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To Calculation of Regenerative Cooling of a Liquid Fuel Rocket Engine Chamber
Authors:F V Pelevin  A V Ponomarev
Institution:1.Bauman Moscow State Technical University (National Research University),Moscow,Russia
Abstract:This paper demonstrates that in transition from the one-dimensional longitudinal-channel motion of the coolant in the regenerative cooling system of the liquid propellant engine to the twodimensional (interchannel) channel motion (transpiration) through a porous mesh material (PMM), the hydraulic losses decrease. Experimental data on PMM hydraulic resistance coefficients and heat transfer in porous paths with the interchannel coolant transpiration (ICCT) is presented.
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