Eulerian steady state solution of boiling curve for impinging water jet on moving hot metal plate

This paper proposes a method for obtaining boiling curve from experimental temperature measurement for an impinging water stream on the moving hot plate without using the inverse method. Using infrared thermography, temperature profiles on the back side of the moving hot metal sheet were measured. O...

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Veröffentlicht in:Heat and mass transfer 2019-06, Vol.55 (6), p.1819-1828
Hauptverfasser: Kulkarni, Gaurav Abhay, Nallathambi, Ashok Kumar, Specht, Eckehard
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creator Kulkarni, Gaurav Abhay
Nallathambi, Ashok Kumar
Specht, Eckehard
description This paper proposes a method for obtaining boiling curve from experimental temperature measurement for an impinging water stream on the moving hot plate without using the inverse method. Using infrared thermography, temperature profiles on the back side of the moving hot metal sheet were measured. On the front side, water impinges on the hot region and induces pre-cooling in the dry region. This experimental setup can be treated as an impinging region of the DC casting. Once the Eulerian steady state is reached, temperature profiles can be approximated as a single curve using Boltzmann function. With this function, energy balance is conducted, including the advection term to obtain the boiling curve. It is observed that the obtained boiling curve is similar to the boiling curve obtained from inverse solution.
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subjects Direct chill casting
Engineering
Engineering Thermodynamics
Heat and Mass Transfer
Hydraulic jets
Industrial Chemistry/Chemical Engineering
Infrared imaging
Inverse method
Metal plates
Metal sheets
Original
Steady state
Temperature
Temperature measurement
Temperature profiles
Thermodynamics
Thermography
title Eulerian steady state solution of boiling curve for impinging water jet on moving hot metal plate
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