PIV Study of Aeration Efficient of Stepped Spillway System

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Abstract

This paper investigates the three-dimensional (3D) simulation of Cascade aerator system using Lattice Boltzmann simulation and laboratory experiment was carried out to investigate the flow, aeration and cavitation in the spillway. Different configurations of stepped spillway are designed in this project in order to investigate the relationship between the configurations of stepped spillway and cavitation in the flow. The aeration in the stepped spillway will also be investigated. The experimental result will be compared with the simulated result at the end of this project. The figure of flow pattern at the 3rd step in simulation and experiment for Set 1 and Set 2 are look similar between LBM simulation and the experiment findings. This will provide a better understanding of the cavitation, aeration and flow in different configurations of the stepped spillway. In addition the occurrence of negative pressure region in the stepped spillway, increases the possibility of cavitation to occur. The cavitation will damage the structure of the stepped spillway. Furthermore, it also founds that increasing in barrier thickness of the stepped spillway will improve the aeration efficiency and reduce the cavitation in stepped spillway.

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APA

Abas, M. A., Jamil, R., Rozainy, M. R., Zainol, M. A., Adlan, M. N., & Keong, C. W. (2017). PIV Study of Aeration Efficient of Stepped Spillway System. In IOP Conference Series: Materials Science and Engineering (Vol. 209). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/209/1/012090

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