spalart,et al. Unsteady Simulations of a Fan/Outlet-Guide-Vane System: Tone–Noise Computation , 2018, AIAA Journal.
[56] Harald Schoenenborn,et al. Analysis of the Effect of Multirow and Multipassage Aerodynamic Interaction on the Forced Response Variation in a Compressor Configuration—Part I: Aerodynamic Excitation , 2018 .
[57] U. Tapken,et al. Compressed Sensing based Radial Mode Analysis of the Broadband Sound Field in a Low-Speed Fan Test Rig , 2018 .
[58] Xun Huang,et al. Sound wave scattering in a flow duct with azimuthally non-uniform liners , 2018, Journal of Fluid Mechanics.
[59] J. Seume,et al. Aeroacoustic testing for sound propagation through turbine vanes , 2018 .
[60] Xun Huang,et al. Analysis and Experiment of the Compressive Sensing Approach for Duct Mode Detection , 2017 .
[61] D. Sutliff. Interaction and scattered mode measurement in a mixed bypass/core duct with multiple rotating sources , 2017 .
[62] James R. Mathews,et al. The acoustic Green's function for swirling flow with variable entropy in a lined duct , 2017 .
[63] Luiz A. Baccalá,et al. Acoustic Imaging of In-Duct Aeroengine Noise Sources Using Rotating Beamforming and Phased Arrays , 2017, IEEE Transactions on Computational Imaging.
[64] Ulf Tapken,et al. Radial mode analysis of fan broadband noise , 2017 .
[65] Sally A. Viken,et al. Computational Analysis of a Wing Designed for the X-57 Distributed Electric Propulsion Aircraft , 2017 .
[66] Harry Brouwer,et al. Deconvolution of azimuthal mode detection measurements , 2017 .
[67] Attila Wohlbrandt,et al. Impact of cyclostationarity on fan broadband noise prediction , 2017, 1706.00248.
[68] Nigel Peake,et al. The acoustic Green's function for swirling flow in a lined duct , 2017 .
[69] Peter Gerstoft,et al. Source localization in an ocean waveguide using supervised machine learning , 2017, The Journal of the Acoustical Society of America.
[70] Lennart S. Hultgren,et al. Full-Scale Turbofan Engine Noise-Source Separation Using a Four-Signal Method , 2016 .
[71] Schonleitner,et al. Comparison of the Sound Power Levels of an Aerodynamically Designed EGV and a State-of-the-Art EGV , 2016 .
[72] J. Seume,et al. An Acoustic Excitation System for the Generation of Turbomachinery Specific Sound Fields: Part II — Experimental Verification , 2016 .
[73] Joerg R. Seume,et al. An Acoustic Excitation System for the Generation of Turbomachinery Specific Sound Fields: Part I — Design and Methodology , 2016 .
[74] T. Chong,et al. Optimization of the poro-serrated trailing edges for airfoil broadband noise reduction. , 2016, The Journal of the Acoustical Society of America.
[75] Emmanuel Joubert,et al. Airbus Group Electrical Aircraft Program, The E-Fan Project , 2016 .
[76] M. Dahl,et al. Techniques for analyzing rotating rake mode measurements over passive treatment , 2016 .
[77] Stéphane Moreau,et al. Prediction of tonal ducted fan noise , 2016 .
[78] Andrew R. Gibson,et al. Design and Performance of the NASA SCEPTOR Distributed Electric Propulsion Flight Demonstrator , 2016 .
[79] Ulf Tapken,et al. Efficient Azimuthal Mode Analysis using Compressed Sensing , 2016 .
[80] U. Tapken,et al. Radial Mode Analysis of Ducted Sound Fields withSensor Rakes and Wall Flush Sensor Arrays underConsideration of a Radial Flow Profile , 2016 .
[81] Emil Göttlich,et al. Numerical and Experimental Results of a Turning Mid Turbine Frame with Embedded Design in terms of Acoustic Mode Analysis , 2016 .
[82] Luciano Coutinho Caldas,et al. In-duct beamforming and mode detection using a circular microphone array for the characterisation of broadband aeroengine fan noise. , 2016 .
