Effects of peg systems on structural vibration and acoustic response in an oud

Yazarlar

  • Emir Değirmenli Yazar

Anahtar Kelimeler:

Bridge mobility- Force-normalized acoustic response- Modal behaviour- Neck vibration- Oud acoustics- Peg systems

Öz

Peg systems form part of the mechanical structure of a stringed instrument, but their contribution to the oud’s response has received limited experimental attention. This exploratory pilot study compared four conditions on one unstrung oud: No Pegs, Rosewood Pegs, Ebony Pegs, and Wittner Mechanical Pegs. Impact-based frequency-response measurements combined bridge and neck–pegbox vibration with force-normalized acoustic response. Three resonance regions selected by qualitative screening of the broadband spectra, labelled Mode 1–Mode 3 for this comparison, were tracked at a frequency increment of 1.5625 Hz. Of these three regions, Mode 3 showed the largest frequency shifts. Relative to No Pegs, the Wittner condition shifted the bridge peak downward by 10.94 Hz and increased the bridge, neck–pegbox, and acoustic peak levels by 2.51, 11.18, and 5.39 dB, respectively. Mode 2 showed contrasting bridge and neck responses, while acoustic changes were not consistently monotonic across conditions. At the evaluated frequencies, coherence was high for the No Pegs neck and Ebony bridge records and lower for the No Pegs and Rosewood acoustic records; no acoustic coherence was recorded for Ebony or Wittner. The results identify mode-dependent changes associated with peg-system substitution and support examining the pegbox within the coupled body–neck structure. This single-instrument comparison does not isolate mass from other mechanical differences or establish tonal superiority under playing conditions.

Yazar Biyografisi

  • Emir Değirmenli

    Asst. Prof. Dr. Emir Değirmenli works in the Department of Instrument Education at Ankara Hacı Bayram Veli University Turkish Music State Conservatory. He received his bachelor’s degree in physics engineering from Hacettepe University in 2004 and his master’s and doctoral degrees from Gazi University in 2014 and 2018, respectively. His research focuses on musical acoustics, experimental and finite-element modal analysis, and musical-instrument making. He is also a physicist and oud maker and teaches courses in sound physics and musical-instrument acoustics. Affiliation: Department of Instrument Education, Turkish Music State Conservatory, Ankara Hacı Bayram Veli University, Ankara, Türkiye. Email: emir.degirmenli@hbv.edu.tr ORCID: 0000-0001-8164-1448

    Personal web site: https://avesis.hacibayram.edu.tr/emir.degirmenli

    Academia.edu: https://independent.academia.edu/DeğirmenliEmir 

    ResearchGate: https://www.researchgate.net/profile/Emir-Degirmenli 

Yayınlanmış

2026-10-01

Sayı

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