@inproceedings{e0f91cbfe02a4db58d4a2c8a2f07ead7,
title = "Study on the Fluid-Structure Interaction Characteristics of Projectile Water Entry Under Floating Ice",
abstract = "The deployment of projectiles in polar regions is significantly influenced by floating ice conditions during water entry. In this paper, based on the FSI method, the water entry process of the projectile is calculated for no ice and floating ice environments when the projectile enters the water at 100 m/s, and the difference between the cavity evolution and the impact load is compared. The computational method is validated through an experiment, and the calculation results are in good agreement with the experiment. Findings reveal that floating ice enhances cavity growth, prolongs closure duration, and elevates splash height near the free surface. Furthermore, projectile-ice collisions amplify impact forces, resulting in an 8.8\% and 13.1\% increase in peak acceleration and pressure, respectively, compared to the ice-free condition. These insights offer valuable guidance for the design of projectiles and vehicles in polar environments.",
keywords = "Cavity Evolution, Floating Ice, Fluid-Structure Interaction, Impact load, Polar Environment, Water Entry",
author = "Chen Wang and Qiaogao Huang and Yao Shi and Shan Gao and Hairui Zhao",
note = "Publisher Copyright: {\textcopyright} The Author(s), under exclusive license to Springer Nature Switzerland AG 2026.; 31st International Conference on Computational and Experimental Engineering and Sciences, ICCES 2025 ; Conference date: 25-05-2025 Through 29-05-2025",
year = "2026",
doi = "10.1007/978-3-032-17313-3\_33",
language = "英语",
isbn = "9783032173126",
series = "Mechanisms and Machine Science",
publisher = "Springer Science and Business Media B.V.",
pages = "438--449",
editor = "Xiqiao Feng and Kun Zhou",
booktitle = "Computational and Experimental Simulations in Engineering - Proceedings of ICCES 2025",
}