Two-phase Flow Analysis for Small-scale Ballast Water Tank Model by Hydraulics Experiment and Simulations

Author:

Liu Guangshuai,Watanabe Toraharu,Shinoda Takeshi

Abstract

Abstract This study is utilizing hydraulics experimental and computational fluid dynamics (CFD) methods to verify the flow phenomenon in the ballast water drainage process and discuss the drainage efficiency. In order to facilitate the analysis of the flow characteristics of ballast water in the ballast tank of a typical bulk carrier, the complex structure is simplified into two simple small-scale models, a single-longitudinal model and a single-transversal model. Both are designed with the scale of 1:10 for the data collection. The experimental results are then validated and verified by conducting a two-phase flow model applied volume of fluid (VOF) method. Based on that result, the use of the VOF method is suitable for the ballast water drainage simulation, so it can be used in large-scale model calculations to predict the drainage efficiency of ballast tanks. In addition, this study also conducts a comparative analysis of two configuration modes of the single-longitudinal model and the single-transversal model, which provides a reference for the design and improvement of complex structures.

Publisher

IOP Publishing

Subject

General Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Simulation and Evaluation of Runoff in Tributary of Weihe River Basin in Western China;Water;2024-01-09

2. A Study on Design Investigation Method for Drainage Plan in Ship’s Ballast Tanks by Hydraulic Model Experiment;Journal of the Japan Society of Naval Architects and Ocean Engineers;2023

3. Investigation of Flow Phenomena and Improvement of Drain Course in Ship Ballast Tank Based on Two Phase Flow Model;Journal of the Japan Society of Naval Architects and Ocean Engineers;2023

4. Development and Application of the Xin'anjiang Model based on Grid-Computation Unit Nesting;2022 8th International Conference on Hydraulic and Civil Engineering: Deep Space Intelligent Development and Utilization Forum (ICHCE);2022-11-25

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