Heat and Mass Transfer to Particles in One-Dimensional Oscillating Flows

The heat and mass transfer to solid particles in one-dimensional oscillating flows are investigated in this work. A meta-correlation for the calculation of the Nusselt number (Sherwood number) is derived by comparing 33 correlations and data point sets from experiments and simulations. These models...

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Published inProcesses Vol. 11; no. 1; p. 173
Main Authors Heidinger, Stefan, Unz, Simon, Beckmann, Michael
Format Journal Article
LanguageEnglish
Published Basel MDPI AG 01.01.2023
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Abstract The heat and mass transfer to solid particles in one-dimensional oscillating flows are investigated in this work. A meta-correlation for the calculation of the Nusselt number (Sherwood number) is derived by comparing 33 correlations and data point sets from experiments and simulations. These models are all unified by their dependencies on the amplitude parameter 10−3≤ϵ≤103 and the Reynolds number 10−1≤Re≤106, while the ϵ-Re plane is applied as a framework in order to graphically display the various models. This is the first study to consider this problem in the entire ϵ-Re plane quantitatively while taking preexisting asymptotic models for various areas of the ϵ-Re plane into account.
AbstractList The heat and mass transfer to solid particles in one-dimensional oscillating flows are investigated in this work. A meta-correlation for the calculation of the Nusselt number (Sherwood number) is derived by comparing 33 correlations and data point sets from experiments and simulations. These models are all unified by their dependencies on the amplitude parameter 10−3≤ϵ≤103 and the Reynolds number 10−1≤Re≤106, while the ϵ-Re plane is applied as a framework in order to graphically display the various models. This is the first study to consider this problem in the entire ϵ-Re plane quantitatively while taking preexisting asymptotic models for various areas of the ϵ-Re plane into account.
Author Unz, Simon
Heidinger, Stefan
Beckmann, Michael
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  surname: Unz
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  givenname: Michael
  surname: Beckmann
  fullname: Beckmann, Michael
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CitedBy_id crossref_primary_10_3390_pr12020385
crossref_primary_10_1063_5_0201939
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crossref_primary_10_3390_pr11092663
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Snippet The heat and mass transfer to solid particles in one-dimensional oscillating flows are investigated in this work. A meta-correlation for the calculation of the...
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SubjectTerms Data points
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Fluid flow
Heat transfer
Mass transfer
Oscillating flow
Reynolds number
Title Heat and Mass Transfer to Particles in One-Dimensional Oscillating Flows
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