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Year 2025, Volume: 9 Issue: 1, 39 - 44, 15.07.2025

Abstract

References

  • [1] Yu Y, Krynkin A, Horoshenkov KV. The effect of 3D surface roughness on acoustic wave propagation in a cylindrical waveguide. Wave Motion (2024) 128:103304. doi:10.1016/j.wavemoti.2024.103304.
  • [2] Pignier NJ, O’Reilly CJ, Boij S. A Kirchhoff approximation-based numerical method to compute multiple acoustic scattering of a moving source. Applied Acoustics (2015) 96:108–117. doi:10.1016/j.apacoust.2015.03.016.
  • [3] Döşemeciler A. A study on number theoretic construction and prediction of two dimensional acoustic diffusers for architectural applications. PhD Thesis. Izmir Institute of Technology. İzmir (2011).
  • [4] Kleiner M, Svensson P, Dalenbäck B. Auralization of QRD and Other Diffusing Surfaces Using Scale Modelling. Audio Engineering Society Convention (1992).
  • [5] Cushing CW, Parker SD, Kang J, Venegas GR, Wilson PS, Haberman MR. Affordable and Customizable High-resolution Scanning System for Measurement of Acoustic Fields. The Journal of the Acoustical Society of America (2022) 151(4_Supplement):247-248. doi:10.1121/10.0011214.
  • [6] Kotopoulis AD, Malamou A, Pouraimis G. Characterization of Rough Fractal Surfaces from Backscattered Radar Data. Elektronika Ir Elektrotechnika (2016) 22(6). doi:10.5755/j01.eie.22.6.17226.
  • [7] Shi F, Choi W, Lowe MJS, Skelton EA, Craster RV. The validity of Kirchhoff theory for scattering of elastic waves from rough surfaces. Proceedings of the Royal Society a Mathematical Physical and Engineering Sciences (2015) 471(2178):20140977. doi:10.1098/rspa.2014.0977.
  • [8] Bourlier C. Characteristic Basic Function Method Accelerated by a New Physical Optics Approximation for the Scattering from a Dielectric Object. Progress in Electromagnetics Research B (2023) 103:177–194. doi:10.2528/pierb23041304.
  • [9] Dehghani M, Ajam H, Farahat S. Automated diffuser shape optimization based on CFD simulations and surrogate modeling. Journal of Applied Fluid Mechanics (2016) 9(5):2527–2535.
  • [10] Humeida Y, Pinfield VJ, Challis RE, Wilcox PD, Li C. Simulation of ultrasonic array imaging of composite materials with defects. Ieee Transactions on Ultrasonics Ferroelectrics and Frequency Control (2013) 60(9):1935–1948. doi:10.1109/tuffc.2013.2778.
  • [11] Martin GG. A hybrid model for simulating diffused first reflections in two-dimensional acoustic environments. PhD Thesis. McGill University. Montreal (2001).

Optimization of Two-Dimensional Acoustic Diffuser Surfaces Using Kirchhoff Approximation in MATLAB

Year 2025, Volume: 9 Issue: 1, 39 - 44, 15.07.2025

Abstract

This study numerically analyzes the angular reflection performance of two-dimensional acoustic diffuser surfaces using the Kirchhoff approach in MATLAB. In the study, ideal Lambertian and band-limited diffuser types are compared under different incidence angles and surface geometries (slope and recess width). The aim is to reveal the effect of surface design parameters on the angular distribution of sound energy and to contribute to the design of structures that provide homogeneous reflection. The results show that Lambertian surfaces provide ideal reflection only at normal incidence angles; band-limited diffusers can direct the energy in a controlled manner within a certain angle range. It is observed that the reflection intensity decreases and the distribution widens with the increase in slope. This situation reveals the decisive role of surface geometry on acoustic performance. The findings provide an important basis for surface optimization in acoustic design applications.

References

  • [1] Yu Y, Krynkin A, Horoshenkov KV. The effect of 3D surface roughness on acoustic wave propagation in a cylindrical waveguide. Wave Motion (2024) 128:103304. doi:10.1016/j.wavemoti.2024.103304.
  • [2] Pignier NJ, O’Reilly CJ, Boij S. A Kirchhoff approximation-based numerical method to compute multiple acoustic scattering of a moving source. Applied Acoustics (2015) 96:108–117. doi:10.1016/j.apacoust.2015.03.016.
  • [3] Döşemeciler A. A study on number theoretic construction and prediction of two dimensional acoustic diffusers for architectural applications. PhD Thesis. Izmir Institute of Technology. İzmir (2011).
  • [4] Kleiner M, Svensson P, Dalenbäck B. Auralization of QRD and Other Diffusing Surfaces Using Scale Modelling. Audio Engineering Society Convention (1992).
  • [5] Cushing CW, Parker SD, Kang J, Venegas GR, Wilson PS, Haberman MR. Affordable and Customizable High-resolution Scanning System for Measurement of Acoustic Fields. The Journal of the Acoustical Society of America (2022) 151(4_Supplement):247-248. doi:10.1121/10.0011214.
  • [6] Kotopoulis AD, Malamou A, Pouraimis G. Characterization of Rough Fractal Surfaces from Backscattered Radar Data. Elektronika Ir Elektrotechnika (2016) 22(6). doi:10.5755/j01.eie.22.6.17226.
  • [7] Shi F, Choi W, Lowe MJS, Skelton EA, Craster RV. The validity of Kirchhoff theory for scattering of elastic waves from rough surfaces. Proceedings of the Royal Society a Mathematical Physical and Engineering Sciences (2015) 471(2178):20140977. doi:10.1098/rspa.2014.0977.
  • [8] Bourlier C. Characteristic Basic Function Method Accelerated by a New Physical Optics Approximation for the Scattering from a Dielectric Object. Progress in Electromagnetics Research B (2023) 103:177–194. doi:10.2528/pierb23041304.
  • [9] Dehghani M, Ajam H, Farahat S. Automated diffuser shape optimization based on CFD simulations and surrogate modeling. Journal of Applied Fluid Mechanics (2016) 9(5):2527–2535.
  • [10] Humeida Y, Pinfield VJ, Challis RE, Wilcox PD, Li C. Simulation of ultrasonic array imaging of composite materials with defects. Ieee Transactions on Ultrasonics Ferroelectrics and Frequency Control (2013) 60(9):1935–1948. doi:10.1109/tuffc.2013.2778.
  • [11] Martin GG. A hybrid model for simulating diffused first reflections in two-dimensional acoustic environments. PhD Thesis. McGill University. Montreal (2001).
There are 11 citations in total.

Details

Primary Language English
Subjects Optimization Techniques in Mechanical Engineering
Journal Section Research Articles
Authors

Mansur Mustafaoğlu (nasiri Khalaji)

Abbas Razmi

Eda Mustafaoğlu This is me 0009-0007-1339-5055

Publication Date July 15, 2025
Submission Date February 10, 2025
Acceptance Date June 27, 2025
Published in Issue Year 2025 Volume: 9 Issue: 1

Cite

APA Mustafaoğlu (nasiri Khalaji), M., Razmi, A., & Mustafaoğlu, E. (2025). Optimization of Two-Dimensional Acoustic Diffuser Surfaces Using Kirchhoff Approximation in MATLAB. International Journal of Innovative Research and Reviews, 9(1), 39-44.