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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Validation of underwater explosion response analysis for airbag inflator using a fluid-structure interaction algorithm
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Validation of underwater explosion response analysis for airbag inflator using a fluid-structure interaction algorithm

机译:利用流体结构交互算法验证安全气囊充气机的水下爆炸响应分析

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摘要

Air gun shock systems are commonly used as alternative explosion energy sources for underwater explosion (UNDEX) shock tests owing to their low cost and environmental impact. The airbag inflator of automotive airbag systems is also very useful to generate extremely rapid underwater gas release in lab-scale tests. To overcome the restrictions on the very small computational time step owing to the very fine fluid mesh around the nozzle hole in the explicit integration algorithm, and also the absence of a commercial solver and software for gas UNDEX of airbag inflator, an idealized airbag inflator and fluid mesh modeling technique was developed using nozzle holes of relatively large size and several small TNT charges instead of gas inside the airbag inflator. The objective of this study is to validate the results of an UNDEX response analysis of one and two idealized airbag inflators by comparison with the results of shock tests in a small water tank. This comparison was performed using the multi-material Arbitrary Lagrangian-Eulerian formulation and fluid-structure interaction algorithm. The number, size, vertical distance from the nozzle outlet, detonation velocity, and lighting times of small TNT charges were determined. Through mesh size convergence tests, the UNDEX response analysis and idealized airbag inflator modeling were validated.
机译:由于其低成本和环境影响,气枪震动系统通常用作水下爆炸(UNDEX)冲击试验的替代爆炸能源。汽车安全气囊系统的安全气囊充气机也非常有用,无法在实验室测量测试中产生极其快速的水下气体释放。为了克服在显式集成算法周围的喷嘴孔周围的非常细的流体网,还克服了对非常小的计算时间步骤的限制,并且还没有商业求解器和气囊充气机的天然气输液软件,是一种理想化的安全气囊充气机和利用相对大尺寸的喷嘴孔和几个小TNT电荷而不是气囊充气机内的气体开发了流体网格建模技术。本研究的目的是通过与小水箱中的冲击试验结果进行比较来验证一个和两个理想化的安全气囊充气器的撤销响应分析结果。使用多材料任意拉格朗日 - 欧拉配方和流体结构交互算法进行该比较。确定了距离喷嘴出口,爆震速度和小TNT电荷的爆震速度和照明时间的数量,尺寸,垂直距离。通过网状尺寸收敛试验,验证了撤销响应分析和理想化安全气囊充气造型。

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