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Warship fire-fighting system intelligent reconfiguration decision-making and its application based on battle damage
Journal of National University of Defense Technology 2023, 45(2): 65-72
Published: 28 April 2023
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Aiming at the problem of isolated information of monitoring points and low degree of intelligent decision-making in the current warship fire-fighting system, a node-based fire-fighting system functional logic model was constructed. The intelligent decision algorithm of fire-fighting system damage isolation and reconstruction based on combat damage employment was put forward. And the intelligent monitoring system for fire-fighting was developed. Results of case comparison calculation and system inspection show that the intelligent decision-making algorithm and intelligent monitoring system can effectively improve the speed and accuracy of analysis and decision-making and significantly improve the efficiency of command and control, which provides effective support for the water fire fighting system under combat damage condition.

Issue
Time domain modeling and simulation of warship flooding process based on counter-flooding activities
Chinese Journal of Ship Research 2022, 17(6): 174-181
Published: 11 August 2022
Abstract PDF (2.9 MB) Collect
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Objectives

Warship damage flooding is an interactive process between progressive flooding and counter-flooding measures under battle-damaged conditions. Traditional damage stability theory cannot simulate the influence of counter-flooding measures on the damaged warship flooding process, and there is no method for predicting this process in the full-time domain.

Methods

By analyzing a coupling relationship between the damage flooding process and counter-flooding measures, a flooding process time domain model is established and a numerical solving algorithm obtained. Case studies are analyzed on the basis of the model and algorithm, and an interactive visual simulation system is developed.

Results

The simulation systemcan comprehensively assess the flooding process and various counter-flooding measures, providing an important supplement for warship damage stability theory.

Conclusions

This study can help designers to understand the effectiveness of counter-flooding design schemes on the flooding process and guide the design of counter-flooding systems. In addition, it can be used for shipboard flooding decision-making, giving it high military application value.

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