4.7 Article

Experimental study on hydrodynamic interaction between dam-break waves and circular pier

Journal

OCEAN ENGINEERING
Volume 266, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.oceaneng.2022.113093

Keywords

Dam-break wave; Circular pier; Hydrodynamic interaction; Pressure distribution; Tsunami force; Calculation formula

Funding

  1. National Natural Science Foundation of China [52008375, 51678491, 52108167]
  2. Youth talent promotion project of Henan Province [2021HYTP021]
  3. China Postdoctoral Science Foundation [2020M672278]
  4. Scientific and Technological Research Program of Henan Province [222102320038]
  5. Fundamental Research Funds for the Central Universities [2682022ZTPY019]

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This paper focuses on the hydrodynamic interaction between dam-break waves and circular pier. Experimental studies were conducted to observe the evolution of wave front profiles and analyze the pressures and forces on the circular pier. The research provides valuable reference for improving calculation methods.
This paper focuses on the hydrodynamic interaction between dam-break waves and circular pier. Firstly, a series of dam-break waves under dry-bed and wet-bed conditions were conducted, the evolution of wave front profiles are obtained experimentally. Then, experimental studies on hydrodynamic interaction between these dam-break waves and a circular pier were carried out systematically. After that, the pressures and their vertical distributions on the front, back and lateral side of the circular pier are obtained and analyzed in detail. In which, sudden rise of pressures on the front side, obviously oscillatory pressures on the back side, and negative pressures on the lateral side are observed. Furthermore, the forces and moments on the circular pier are presented, and their charac-teristics are explored. Among which, the maximum force and moment occur in the impulse stage when there are fluctuations upstream of the wave front, otherwise they occur in the quasi-stationary stage. In addition, the corresponding dimensionless coefficients are obtained and their evolutions are revealed elaborately. Finally, the calculation formulas for maximum force and moment on circular pier, considering the variation of wave front profile, are proposed, and related coefficients are suggested. This study could provide reference for the improvement of calculation method.

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