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兵工学报 ›› 2025, Vol. 46 ›› Issue (10): 250572-.doi: 10.12382/bgxb.2025.0572

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基于实验伤道的数字人破片伤计算模型及构建方法

樊壮卿1,2, 王硕3,*(), 李翔宇1, 王建民2, 张双博2, 李冠桦2, 陈菁2, 卢芳云1,**()   

  1. 1 国防科技大学 理学院, 湖南 长沙 410073
    2 陆军军医大学 大坪医院, 重庆 400042
    3 国防科技大学 计算机学院, 湖南 长沙 410073

Computational Model and Construction Method for Digital Human Fragment Injuries Based onExperimental Wound Ballistics

FAN Zhuangqing1,2, WANG Shuo3,*(), LI Xiangyu1, WANG Jianmin2, ZHANG Shuangbo2, LI Guanhua2, CHEN Jing2, LU Fangyun1,**()   

  1. 1 College of Science, National University of Defense Technology, Changsha, 410073, Hunan, China
    2 Daping Hospital, Army Medical University, 400042, Chongqing, China
    3 College of Computer Science and Technology, National University of Defense Technology, Changsha, 410073, Hunan, China
  • Received:2025-06-30 Online:2025-11-05

摘要:

针对国内缺乏基于实验伤道的数字人破片伤计算方法及模型系统化研究的需求,提出了实验伤道数字人破片伤模型构建方法,构建了高精度人体几何模型,通过开展破片侵彻生物组织试验及数值仿真研究获得了破片侵彻人体组织的实验伤道计算模型,明确了破片侵彻组织器官深度及孔径与人员损伤的量化判据,基于Qt平台和OpenGL技术开发了数字人破片伤计算软件,开展了单破片命中确定部位和单破片不同角度命中人体两种典型算例研究。系统地提出数字人破片伤计算方法并构建了高精度模型软件,可为战场人员破片伤损伤评估、杀爆类战斗部打击下减员预测以及人员损伤防护提供科学支撑。

关键词: 破片伤, 数字人, 人员易损性, 损伤判据, 损伤预测

Abstract:

This research has significant practical significance for enhancing defense strategies and has attracted significant attention from scholars worldwide. There is a lack of systematic research on the calculation methods and models for digital human fragment injuries based on experimental wound ballistics in China. A construction method for digital human fragment injury model is proposed, and a high-precision human geometric model is established. The injury calculation models are derived from the fragment penetration experiment and numerical simulation. The quantitative criteria for the penetrating depth and aperture of fragment into the human tissues and organs, as well as personnel injury are established. A digital human fragment injury calculation software is developed using Qt platform and OpenGL technology, and the representative cases of single fragment hitting a specific part of human body and hitting the human body at different angles are studied. The digital human fragment injury calculation method and the associated high-precision model software are proposed to offer scientific support for battlefield fragment injury assessment, casualty prediction during warhead attacks, and personnel protection strategies.

Key words: fragment injury, digital human, personnel vulnerability, injury criteria, injury prediction