48 results on '"Bolton, J. S."'
Search Results
2. Design and optimization of lightweight porous damping treatments
3. Combining granular aerogels with additively manufactured porous structures for broadband sound absorption
4. A hybrid compressive sensing approach to noise source visualization: Application to a diesel engine
5. Prediction of acoustical behavior of granular material stacks as measured in a standing wave tube by using a Biot theory-based model
6. Experimental study and modeling of the level-dependent acoustical behavior of granular particle stacks
7. A finite difference approach to study the impact of boundary conditions on the acoustical behavior of particle stacks
8. Acoustical properties of granular aerogel agglomerates
9. Experimental study of the level-dependent softening of carbon particle stacks
10. An iterative approach for estimating the sound speed and attenuation constant of air in a standing wave tube
11. The acoustical absorption by air-saturated aerogel powders
12. Graduate studies in acoustics and noise control in the School of Mechanical Engineering at Purdue University
13. The acoustics of the “clapping circle” at Purdue University
14. Future trends in noise control technology
15. Separation of closely-spaced acoustics sources in an under-determined system with convex optimization
16. Fibrous material microstructure design for optimal structural damping
17. Lightweight absorption and barrier systems comprising N-layer microperforates
18. Graduate studies in Acoustics and Noise Control in the School of Mechanical Engineering at Purdue University
19. The application of microperforated panel in duct systems
20. Array-based inhomogeneous soundwave generation to enhance sound transmission into solids
21. Computational investigation of microperforated materials: End corrections, thermal effects, and fluid-structure interaction
22. Use of evanescent plane waves for low-frequency energy transmission across material interfaces
23. Optimal design of multi-layer microperforated sound absorbers
24. Improved model for coupled structural–acoustic modes of tires
25. The effect of flexibility on the acoustical performance of microperforated materials
26. Numerical investigation of sound diffraction by arbitrarily-shaped thin obstacles
27. Shape optimization of foam liners in double panel systems
28. Acoustical holography in spherical coordinates for noise source identification
29. External system modeling: An approach to minimizing vibroacoustic model sizes for design evaluation
30. Acoustical modeling of flexible perforated screens attached directly to elastic porous materials
31. The spatial and temporal response of fluid‐loaded, line‐driven panel structures
32. A discrete implementation of a Hankel transform technique for predicting multipole sound propagation over plane, absorbing surfaces
33. The use of a one‐parameter model to characterize the acoustical properties of asphalt
34. “Smart” noise control foams: A feasibility study
35. A parametric study of broadband noise generation by small centrifugal blowers
36. The effect of edge constraints on the surface normal impedance of a foam layer
37. The damping of panels by thick layers of elastic porous media
38. Modal propagation in ducts lined with elastic porous materials
39. The graduate acoustics education program in the School of Mechanical Engineering at Purdue University
40. Application of the STSF system to noise source identification in domestic appliances
41. Acoustic energy propagation in noise control foams: Approximate formulas for surface normal impedance
42. Sound absorption and transmission by periodically supported double panel structures
43. One‐dimensional wave propagation in relatively stiff, partially reticulated acoustical foam
44. The use of the Wigner distribution to identify structure‐borne noise components
45. The use of nearfield acoustic holography in noise control applications
46. Normal incidence absorption properties of single layers of elastic porous materials
47. The three‐microphone impedance tube
48. The use of intensity techniques for noise source identification in small machinery
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