Study on critical condition of damage mode of local grillage structure under near-field underwater explosion

IF 4.3 2区 工程技术 Q1 ENGINEERING, OCEAN
Kun Zhao , Dongyan Shi , Zhikai Wang , Yanpei Zhou , Yonghui Liang
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Abstract

The rapid prediction of damage to underwater explosion-damaged ship plate structures is a crucial element in the assessment of ship impact damage. In this paper, we address the challenge of rapidly predicting the damage mode of plate and frame structures subjected to underwater explosions. We begin by establishing that the shock wave load of an underwater explosion can be modeled as a rectangular pulse, based on the effective impulse of action and the characteristics of the target structure. We then delve into the mechanical criteria governing the different damage modes, employing the equivalent theory of plate and frame. The critical condition of the dimensionless damage mode of the local plate and frame structure of the ship is deduced by the dimensional analysis method based on the mechanical criterion of damage mode. In this paper, an integrated approach combining experimental and numerical research methods is employed. Firstly, an analysis of the damage modes of the light plate structure is conducted. The experimental data, numerical data, and theoretical calculation data based on the critical discriminant condition of the dimensionless damage mode are compared. The accuracy and reliability of the numerical method and the critical discriminant condition of the dimensionless damage mode are validated. A series of numerical simulations were conducted on the plate and stiffened plate structure of a ship, and the validity of the critical discriminant conditions of the dimensionless damage mode is confirmed. In conjunction with the underwater explosion impact factor, an engineering estimation method for the damage of the local plate structure of the ship is developed ultimately.
近场水下爆炸下局部格栅结构破坏模式临界状态研究
快速预测水下爆炸损坏的船板结构的损坏情况是评估船舶撞击损坏情况的关键因素。在本文中,我们要解决的难题是快速预测遭受水下爆炸的板状和框架结构的损坏模式。首先,我们根据有效作用冲力和目标结构的特征,确定水下爆炸的冲击波载荷可模拟为矩形脉冲。然后,我们利用板和框架的等效理论,深入研究了支配不同破坏模式的力学标准。根据损伤模式的力学准则,通过尺寸分析方法推导出船舶局部板框结构无量纲损伤模式的临界条件。本文采用了实验和数值研究相结合的综合方法。首先,对轻质板结构的损伤模式进行了分析。比较了实验数据、数值数据和基于无量纲损伤模式临界判别条件的理论计算数据。验证了数值方法和无量纲损伤模式临界判别条件的准确性和可靠性。对船舶的板和加劲板结构进行了一系列数值模拟,证实了无量纲破坏模式临界判别条件的有效性。结合水下爆炸影响因子,最终开发出一种船舶局部板结构损伤的工程估算方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Ocean Research
Applied Ocean Research 地学-工程:大洋
CiteScore
8.70
自引率
7.00%
发文量
316
审稿时长
59 days
期刊介绍: The aim of Applied Ocean Research is to encourage the submission of papers that advance the state of knowledge in a range of topics relevant to ocean engineering.
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