[83] Xun Huang,et al. Compressive sensing based spinning mode detections by in-duct microphone arrays , 2016 .
[84] Daniel L. Sutliff,et al. Artificial noise systems for parametric studies of turbo-machinery aero-acoustics , 2016 .
[85] David B. Stephens,et al. A High-Resolution Continuous-Scan Acoustic Measurement Method for Turbofan Engine Applications , 2015 .
[86] Xun Huang,et al. Theoretical model of scattering from flow ducts with semi-infinite axial liner splices , 2015, Journal of Fluid Mechanics.
[87] R. Mani,et al. Investigation of Fan-Wake/Outlet-Guide-Vane Interaction Broadband Noise , 2015 .
[88] Gabriel Reboul,et al. Numerical Predictions of Turbulence/Cascade-Interaction Noise Using Computational Aeroacoustics with a Stochastic Model , 2015 .
[89] Michael I. Jordan,et al. Machine learning: Trends, perspectives, and prospects , 2015, Science.
[90] Jeffrey J. Berton,et al. System Noise Prediction of the DGEN 380 Turbofan Engine , 2015 .
[91] H. Bodén,et al. In-duct identification of fluid-borne source with high spatial resolution , 2014 .
[92] Daniel L. Sutliff,et al. Shielding Characteristics Using an Ultrasonic Configurable Fan Artificial Noise Source to Generate Modes - Experimental Measurements and Analytical Predictions , 2014 .
[93] Daniel L. Sutliff,et al. Analysis of Dual Rotating Rake Data from the NASA Glenn Advanced Noise Control Fan Duct with Artificial Sources , 2014 .
[94] Ulf Tapken,et al. Radial mode analysis of broadband noise in flow ducts using a combined axial and azimuthal sensor array , 2014 .
[95] L. Enghardt,et al. Experiments on an Axial Fan Stage: Time Resolved Analysis of Rotating Instability Modes , 2014 .
[96] Daniel L. Sutliff,et al. In-Duct and Far-Field Experimental Measrements from the ANCF for the Purpose of Improved Broadband Liner Optimization , 2014 .
[97] Mehdi Vahdati,et al. Influence of Intake on Fan Blade Flutter , 2014 .
[98] Christian Maier,et al. Rotating beamforming – motion-compensation in the frequency domain and application of high-resolution beamforming algorithms , 2014 .
[99] Daniel L. Sutliff,et al. Hybrid Wing Body Shielding Studies Using an Ultrasonic Configurable Fan Artificial Noise Source Generating Typical Turbofan Modes , 2014 .
[100] Daniel L. Sutliff,et al. A Mode Propagation Database Suitable for Code Validation Utilizing the NASA Glenn Advanced Noise Control Fan and Artificial Sources , 2014 .
[101] Dennis L. Huff,et al. NASA Glenn's Contributions to Aircraft Engine Noise Research , 2013 .
[102] Matthew Fergus Kewin,et al. Acoustic liner optimisation and noise propagation through turbofan engine intake ducts , 2013 .
[103] Daniel L. Sutliff,et al. High-Speed Turbofan Noise Reduction Using Foam-Metal Liner Over-the-Rotor , 2013 .
[104] Gary G. Podboy,et al. Limitations of Phased Array Beamforming in Open Rotor Noise Source Imaging , 2013 .
[105] Daniel L. Sutliff,et al. Numerical Technique for Analyzing Rotating Rake Mode Measurements in a Duct with Passive Treatment and Shear Flow , 2013 .
[106] Daniel L. Sutliff,et al. Rotating Rake Turbofan Duct Mode Measurement System , 2013 .
[107] Stéphane Moreau,et al. Effect of Rotor Shielding on Fan-Outlet Guide Vanes Broadband Noise Prediction , 2013 .
[108] J. Seume,et al. Synthetic Sound Source Generation for Acoustical Measurements in Turbomachines , 2013 .
[109] P. Thamsen,et al. Rotating Instability in an Annular Cascade: Detailed Analysis of the Instationary Flow Phenomena , 2013 .
