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April 4, 2026JACOW0 citationsOpen Access

Tuning FEA models of the ALS-U lattice magnets supports using experimental modal analysis

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RJRyan JohnsonAAArnaud Allézy

Key Points

  • To optimize the FEA models for lattice magnets to ensure they meet strict displacement levels for the ALS-U project.
  • Constructed a prototype raft for vibration measurements
  • Used impact hammer tests to analyze modal behavior
  • Updated spring constant parameters for tuning
  • Validated random vibration predictions with experimental data
  • Achieved < 200 nm RMS displacement along the beam direction
  • Achieved < 35 nm RMS displacement in transverse directions
  • Validated model predictions align with actual measurements

Abstract

The ALS-U project will deliver a beam 100x brighter than the existing ALS beam. In order to achieve this, the RMS displacement levels above 10 Hz for all magnets in a sector of the storage ring, shall be < 200 nm along the electron beam direction and < 35 nm in both transverse directions. A prototype storage ring raft was built to undergo vibration measurements and inform on the expected performance of the production rafts. This paper details the approach chosen to tune the prototype FEA model using specific measurements. First, the modal behavior of the model was tuned using multiple impact multiple output hammer measurements. Through the iterative updating of selective spring constant parameters representing the stiffness of the storage ring supports, the mode frequency, shape and damping coefficient were then determined to closely match the experimental results. Random vibration FEA predicted levels at the magnets were validated with measured magnet motion on the prototype raft. With the validated modeling and updated parameters, the production raft types are predicted to meet the displacement level requirements.

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Cite This Study

Johnson et al. (2026) studied this question.

synapsesocial.com/papers/69d0aefd659487ece0fa4e34https://doi.org/10.18429/jacow-medsi2025-thp25
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1In-situ vibration measurements for evaluating impact of low conductivity water induced vibration on Advanced Light Source (ALS-U) accumulator ring magnets and electron beam positioning monitors2026
  2. 2Simulation approaches for magnet design in the ALBA II synchrotron upgrade2026
  3. 3Results from the ALS-U storage ring alignment system prototype2026
  4. 4Mechanical evaluation and CAD modelling for MAX 4ᵁ: MAXIV storage ring upgrade2026
  5. 5The girder system prototype for the ALBA II storage ring2026