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Asymptotic- and bifurcation-aware scientific machine learning for nonlinear vibration prediction of submerged floating tunnel tethers under hydrodynamic excitation

OpenAlex research metadata · article · Sep 24, 2026 · UTC

Sound&Vibration · Model Reduction and Neural Networks · Islamic University of Madinah; Khazar University; Transylvania University of Brașov

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recordType
paper
evidenceStatus
metadata-reported
region
Global

Evidence & attribution

Research metadata: OpenAlex (CC0). Original paper rights remain with its publisher.

First collected: 2026-09-24T16:13:45.287Z. This is not the publication date.

Observed changes

AIIC observation times, not verified publisher revision times. Up to eight recent revisions.

2026-09-25T16:23:29.199Z

  • summary: Sound&Vibration · Model Reduction and Neural Networks → Sound&Vibration · Model Reduction and Neural Networks · Islamic University of Madinah; Khazar University; Transylvania University of Brașov

Research metadata

OpenAlex record ↗ · Metadata licensed CC0; paper rights are separate.

Citations reported by OpenAlex
0
Authors
Mohammad Akram; Umar Ishtiaq; Ioan-Lucian Popa
Affiliations
Islamic University of Madinah (SA); Khazar University (AZ); Transylvania University of Brașov (RO); 1 Decembrie 1918 University (RO)
Topic
Model Reduction and Neural Networks
Venue
Sound&Vibration
Publication type
article
Retraction flag reported by OpenAlex
Not flagged

Citation count and retraction flag reported by OpenAlex. Citations are not a quality score; affiliation countries are not study locations.