Povzetek
In general, the measurement of the sound radiation field by machinery and partitions requires time-consuming tests, which should be carried out in specially dedicated anechoic/reverberant facilities with calibrated sensors and complex acquisition and post processing equipment. This article introduces a two-step method for the identification from optical measurements of the free- field sound radiation generated by flexural vibrations of closed shells. In the first step, the flexural vibration of the shell is reconstructed with a frequency domain triangulation technique based on short multi-view video acquisitions made with a single high-resolution, high-speed camera. In the second step, the free-field sound radiation is derived from a discretized boundary integral formulation. The study is focused on the identification of the sound radiation from the flexural vibration of a baffled cylinder model structure. The vibration and sound fields reconstructed from the camera measurements are validated against direct measurements taken with a laser scanner vibrometer and a microphone array, respectively. Overall, this research demonstrates that optical methods based on camera measurements can be suitably employed to produce fast and accurate full-field measurements of sound radiation of closed shells (without the need for a dedicated measurement environment, e.g. reverberant, anechoic chambers).
Ključne besede
videogrammetry;flexural vibration measurement;sound radiation reconstruction;frequency-domain triangulation;
Podatki
Jezik: |
Angleški jezik |
Leto izida: |
2025 |
Tipologija: |
1.01 - Izvirni znanstveni članek |
Organizacija: |
UL FS - Fakulteta za strojništvo |
UDK: |
534.83 |
COBISS: |
225020931
|
ISSN: |
1096-1216 |
Št. ogledov: |
24 |
Št. prenosov: |
0 |
Ocena: |
0 (0 glasov) |
Metapodatki: |
|
Ostali podatki
Sekundarni jezik: |
Slovenski jezik |
Sekundarne ključne besede: |
videogrametrija;merjenje vibracij;zvočno sevanje;triangulacija v frekvenčni domeni; |
Strani: |
20 str. |
Zvezek: |
ǂVol. ǂ227, ǂ[art.] ǂ112400 |
Čas izdaje: |
2025 |
DOI: |
10.1016/j.ymssp.2025.112400 |
ID: |
25859539 |