Experimental Analysis of the Influence of the Cross-Section Coefficient on the Ship Squat While the Ship Exits the Shiplift Chamber

Author:

Fu Luzhidan12,Hu Yaan1,Li Zhonghua1

Affiliation:

1. The National Key Laboratory of Water Disaster Prevention, Nanjing Hydraulic Research Institute, Nanjing 210029, China

2. College of Water Conservancy and Hydropower Engineering, Hohai University, Nanjing 210098, China

Abstract

Due to the small cross-section coefficient of a shiplift chamber, the hydraulics problem becomes a complex water flow problem in ship operation. To prevent the ship from touching the bottom and ensure the safety of ship navigation and the docking of the chamber, a generalized physical model was used to study the ship squat of a 1000 t ship leaving the chamber. Throughout the experiment, the law of variation law in the ship squat under different chamber widths, water depths, chamber lengths, ship speeds and ship starting acceleration was obtained. In this study, the flow pattern of the ship leaving the chamber was divided into two parts: backflow and bottom flow. According to sensitivity analysis, when the shipping speed was less than 0.9 m/s, the influence of the width of the chamber on the squat was greater than that of the depth of the chamber; when the speed is greater than 0.9 m/s, the influence of the depth of the chamber on the squat was slightly greater than that of the width of the chamber. Based on our theoretical analysis, the basic expression of a ship squat was established.

Funder

National Key Research and Development Program of China

Publisher

MDPI AG

Reference27 articles.

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2. WG207 (2023). Innovations in Ship Lift Navigation Concepts, PIANC.

3. Water depth standard for Xiangjiaba shiplift’s chamber;Li;Port Waterw. Eng.,2016

4. Comparison and analysis of the calculating methods of ship squat;Wu;China Harb. Eng.,2010

5. Squat—A reply to a comparison of 2 prediction methods;Barrass;Nav. Archit.,1981

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