2022应用数学和力学Open access

Reduced-Scale Experiment Study on the Protective Mechanism of Foam Coating Against Underwater Explosion Bubble Jet

Zhipeng DU, 中国人民解放军海军研究院,北京 100161, Lei Zhang, Yong Chen, Hongxing Hua, 上海交通大学 机械系统与振动国家重点实验室,上海 200240

Open full text 1 citations

Abstract

Underwater explosion poses a serious threat to underwater structures. Flexible cover or sandwich plate can reduce the underwater explosion impact response of underwater structures, so it has become a research hotspot. Previous studies have focused on the protective mechanism of the cover against shock waves, which is suitable for underwater explosion at a long distance. Besides the shock wave, the high-speed water jet towards the structure produced when the explosion bubbles collapse is more deadly in the near-distance underwater explosion. In view of this situation, based on the dimensional principle, this paper deduces the scaling similarity relationship. Through the scaling model underwater explosion test, it is found that the cavitation micro-bubble group on the surface of the covering coating interferes with the process of the explosion bubble forming high-speed water jet, and the protection mechanism of the underwater explosion bubble jet of the foam covering steel plate is put forward.

About this research paper

What this paper is about

Underwater explosion poses a serious threat to underwater structures. Flexible cover or sandwich plate can reduce the underwater explosion impact response of underwater structures, so it has become a research hotspot. Previous studies have focused on the protective mechanism of the cover against shock waves, which is suitable for underwater explosion at a long distance. Besides the shock wave, the high-speed water jet towards the structure produced when the explosion bubbles collapse is more deadly in the near-distance underwater explosion. In view of this situation, based on the dimensional principle, this paper deduces the scaling similarity relationship. Through the scaling model underwater explosion test, it is found that the cavitation micro-bubble group on the surface of the covering coating interferes with the process of the explosion bubble forming high-speed water jet, and the protection mechanism of the underwater explosion bubble jet of the foam covering steel plate is put forward.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Underwater explosion poses a serious threat to underwater structures. Flexible cover or sandwich plate can reduce the underwater explosion impact response of underwater structures, so it has become a research hotspot. Previous studies have focused on the protective mechanism of the cover against shock waves, which is suitable for underwater explosion at a long distance. Besides the shock wave, the high-speed water jet towards the structure produced when the explosion bubbles collapse is more deadly in the near-distance underwater explosion. In view of this situation, based on the dimensional principle, this paper deduces the scaling similarity relationship. Through the scaling model underwater explosion test, it is found that the cavitation micro-bubble group on the surface of the covering coating interferes with the process of the explosion bubble forming high-speed water jet, and the protection mechanism of the underwater explosion bubble jet of the foam covering steel plate is put forward.

Key concepts: Underwater explosion, Underwater, Bubble, Shock wave, Cavitation, Jet (fluid), Shock (circulatory), Scaling

Related papers

Back to paper searchBrowse research topicsOriginal source
Reduced-Scale Experiment Study on the Protective Mechanism of Foam Coating Against Underwater Explosion Bubble Jet — Research Paper | ScholarLens