A High-Resolution Method for the Experimental Determination of the Heat Transfer Coefficients of Industrial Nozzle Systems in Heat Treatment Plants

Author:

Trampe Eileen1,Rademacher Nico1ORCID,Wulfmeier Maximilian1,Büschgens Dominik1ORCID,Pfeifer Herbert1

Affiliation:

1. Department for Industrial Furnaces and Heat Engineering, RWTH Aachen University, 52074 Aachen, Germany

Abstract

In industrial plants, metal strips are quenched using convective heat transfer. This involves accelerating gas through a nozzle system onto the material to be quenched, resulting in a fast and uniform cooling process. The efficiency of the heat transfer is determined by the specific nozzle system. The presented work is focussed on the analysis of the heat transfer by forced convection through impingement jets both theoretically and experimentally. A unique method for determining the forced convective heat transfer coefficient is described and its application to industrial size nozzle arrays of annealing-line cooling sections is presented.

Funder

Prallstrahl-CFD IGF-project

Federal Ministry for Economic Affairs and Climate Action

Publisher

MDPI AG

Reference20 articles.

1. SMS Group GmbH (2024, January 09). Annealing and Galvanizing Lines. Available online: https://www.sms-group.com/de-de/plants/annealing-and-galvanizing-lines-for-steel.

2. Quenching and Partitioning Steel Heat Treatment;Wang;Metallogr. Microstruct. Anal.,2013

3. Core Writing Team, Hoesung, L., and Romero, J. (2023). IPCC, 2023: Climate Change 2023: Synthesis Report. Contribution of Working Groups I, II and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, IPCC.

4. Bergman, T.L., Lavine, A.S., Incropera, F.P., and Dewitt, D.P. (2011). Fundamentals of Heat and Mass Transfer, John Wiley & Sons.

5. Zuckerman, N., and Lior, N. (2006). Jet Impingement Heat Transfer: Physics, Correlations, and Numerical Modeling, Elsevier.

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