Numerical Simulation of Traveling Bubble Cavitating Flow in a Francis Turbine
Lingjiu Zhou () and
Zhengwei Wang ()
Additional contact information
Lingjiu Zhou: China Agricultural University, College of Water Conservancy and Civil Engineering
Zhengwei Wang: Tsinghua University, Department of Thermal Engineering
A chapter in Computational Mechanics, 2007, pp 262-262 from Springer
Abstract:
Abstract The 3-D unsteady Reynolds averaged Navier-tokes equations based on the pseudo-homogeneous flow theory and a vapor fraction transport-equation that accounts for non-condensable gas are solved to simulate cavitating flow in a Francis turbine. The calculation results agreed with experiment data reasonably. With the decrease of the Thoma number, the cavity first appears near the centre of the hub. At this stage the flow rate and the efficiency change little. Then the cavity near the centre of the hub grows thick and the cavities also appear on the blade suction side near outlet. The flow rate and efficiency then decrease rapidly with further reduce of the Thoma number.
Date: 2007
References: Add references at CitEc
Citations:
There are no downloads for this item, see the EconPapers FAQ for hints about obtaining it.
Related works:
This item may be available elsewhere in EconPapers: Search for items with the same title.
Export reference: BibTeX
RIS (EndNote, ProCite, RefMan)
HTML/Text
Persistent link: https://EconPapers.repec.org/RePEc:spr:sprchp:978-3-540-75999-7_62
Ordering information: This item can be ordered from
http://www.springer.com/9783540759997
DOI: 10.1007/978-3-540-75999-7_62
Access Statistics for this chapter
More chapters in Springer Books from Springer
Bibliographic data for series maintained by Sonal Shukla () and Springer Nature Abstracting and Indexing ().