Numerical Prediction of Turbulent Oscillating Flow and Associated Heat Transfer

Numerical Prediction of Turbulent Oscillating Flow and Associated Heat Transfer
Author :
Publisher : Createspace Independent Publishing Platform
Total Pages : 250
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ISBN-10 : 1724319051
ISBN-13 : 9781724319050
Rating : 4/5 (51 Downloads)

Book Synopsis Numerical Prediction of Turbulent Oscillating Flow and Associated Heat Transfer by : National Aeronautics and Space Administration (NASA)

Download or read book Numerical Prediction of Turbulent Oscillating Flow and Associated Heat Transfer written by National Aeronautics and Space Administration (NASA) and published by Createspace Independent Publishing Platform. This book was released on 2018-07-27 with total page 250 pages. Available in PDF, EPUB and Kindle. Book excerpt: A crucial point for further development of engines is the optimization of its heat exchangers which operate under oscillatory flow conditions. It has been found that the most important thermodynamic uncertainties in the Stirling engine designs for space power are in the heat transfer between gas and metal in all engine components and in the pressure drop across the heat exchanger components. So far, performance codes cannot predict the power output of a Stirling engine reasonably enough if used for a wide variety of engines. Thus, there is a strong need for better performance codes. However, a performance code is not concerned with the details of the flow. This information must be provided externally. While analytical relationships exist for laminar oscillating flow, there has been hardly any information about transitional and turbulent oscillating flow, which could be introduced into the performance codes. In 1986, a survey by Seume and Simon revealed that most Stirling engine heat exchangers operate in the transitional and turbulent regime. Consequently, research has since focused on the unresolved issue of transitional and turbulent oscillating flow and heat transfer. Since 1988, the University of Minnesota oscillating flow facility has obtained experimental data about transitional and turbulent oscillating flow. However, since the experiments in this field are extremely difficult, lengthy, and expensive, it is advantageous to numerically simulate the flow and heat transfer accurately from first principles. Work done at the University of Minnesota on the development of such a numerical simulation is summarized. Koehler, W. J. and Patankar, S. V. and Ibele, W. E. Unspecified Center NASA-CR-187177, NAS 1.26:187177 NAG3-1024; RTOP 590-13-11...


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