Influence of surface roughness on the heat transfer coefficient of fluids in an additively manufactured supercharger

A. S. Smekalkin, A. Ivanov
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Abstract

The supercharger is intended for heating a fluid (gaseous helium or gaseous nitrogen) used for the pressurization of fuel tanks of oxidizer and propellant of a rocket engine. The fluid is heated with the generator gas downstream the turbine. A supercharger with increased channel surface roughness was made according to an additive technology. High roughness is one of the features of producing parts by selective laser melting. The article presents a method of calculating the heat transfer of generator gas and nitrogen, as well as the results of heat transfer both with and without account of the surface roughness in the channels of the liquid-propellant engines additively manufactured supercharger. Firing tests were carried out at the research base of NPO Energomash JSC. The calculated and experimental values of the temperature of the working medium at the outlet of the supercharger are compared.
增材制造增压器中表面粗糙度对流体传热系数的影响
增压器用于加热液体(气态氦或气态氮),用于给火箭发动机的氧化剂和推进剂的燃料箱加压。流体在涡轮机下游与发电机气体一起加热。采用增材制造技术制造了一种增加通道表面粗糙度的增压器。高粗糙度是选择性激光熔化生产零件的特点之一。本文介绍了一种计算发电机气体和氮气传热的方法,以及考虑和不考虑增材增压器流道表面粗糙度的传热结果。发射试验在NPO Energomash JSC研究基地进行。对增压器出口工作介质温度的计算值与实验值进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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