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  1. 1

    Heat transfer coefficient determination on 3D geometries from transient thermochromic liquid crystal experiments by Ryley, J, McGilvray, M, Gillespie, D

    Published 2019
    “…Where the 1D assumption is applicable, results are less than the experimental uncertainty (<6%) at the majority of locations. Typical 1D-based methods are unable to provide reliable spatial measurements over geometrically complex ribbed surfaces, and to the authors’ best knowledge this is the first time distributions of HTC have been reported for engine representative rib geometry.…”
    Journal article
  2. 2

    Heat transfer coefficient determination on 3D geometries from transient thermochromic liquid crystal experiments by Ryley, J, McGilvray, M, Gillespie, D

    Published 2019
    “…Where the 1D assumption is applicable, results are less than the experimental uncertainty (<6%) at the majority of locations. Typical 1D-based methods are unable to provide reliable spatial measurements over geometrically complex ribbed surfaces, and to the authors’ best knowledge this is the first time distributions of HTC have been reported for engine representative rib geometry.…”
    Journal article
  3. 3

    Calculation of heat transfer coefficient distribution on 3D geometries from transient liquid crystal experiments by Ryley, J, McGilvray, M, Gillespie, D

    Published 2014
    “…Where the 1D application is applicable results agree within experimental uncertainty (∼6%) at the majority of locations. Typical 1D based methods are unable to provide reliable spatial measurements over ribbed surfaces and to the authors best knowledge this is the first time distributions of HTC have been reported for engine representative rib geometry.…”
    Conference item