Experimental Study of Steam–Water Direct Contact Condensation in a Horizontal Pipe Geometry †
Abstract
:1. Introduction
2. Materials and Methods
3. Results and Discussion
4. Conclusions
- Under these experimental conditions, three different steam plumes have been identified, i.e., conical, elliptical, and divergent.
- The temperature distributions obtained for two different steam pressure and water temperature values show decreasing trends along pipe length in a similar fashion.
- The steam ejected from the nozzle can be deflected downwards (or upwards) at an inclination from the reference nozzle axis due to high turbulence and CIWH occurring.
- Steam plumes elongate and extend as the temperature of subcooled water increases.
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
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Parameters | Values |
---|---|
Steam Injection Pressure | 1–2 bar |
Water Temperature (Degree of Subcooling) | 60–70 °C |
Inlet Diameter of Nozzle | ½ inch |
Exit Diameter of Nozzle | 3 mm |
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Hassan, S.; Iqbal, M.; Shah, A.; Quddus, A.; Khan, N.A.; Afzal, H.; Ayub, M.K. Experimental Study of Steam–Water Direct Contact Condensation in a Horizontal Pipe Geometry. Eng. Proc. 2022, 23, 25. https://doi.org/10.3390/engproc2022023025
Hassan S, Iqbal M, Shah A, Quddus A, Khan NA, Afzal H, Ayub MK. Experimental Study of Steam–Water Direct Contact Condensation in a Horizontal Pipe Geometry. Engineering Proceedings. 2022; 23(1):25. https://doi.org/10.3390/engproc2022023025
Chicago/Turabian StyleHassan, Shumail, Mazhar Iqbal, Ajmal Shah, Abdul Quddus, Noman Arif Khan, Haseeb Afzal, and Muhammad Khawar Ayub. 2022. "Experimental Study of Steam–Water Direct Contact Condensation in a Horizontal Pipe Geometry" Engineering Proceedings 23, no. 1: 25. https://doi.org/10.3390/engproc2022023025
APA StyleHassan, S., Iqbal, M., Shah, A., Quddus, A., Khan, N. A., Afzal, H., & Ayub, M. K. (2022). Experimental Study of Steam–Water Direct Contact Condensation in a Horizontal Pipe Geometry. Engineering Proceedings, 23(1), 25. https://doi.org/10.3390/engproc2022023025