
Experimental and Numerical Investigations of Two-Phase Flow with Non-Isothermal Boundary Conditions under Microgravity Conditions
Cuvillier Verlag eBooks
Published on 6. March 2017
204 pages
978-3-7369-8493-6 (ISBN)
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Two-phase flow with a free surface, non-isothermal boundary conditions and heat and mass transfer over the free surface must be understood for a save operation of cryogenic upper stages with restart capability. This work is a foundational research carried out with numerical and experimental means.
A mathematical and numerical model were developed that allow to describe such systems under varying gravity levels. The reorientation of cryogenic parahydrogen upon a sudden gravity step reduction was investigated experimentally using the drop tower at ZARM, University of Bremen. Influencing the motion and final shape of the free surface could be realized with a precisely defined wall temperature gradient.
Heat and mass transfer over the free surface in a microgravity environment could be investigated numerically based on the experimental results of the SOURCE-II sounding rocket experiment. A transient simulation was carried out to study the coupled system between superheated container wall, subcooled liquid, free surface configuration and three-phase contact angle.
More details
Language
English
Place of publication
Göttingen
Germany
File size
6,98 MB
ISBN-13
978-3-7369-8493-6 (9783736984936)
Schweitzer Classification
Other editions
Additional editions

Sebastian Schmitt
Experimental and Numerical Investigations of Two-Phase Flow with Non-Isothermal Boundary Conditions under Microgravity Conditions
Book
03/2017
1st Edition
Cuvillier Verlag
€56.90
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Person
Author/originator
Content
- Intro
- Abstract
- Zusammenfassung
- Preamble
- Contents
- List of Symbols
- Chapter 1 Introduction
- Chapter 2 Theoretical Background
- Chapter 3 State of Research
- Chapter 4 Mathematical Model
- Chapter 5 Numerical Model
- Chapter 6 Drop Tower Experiments
- Chapter 7 Sounding Rocket Experiment
- Chapter 8 Results
- Chapter 9 Conclusion and Outlook
- Appendix A Appendix
- List of Figures
- List of Tables
- Bibliography
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