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首页> 外文期刊>Advances in Structural Engineering >On the effectiveness of ventilation to mitigate the damage of spherical chambers subjected to confined trinitrotoluene detonations
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On the effectiveness of ventilation to mitigate the damage of spherical chambers subjected to confined trinitrotoluene detonations

机译:关于通风减轻球形三硝基甲苯爆轰对球形腔室损害的有效性

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This article presents a comparative study on the effectiveness of ventilation to mitigate blasting effects on chambers subjected to confined detonations of high explosives. The pressure time-history that acts on the chamber walls is described by three components: (I) the first shock wave, (2) the train of re-reflected shock waves, and (3) the gas pressure. The radial response of spherical chambers is described by the radial breathing mode and modeled by an equivalent single degree of freedom system. The three pressure components are considered for the calculation of the maximum ductility ratio, which is obtained from the numerical solution of the single degree of freedom chamber response. It is assumed that openings reduce the gas pressure but they have an insignificant effect on shock waves. The dynamic response of fully and partially confined chambers are calculated and compared. Results show that intermediate/small openings (less than 10% of the surface of the chamber) are ineffective to mitigate the chamber response and damage. The vibratory response of the chamber is susceptible to elastic or plastic resonance but it is not considerably modified by the long-term gas pressure because of its high radial breathing mode frequency, allowing concluding that ventilation is ineffective to reduce the maximum response of spherical chambers subjected to internal high explosive explosion.
机译:这篇文章提供了通风的有效性的比较研究,以减轻爆炸对密闭爆炸室的爆炸作用。作用在腔室壁上的压力时程由三个部分描述:(I)第一冲击波;(2)一系列重新反射的冲击波;(3)气压。球形腔室的径向响应由径向呼吸模式描述,并由等效的单自由度系统建模。为计算最大延展比,应考虑这三个压力分量,这是从单自由度腔室响应的数值解获得的。假定开口会降低气压,但对冲击波的影响不大。计算并比较了完全和部分封闭腔室的动态响应。结果表明,中间/小开口(小于腔室表面的10%)不能有效缓解腔室响应和损坏。腔室的振动响应容易产生弹性或塑性共振,但是由于其高的径向呼吸模式频率,长期气压不会对其产生很大的影响,从而得出结论,通风不能有效地降低球形腔室的最大响应内部高爆炸性爆炸。

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