An experimental study of the heat flux density and the heat transfer coefficient during cooling of a high-temperature surface by a dispersed liquid flow has been carried out. The results of an experimental study on the possibility of removal heat fluxes of high density and thermal stabilization of an energy-loaded surface are obtained. Experimental data were obtained with stationary heat transfer in the following range of operating parameters of the coolant: water pressure 0.2 ÷ 0.4 MPa, mass flow rate of water 0.0033 ÷ 0.015 kg / s; induction heating power 7 ÷ 20 kW.
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