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在具有多点启动的冲击管中超压场的分析
Zhuo Chen1,2, Huiqi Ren2, Qiang Zhao2
1School of Mechanical Engineering and Mechanics, Xiangtan University, Xiangtan 411105, China.
Sensors (Basel, Switzerland)
|July 11, 2023
概括
冲击管中的多点启动可以减少出口处的峰值过压. 延迟启动有效降低爆炸室的墙壁过压,这对于土木工程冲击测试至关重要.
科学领域:
- 土木工程 土木工程是指土木工程.
- 流体动力学 流体动力学
- 应用物理 应用物理
背景情况:
- 冲击管对于土木工程中的动态机械冲击测试至关重要.
- 当前冲击管主要使用单点爆炸启动来产生冲击波.
- 在冲击管中具有多点启动的超压场上存在有限的研究.
研究的目的:
- 分析冲击管中超压场的单点,同时多点和延迟多点启动.
- 通过对实验数据进行计算模型的验证,用于爆流场模拟.
- 研究控制和减少冲击管实验中的过压的方法.
主要方法:
- 结合实验测试和数值模拟来分析冲击管超压场.
- 研究了单点,同时多点和延迟多点启动场景.
- 使用实验过压数据验证的计算流体动力学 (CFD) 模型.
主要成果:
- 数字模拟与实验数据准确匹配,证实了模型的有效性.
- 同时的多点启动导致较低的峰值输出超压,而不是同一个电荷质量的单点启动.
- 延迟的多点启动,特别是六点启动,有效地降低了爆炸室内最大墙壁过压.
- 峰值输出超压在启动间隔时间低于10毫秒时线性下降,随后趋于平稳.
结论:
- 多点启动策略提供了对冲击管中冲击波动态的增强控制.
- 延迟启动是缓解内部表面峰值超压的有希望的技术.
- 结果为优化冲击管设计和运行,用于冲击测试应用提供了宝贵的见解.
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