[110] Carl H. Gerhold,et al. Segmented Liner to Control Mode Scattering , 2013 .
[111] Maurizio De Lucia,et al. A Comparison between Radial Rakes of Sensors and Axial Arrays of Microphones for the Experimental Investigation of Tone Noise in LPTs , 2013 .
[112] Pieter Sijtsma,et al. Azimuthal and radial mode detection by a slowly rotating rake in an aircraft turbofan engine , 2013 .
[113] Xun Huang,et al. Compressive Sensing and Reconstruction in Measurements with an Aerospace Application , 2013 .
[114] Philip A. Nelson,et al. An experimental comparison of the focused beamformer and the inverse method for the characterisation of acoustic sources in ideal and non-ideal acoustic environments , 2012 .
[115] Emil Göttlich,et al. Identification of Spinning Mode in the Unsteady Flow Field of a Low Pressure Turbine , 2012 .
[116] Xun Huang,et al. Technical Notes Single-Sensor Identification of Spinning Mode Noise from Aircraft Engine , 2012 .
[117] Pieter Sijtsma,et al. Green's Functions for In-Duct Beamforming Applications , 2012 .
[118] Pieter Sijtsma,et al. Circular Harmonics Beamforming with multiple rings of microphones , 2012 .
[119] Nigel Peake,et al. The acoustic analogy in an annular duct with swirling mean flow , 2012, Journal of Fluid Mechanics.
[120] Nigel Peake,et al. Modern Challenges Facing Turbomachinery Aeroacoustics , 2012 .
[121] Michel Roger,et al. Broadband noise prediction of fan outlet guide vane using a cascade response function , 2011 .
[122] Dennis L. Huff,et al. Review of Propulsion Technologies for N+3 Subsonic Vehicle Concepts , 2011 .
[123] Seung Yeun Yoo,et al. Intelligent Control for Drag Reduction on the X-48B Vehicle , 2011 .
[124] Douglas M. Nark,et al. Assessment of Radiated Fan Noise Prediction Capabilities Using Static Engine Test Data , 2011 .
[125] Ulf Tapken,et al. Separation of broadband noise sources in aeroengine ducts with respect to modal decomposition , 2011 .
[126] Ulf Tapken,et al. A New Modular Fan Rig Noise Test and Radial Mode Detection Capability , 2011 .
[127] Daniel L. Sutliff,et al. Locating and Quantifying Broadband Fan Sources Using In-Duct Microphones , 2010 .
[128] R. Dougherty,et al. Evaluating the Acoustic Effect of Over-the-Rotor Foam-Metal Liner Installed on a Low Speed Fan Using Virtual Rotating Microphone Imaging , 2010 .
[129] Cédric Maury,et al. Enhancing the reconstruction of in-duct sound sources using a spectral decomposition method. , 2010, The Journal of the Acoustical Society of America.
[130] Jia Yu,et al. PW 4098 Forward Fan Case Acoustic Liner Design Under NASA EVNRC Program , 2010 .
[131] Ulf Tapken,et al. Technique to Analyze Characteristics of Turbomachinery Broadband Noise Sources , 2010 .
[132] David B. Stephens,et al. Sound Generation by a Rotor Interacting with a Casing Turbulent Boundary Layer , 2009 .
[133] Ulf Tapken,et al. An investigation of low pressure turbine blade—vane interaction noise: Measurements in a 1.5-stage rig , 2009 .
[134] Ulf Tapken,et al. Tonal Noise Radiation from an UHBR Fan { Optimized In-Duct Radial Mode Analysis , 2009 .
[135] Bruce E. Walker,et al. Virtual Rotating Microphone Imaging of Broadband Fan Noise , 2009 .
[136] Daniel L. Sutliff,et al. FJ44 Turbofan Engine Test at NASA Glenn Research Center's Aero-Acoustic Propulsion Laboratory , 2009 .
[137] Q. Leclère. Acoustic imaging using under-determined inverse approaches : Frequency limitations and optimal regularization , 2009 .
