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EFFECTS OF WATER INTAKE LAYOUT ALONG THE WHARF SHORELINE ON SHIPS

Abstract

The construction of a water intake along the wharf shoreline can realise the intensive and comprehensive utilisation of the shoreline. However, since the water intake will increase the lateral flow at the wharf and also the hydrodynamic forces on ships, it will bring risks to ships mooring and leaving. The effects of the water intake on ships are studied using a physical model, numerical model and standard formulas. The results show that it leads to an increase of the hydrodynamic forces acting on the ship when the standard formulas are used to calculate the forces without considering the water level difference between the two sides of the ship. The results of the physical model are closer to the real situation. Measures that can effectively reduce the influence of the water intake on ships are proposed by increasing the distance between the wharf front and the front of the water intake as well as the depth of the water inlet windows.

Keywords:

water intake, physical model, numerical model, lateral flow, hydrodynamic force

Details

Issue
Vol. 26 No. 4(104) (2019)
Section
Latest Articles
Published
31-12-2019
DOI:
https://doi.org/10.2478/pomr-2019-0079
Licencja:
Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

Open Access License

This journal provides immediate open access to its content under the Creative Commons BY 4.0 license. Authors who publish with this journal retain all copyrights and agree to the terms of the CC BY 4.0 license.

 

Authors

  • Xian-wei Kong

    School of Civil Engineering, Tianjin University
  • Lei Ding

    College of Marine and Environmental Sciences, Tianjin University of Science & Technology
  • Hai-cheng Liu

    School of Civil Engineering, Tianjin University
  • Jing Qu

    National Engineering Laboratory for Port Hydraulic Construction Technology, Tianjin Research Institute for Water Transport Engineering
  • Xiao-song Li

    National Engineering Laboratory for Port Hydraulic Construction Technology, Tianjin Research Institute for Water Transport Engineering

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