Numerical Assessments of Impingement Flow over Flat Surface due to Single and Twin Circular Long Water Jets

dc.contributor.authorSeraj, M. M.
dc.contributor.authorE. Mahdi
dc.contributor.authorGadala, Mohamed S.
dc.date.accessioned2021-12-22T11:39:48Z
dc.date.accessioned2023-08-23T05:12:21Z
dc.date.available2021-12-22T11:39:48Z
dc.date.available2023-08-23T05:12:21Z
dc.date.issued2012-11
dc.descriptionLiquid jet impingement with distinguished ability in cooling has been used widely in different industries such as electronic packages [1] and metal making processes [2-3] . In steel making industry, arrays of water jets cool red hot steel strip to a specified temperature in run-out table (ROT) stage before coiling. The control of cooling in ROT is crucial in order to obtain desirable mechanical properties (e.g. toughness, strength) and metallurgical properties (e.g. microstructure, hardness) according to customers demand. New advanced high strength steels are increasingly developed at reduced coiling temperature of steel strip and, in turn, sophisticated cooling systems with more accurate thermal prediction have to be employed at ROT stage. However, ROT cooling is a highly complicated transient heat transfer process and full scale modelling is a very difficult task.en_US
dc.description.abstractHydrodynamics of impingement flow is a key partner of heat transfer analysis of run-out table (ROT) steel cooling. Velocity and pressure profiles before and after impingement of long circular free-surface industrial water jets (Re = 16,669-50,068) was numerically studied and also wetting front propagation and size of impingement zone were computed. The turbulent models represented impingement water flows over surface better in good agreement with the experimental data at the ROT facility. Higher velocity gradient was obtained for long turbulent jets indicating enhanced heat transfer at impingement zone. The effect of local pressure on saturation temperature changes predication of boiling heat transfer correlations up to 9% which is noticeable for ROT cooling. Impingement zone was found smaller respect to the estimation used in ROT modeling obtained from short jets experiments. For twin jets, simulation show calm interaction of low flow rate water jets with no splashing in accordance with the experiment. Water film thickness in interaction zone is elevated toward jet-jet axis.en_US
dc.identifier.citationSeraj, M. M., Mahdi, E., & Gadala, M. S. (2012). Numerical assessments of impingement flow over flat surface due to single and twin circular long water jets. Trans Control Mech Trans Control Mech Syst, 1, 290-299.en_US
dc.identifier.urihttps://dspace-uat.adu.ac.ae/handle/1/1896
dc.language.isoen_USen_US
dc.publisherTsesten_US
dc.subjectLong Jeten_US
dc.subjectHydrodynamicen_US
dc.subjectRun-Out Tableen_US
dc.subjectJet Interactionen_US
dc.titleNumerical Assessments of Impingement Flow over Flat Surface due to Single and Twin Circular Long Water Jetsen_US
dc.title.alternativeTransaction On Control And Mechanical Systemsen_US
dc.typeArticleen_US

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