[138] N. Peake,et al. Acoustic propagation and scattering in the exhaust flow from coaxial cylinders , 2008, Journal of Fluid Mechanics.
[139] Richard P. Woodward,et al. An Assessment of Current Fan Noise Prediction Capability , 2008 .
[140] S. Lewy. Numerical inverse method predicting acoustic spinning modes radiated by a ducted fan from free-field test data. , 2008, The Journal of the Acoustical Society of America.
[141] A. Roure,et al. Active control of multimodal tonal noise propagated in circular duct with axial subsonic mean flow until M=0.3 , 2008 .
[142] V. Mileshin,et al. Acoustic test facility for aero engine fans , 2008 .
[143] Cédric Maury,et al. Experimental feasibility of in‐duct sound source reconstruction , 2008 .
[144] Jeff M. Mendoza,et al. Nacelle In-duct Beamforming using Modal Steering Vectors , 2008 .
[145] Ulf Tapken,et al. Turbomachinery Exhaust Noise Radiation Experiments - Part 2: In-Duct and Far-Field Mode Analysis , 2008 .
[146] Ulf Tapken,et al. Turbomachinery Exhaust Noise Radiation Experiments - Part 1: Polar Directivity Measurements , 2008 .
[147] Thierry Maeder,et al. Reduction of Wind Turbine Noise using Optimized Airfoils and Trailing-Edge Serrations , 2008 .
[148] Don Weir,et al. Engine Validation of Noise and Emission Reduction Technology Phase I , 2008 .
[149] J. Romberg,et al. Imaging via Compressive Sampling , 2008, IEEE Signal Processing Magazine.
[150] E.J. Candes,et al. An Introduction To Compressive Sampling , 2008, IEEE Signal Processing Magazine.
[151] Pieter Sijtsma,et al. CLEAN Based on Spatial Source Coherence , 2007 .
[152] Ricardo A. Burdisso,et al. Green's Functions for the Acoustic Field in Lined Ducts with Uniform Flow , 2007 .
[153] Fabrice O. Castres,et al. Experimental investigation of an inversion technique for the determination of broadband duct mode amplitudes by the use of near-field sensor arrays. , 2007, The Journal of the Acoustical Society of America.
[154] Eric Nesbitt,et al. The Quiet Technology Demonstrator Program: Static Test of Airplane Noise-Reduction Concepts , 2007 .
[155] Ulf Tapken,et al. Comparison of Different Analysis Techniques to Decompose a Broad-band Ducted Sound Field in its Mode Constituents , 2007 .
[156] Pieter Sijtsma,et al. In-Duct and Far-Field Mode Detection Techniques , 2007 .
[157] Gabriel Zlavog,et al. Phased Array Measurements of Full-Scale Engine Inlet Noise , 2007 .
[158] Pieter Sijtsma,et al. Feasibility of In-Duct Beamforming , 2007 .
[159] Peer Böhning,et al. Aerodynamic duct mode generator , 2007 .
[160] Daniel L. Sutliff,et al. Turbofan Duct Mode Measurements Using a Continuously Rotating Microphone Rake , 2007 .
[161] Fabrice O. Castres,et al. Mode detection in turbofan inlets from near field sensor arrays. , 2007, The Journal of the Acoustical Society of America.
[162] Daniel L. Sutliff,et al. Rotating Rake Mode Measurements Over Passive Treatment in a Ducted Fan , 2006 .
[163] Phillip Joseph,et al. Determining the strength of rotating broadband sources in ducts by inverse methods , 2006 .
[164] Pieter Sijtsma,et al. Noise Validation of Model Fan Rig with Engine , 2006 .
[165] Phillip Joseph,et al. A Focused Beamformer Technique for Separating Rotor and Stator-Based Broadband Sources , 2006 .
[166] D. Venditti,et al. Turbofan Duct-Mode Identification Using Farfield Noise Measurements and Numerical Predictions , 2006 .
[167] Ulf Tapken,et al. Optimisation of sensor arrays for radial mode analysis in flow ducts , 2006 .
