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October 1, 2025

Steady-State Heat Load Estimation Using Optical Fiber With Optical Frequency Domain Reflectometry

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Authors

BHBrian M. HlifkaUniversity of Notre DameEGErick Gomez-PerezRLRobert G. LandersUniversity of Notre Dame

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Implication

Observational analysis reveals temperature distribution in parts using optical fiber, suggesting insights for integration into smart systems.

Key Points

  • Temperature readings along the fiber indicate spatial temperature variations with high precision, enhancing monitoring capabilities.
  • Research successfully demonstrates heat source estimation based on measured temperature rise, allowing for adaptive thermal management.
  • Using an Au/Cu-coated fiber, combined strain and temperature measurements are achieved, showing viability for smart part applications.
  • Integrating fiber sensors offers real-time feedback for additively manufactured components, potentially improving performance and reliability.

Cite This Study

Hlifka et al. (2025) studied this question.

synapsesocial.com/papers/68dd91cffe798ba2fc498d13https://doi.org/10.1115/ht2025-157646
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Also Consider

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

  1. 1Temperature and strain monitoring during thermoforming of thermoplastic composite laminates using optical frequency domain reflectometry2024 · 4 citations
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  3. 3Research on the OFDR strain measurement method based on similarity features of dual-segment RSS2024 · 5 citations
  4. 4Optical Path Testing for Fiber Optic Current Transformers Using Optical Frequency Domain Reflectometry2025
  5. 5Optical Path Testing for Fiber Optic Current Transformers Using Optical Frequency Domain Reflectometry2025