Flow reorganization and Curle-related source redistribution by a boxfish-inspired fairing in confined high-blockage elevator flow
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Le résumé fourni par la source
An ultra-high-speed elevator operating in a narrow hoistway generates a confined high-blockage flow, with windward compression, annular-gap acceleration, leeward separation, wake development, and wall-pressure fluctuations that govern aerodynamic forces and aeroacoustic radiation. In this study, the elevator car is treated as a confined bluff body, and a boxfish-inspired multi-curvature fairing (bionic configuration) is constructed from the leading-edge contour of a boxfish snout. Its performance is compared with a no-fairing baseline (none configuration) and an arc-shaped reference fairing (general configuration). A staged turbulence-modeling strategy combining the renormalization-group k−ε model and large-eddy simulation is used to resolve the unsteady flow field, and Curle's acoustic analogy is used to map wall-pressure fluctuations to surface sound pressure level (SPL), far-field SPL, and propagation attenuation along the hoistway. The results show that the bionic configuration retains mechanisms reported for boxfish-inspired bodies in free-stream flow, including smooth curvature transition, weakened separation, wake contraction, and improved pressure recovery. Under confinement, however, the dominant mechanism shifts toward coordinated regulation of annular-gap shear-layer feeding, confined-wake contraction, and leeward pressure recovery. Relative to the none configuration, the bionic configuration reduces drag by 38.6%–55.7% and provides an additional drag reduction of 12.9%–19.8% over the general configuration. A wall-pressure-fluctuation-based Curle-related equivalent dipole-source indicator shows that the dominant source regions of the none configuration are concentrated in the rear shoulder transition and leeward base regions, which together contribute more than 97% of the total indicator. The general configuration reduces the total source indicator to approximately 19.0% of that of the none configuration, whereas the bionicionic configuration further reduces it to approximately 0.29%. Correspondingly, the bionic configuration reduces the mean surface SPL by 22.8 and 10.8 dB relative to the none and general configurations, respectively. These results demonstrate that the boxfish-inspired fairing modifies aerodynamic and aeroacoustic responses by reorganizing the annular-gap shear layer, leeward wake topology, and Curle-related equivalent dipole-source indicator distribution in confined high-blockage flow.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Flow reorganization and Curle-related source redistribution by a boxfish-inspired fairing in confined high-blockage elevator flow
- Date Crossref
- 01/08/2026
- Éditeur
- AIP Publishing
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
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