[168] Phillip Joseph,et al. Active control of buzz-saw tones: Experimental results from a laboratory-scale, no-flow rig , 2006 .
[169] Soogab Lee,et al. A wall-mounted source array for the excitation of incoherent broadband sound fields with prescribed modal distributions in ducts , 2006 .
[170] G. Gabard,et al. Theoretical model for sound radiation from annular jet pipes: far- and near-field solutions , 2006, Journal of Fluid Mechanics.
[171] J. A. Fitzpatrick,et al. Aeroacoustics research in Europe: The CEAS-ASC report on 2004 highlights , 2005 .
[172] Sw Sjoerd Rienstra,et al. An analytic Green's function for a lined circular duct containing uniform mean flow , 2005 .
[173] Detlef Mueller,et al. Europe's Largest Aero Acoustic Test Facility for Aero Engine Fans - The Development and Operation of the AneCom AeroTest Anechoic Chamber , 2005 .
[174] Serge Lewy,et al. Inverse method predicting spinning modes radiated by a ducted fan from free-field measurements. , 2005, The Journal of the Acoustical Society of America.
[175] E. Candès,et al. Robust uncertainty principles: exact signal reconstruction from highly incomplete frequency information , 2004, IEEE Transactions on Information Theory.
[176] P. Nelson,et al. Estimation of acoustic source strength within a cylindrical duct by inverse methods , 2004 .
[177] Lars Enghardt,et al. Broadband Sound Power Determination in Flow Ducts , 2004 .
[178] Matthew Wright,et al. Validation of an analytical model for scattering by intake liner splices , 2004 .
[179] R. J. Astley,et al. Mode detection in turbofan inlets from acoustic pressure measurements in the radiated field , 2004 .
[180] Thomas F. Brooks,et al. A Deconvolution Approach for the Mapping of Acoustic Sources (DAMAS) Determined from Phased Microphone Arrays , 2004 .
[181] Philip A. Nelson,et al. Spatial resolution limits for the reconstruction of acoustic source strength by inverse methods , 2003 .
[182] L. J. Heidelberg. Comparison of Tone Mode Measurements for a Forward Swept and Baseline Rotor Fan , 2003 .
[183] Ulf Tapken,et al. Active control of fan noise from high-bypass ratio aeroengines: experimental results , 2002, The Aeronautical Journal (1968).
[184] Daniel L. Sutliff,et al. Inlet Mode Measurements with an Inflow Control Device Microphone Array , 2002 .
[185] Daniel L. Sutliff,et al. Duct Mode Measurements on the TFE731-60 Full Scale Engine , 2002 .
[186] Joe W. Posey,et al. Turbofan Duct Propagation Model , 2001 .
[187] Ulf Tapken,et al. Turbine blade/vane interaction noise: acoustic mode analysis using in-duct sensor rakes , 2001 .
[188] F Farassat,et al. The Detection of Radiated Modes From Ducted Fan Engines , 2001 .
[189] Donald B. Hanson,et al. Theory for broadband Noise of Rotor and Stator Cascades with Inhomogeneous Inflow Turbulence Including Effects of Lean and Sweep , 2001 .
[190] Pieter Sijtsma,et al. Location of rotating sources by phased array measurements , 2001 .
[191] Edward Rademaker,et al. Mode detection with an optimised array in a model turbofan engine intake at varying shaft speeds , 2001 .
[192] P. Nelson,et al. ESTIMATION OF ACOUSTIC SOURCE STRENGTH BY INVERSE METHODS: PART I, CONDITIONING OF THE INVERSE PROBLEM , 2000 .
[193] Konrad Vogeler,et al. Rotating Instabilities in an Axial Compressor Originating From the Fluctuating Blade Tip Vortex , 2000 .
[194] Lars Enghardt,et al. Experimental verification of a radial mode analysis technique using wall‐flush mounted sensors , 1999 .
[195] Nigel Peake,et al. Noise generation by the interaction between ingested turbulence and a rotating fan , 1998, Journal of Fluid Mechanics.
