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Vibroakustična analiza sklopljenega Helmholtzovega resonatorja v kapljevinskem mediju
ID Oblak, Miša (Author), ID Boltežar, Miha (Mentor) More about this mentor... This link opens in a new window

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Abstract
Doktorsko delo obravnava sklopljen Helmholtzov resonator v kapljevinskem mediju v nizkofrekvenčnem območju. Sklopljen vibroakustičen problem zajema interakcijo med fluidom in strukturo ter interakcijo med akustičnimi votlinami. Za popis interakcije med prožnim Helmholtzovim resonatorjem in akustično votlino je razvit analitičen model s pristopom modalnega sklapljanja. Pri tem je napoved odziva tlačnega polja ob nezveznih prehodih geometrije izboljšana na podlagi nove formulacije izginjajočih valov. Predlagan model je razširjen z lastno dinamiko sklopljene plošče za upoštevanje interakcije med strukturo in zunanjim akustičnim poljem. Nadalje so v model implementirani mehanizmi disipacije v fluidu in strukturno dušenje. Za namen eksperimentalne validacije je zasnovana impedančna cev za merjenje disipacije v kapljevinskem mediju v nizkofrekvenčnem območju ter razvita metodologija za identifikacijo zvočne hitrosti in atenuacije. Absorpcijski koeficienti testnih Helmholtzovih resonatorjev izkazujejo dobro ujemanje med modelom in meritvami. Napoved odziva s predlaganim modelom je bolj točna od analize MKE.

Language:Slovenian
Keywords:Helmholtzov resonator, modalno sklapljanje, interakcija fluid-struktura, kapljevina, močna sklopljenost, nizko-frekvenčno območje, impedančna cev, atenuacija, fazna hitrost, absorpcija
Work type:Doctoral dissertation
Typology:2.08 - Doctoral Dissertation
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[M. Oblak]
Year:2023
Number of pages:XXVIII, 130 str.
PID:20.500.12556/RUL-146732 This link opens in a new window
UDC:534.64:535.417.2:532.5(043.3)
COBISS.SI-ID:155464963 This link opens in a new window
Publication date in RUL:09.06.2023
Views:311
Downloads:31
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Secondary language

Language:Unknown
Title:Vibroacoustic analysis of a coupled Helmholtz resonator in a liquid medium
Abstract:
Doctoral thesis focuses on the analysis of the coupled Helmholtz resonator in a liquid medium in the low-frequency range. The coupled vibroacoustic problem includes fluid-structure interaction and coupling of acoustic cavities. Based on the modal-interaction approach an analytical model is developed for the coupled system of an flexible Helmholtz resonator and an acoustic cavity. Improved representation of the pressure response at the geometric discontinuities is achieved with new formulation of the evanescent waves. Hydroelastic vibration of the elastic plate is included in the proposed model to account for the interaction between the structure and the free acoustic field. Furthermore, mechanisms of the acoustic losses and structural damping are implemented. For the purpose of the experimental validation, an impedance tube for the low-frequency dissipation measurements in the liquid medium is designed and methods for the identification of the sound velocity and attenuation are developed. The absorption coefficients of the test Helmholtz resonators show good agreement between the model and the measurements. The proposed model gives more accurate results than the FEM analysis.

Keywords:Helmholtz resonator, modal interaction, fluid-structure interaction, heavy fluid, strong coupling, low-frequency range, impedance tube, attenuation, phase velocity, absorption

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