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A multi-body systems approach to simulate helicopter occupant protection systems

机译:一种模拟直升机乘员保护系统的多体系统方法

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This paper reports on the work of computer simulations carried out at Coventry University as part of the European 6th Framework HeliSafe TA project, which considered the potential improvements in occupant safety for civil helicopters. A multi-body systems approach with additional use of finite elements for critical components such as a pilot airbag and the harnesses was adopted in the computer models to simulate helicopter crash/rollover scenarios and to investigate the effectiveness of occupant protection systems deployed during helicopter crash scenarios. ADAMS and Madymo simulations of helicopter impact/rollover events were demonstrated. A cabin/cockpit model of a Bell UH-1D helicopter was developed to replicate the physical crash test setup and a parametric study for the pilot airbag and a range of harness concepts was performed. The use of validated multi-body systems-based cabin/cockpit models has proved to be effective in the development of new restraint system concepts for occupant protection.
机译:本文报告了在考文垂大学进行的计算机仿真工作,这是欧洲第六框架HeliSafe TA项目的一部分,该项目考虑了民用直升机在乘员安全方面的潜在改进。在计算机模型中采用了多体系统方法,对关键部件(例如飞行员安全气囊和安全带)额外使用了有限元,以模拟直升机坠毁/侧翻情况并调查在直升机坠毁情况下部署的乘员保护系统的有效性。演示了直升机撞击/侧翻事件的ADAMS和Madymo模拟。开发了贝尔UH-1D直升机的机舱/座舱模型,以复制物理碰撞测试设置,并对飞行员安全气囊和一系列安全带概念进行了参数研究。事实证明,使用经过验证的基于多体系统的机舱/座舱模型可以有效地开发新的用于保护乘员的约束系统概念。

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