[196] W. Neise,et al. ROTATING BLADE FLOW INSTABILITY AS A SOURCE OF NOISE IN AXIAL TURBOMACHINES , 1997 .
[197] Laurence J. Heidelberg,et al. Inlet acoustic mode measurements using a continuously rotating rake , 1995 .
[198] Kevin E. Konno,et al. Rotating rake design for unique measurement of fan-generated spinning acoustic modes , 1993 .
[199] D. L. Palumbo,et al. An operations manual for the Spinning Mode Synthesizer in the Langley Aircraft Noise Reduction Laboratory , 1981 .
[200] C. J. Moore. Measurement of radial and circumferential modes in annular and circular fan ducts , 1979 .
[201] R. Munt. The interaction of sound with a subsonic jet issuing from a semi-infinite cylindrical pipe , 1977, Journal of Fluid Mechanics.
[202] Donald B. Hanson,et al. Spectrum of rotor noise caused by atmospheric turbulence , 1974 .
[203] J. M. Seiner,et al. Design and development of the spinning mode synthesizer , 1973 .
[204] F. W. Glaser,et al. Effects of casing boundary-layer removal on noise of a turbofan rotor , 1972 .
[205] D. Hawkings,et al. Multiple tone generation by transonic compressors , 1971 .
[206] C. Morfey. Acoustic energy in non-uniform flows , 1971 .
[207] C. L. Morfey,et al. Shock-Wave Radiation from a Supersonic Ducted Rotor , 1970, The Aeronautical Journal (1968).
[208] J. Williams,et al. Aerodynamic sound generation by turbulent flow in the vicinity of a scattering half plane , 1970, Journal of Fluid Mechanics.
[209] S. Aubert,et al. Prediction of the acoustic influence of an intake on fan flutter: a comparison of numerical methods , 2019, 13th European Conference on Turbomachinery Fluid Dynamics and Thermodynamics.
[210] T. Ishii,et al. Acoustic liner test of DGEN 380 turbofan engine , 2019 .
[211] Xun Huang,et al. Reconstruction of Aircraft Engine Noise Source using Beamforming and Compressive Sensing , 2018, IEEE Access.
[212] V. Palchikovskiy,et al. Investigation of generation of acoustic spinning modes in installation for tests of full-scale liners , 2018 .
[213] Xun Huang,et al. Wavelet-Based Beamforming for High-Speed Rotating Acoustic Source , 2018, IEEE Access.
[214] Alan McAlpine,et al. Nonlinear Propagation of Supersonic Fan Tones in Turbofan Intake Ducts , 2018 .
[215] D. Ragni,et al. Delft University of Technology Three-dimensional flow field over a trailing-edge serration and implications on broadband noise , 2016 .
[216] Geoffrey E. Hinton,et al. Deep Learning , 2015 .
[217] Yuri Khaletskiy,et al. Aircraft Fan Noise Reduction Technology Using Leaned Stator Blades , 2015 .
[218] Serge Lewy,et al. On the generation and propagation of multiple pure tones inside turbofans at transonic regime. , 2014 .
[219] Stefan Kindermann,et al. Measurement and decomposition of periodic flow structures downstream of a test turbine , 2013 .
[220] Gitta Kutyniok. Compressed Sensing , 2012 .
[221] Pieter Sijtsma,et al. Nationaal Lucht-en Ruimtevaartlaboratorium National Aerospace Laboratory NLR NLR-TP-2007-798 Location and quantification of noise sources on a wind turbine , 2008 .
[222] Carl H. Gerhold,et al. Development of an Experimental Rig for Investigation of Higher Order Modes in Ducts , 2006 .
[223] P. Sijtsma,et al. Using phased array beamforming to locate broadband noise sources inside a turbofan engine , 2006 .
[224] Kevin E. Konno,et al. Acoustic mode measurements in the inlet of a model turbofan using a continuously rotating rake: Data collection/analysis techniques , 1993 .
[225] A. Hirschberg,et al. An introduction to acoustics , 1992 .
[226] T. G. Sofrin,et al. Axial Flow Compressor Noise Studies , 1962 .