Title of article :
Heat transfer modeling for supercritical methane flowing in rocket engine cooling channels
Author/Authors :
Pizzarelli، Giuseppe نويسنده , , Marco and Nasuti، نويسنده , , Francesco and Onofri، نويسنده , , Marcello and Roncioni، نويسنده , , Pietro and Votta، نويسنده , , Raffaele and Battista، نويسنده , , Francesco، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2015
Abstract :
To investigate the methane behavior inside rocket engine cooling channels, a test article has been specifically designed by the Italian Aerospace Research Center. In this study, the expected wall and coolant behavior of this test article is analyzed by a three-dimensional conjugate heat transfer model. Different coolant pressure and surface roughness levels are considered in order to understand their influence on the heat transfer capability of the cooling system. Results show that heat transfer deterioration may occur in principle when methane is operated in near-critical condition. However, the resultant wall temperature peak reduces for increasing coolant pressure and for increasing surface roughness.
Keywords :
computational fluid dynamics (CFD) , Channel roughness , Conjugate Heat Transfer (CHT) , Liquid rocket engine , Regenerative cooling , Supercritical methane , Heat transfer deterioration
Journal title :
Applied Thermal Engineering
Journal title :
Applied Thermal Engineering