建筑物内爆泄压口冲击波参数工程算法研究

汪维 刘瑞朝 吴飚 周朝阳

振动与冲击 ›› 2015, Vol. 34 ›› Issue (9) : 48-54.

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PDF(2059 KB)
振动与冲击 ›› 2015, Vol. 34 ›› Issue (9) : 48-54.
论文

建筑物内爆泄压口冲击波参数工程算法研究

  • 汪维  刘瑞朝 吴飚 周朝阳
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Engineering arithmetic of internal blast waves parameters in the venting area of building structures

  • WANG Wei, LIU Rui-chao, WU Biao, Zhou Chao-yang
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摘要

建筑物内部爆炸泄压口冲击波参数的确定对于建筑物结构毁伤评估具有重要的作用,一旦泄压口冲击波参数确定以后,即可利用相应毁伤判据快速评估泄压口附近结构和设备的毁伤程度。由于内部爆炸波是初始爆炸波经过建筑物内壁面多次反射叠加作用的结果,在泄压口会形成不同于自由场的冲击波,目前还未有泄压口冲击波参数成熟的快速工程算法。为了分析泄压口冲击波参数、总结相应快速经验工程算法,本文在量纲分析的基础上,提出影响泄压口冲击波峰值压力和冲量相关的无量纲参数。然后利用首先利用AUTODYN软件数值仿真研究了特定当量内爆炸作用下冲击波形成的过程,分析了泄压口部冲击波压力波形,并研究了泄压口的冲击波峰参数与不同结构参数之间的关系,最后在大量数值计算的基础上总结了泄压口的冲击波参数的经验公式,为建筑物内爆毁伤评估奠定基础。

Abstract

The blast waves parameters in the venting area are important in damage assessment of building structures under internal blast. Once the blast waves parameters are certain, the damage level of structures and equipments near the venting area can be assessed. As internal blast wave is the reflection of initial blast wave and interaction of the reflected waves by the inner surface of building structure, and the blast waves in the venting area is not the same as free air blast waves, the engineering arithmetic of blast waves parameters in the venting area have not been proposed so far. In this paper, based on dimensional analysis, the relationship of venting area blast wave parameters with different structure parameters is analyzed. Then the internal blast shock wave of building structure is simulated by AUTODYN software. The form process of internal blast wave is investigated and the blast pressure profile in venting area is analyzed. At last based on a large number of numerical simulations, the empirical equations of venting area shock waves parameter are summarized, and it can be used for the base of damage assessment of internal building blast.
 

关键词

建筑物内爆 / 量纲分析 / 工程算法 / 数值模拟 / AUTODYN

引用本文

导出引用
汪维 刘瑞朝 吴飚 周朝阳. 建筑物内爆泄压口冲击波参数工程算法研究[J]. 振动与冲击, 2015, 34(9): 48-54
WANG Wei, LIU Rui-chao, WU Biao, Zhou Chao-yang. Engineering arithmetic of internal blast waves parameters in the venting area of building structures[J]. Journal of Vibration and Shock, 2015, 34(9): 48-54

参考文献

[1] Smith P D, Rose T A. Blast wave propagation in city streets-an overview[J]. Progress in Structural Engineering and Materials, 2006, 8(1): 16-28.
[2] Beshara F B A. Modeling of blast loading on aboveground structures -I.General phenomenology and external blast[J]. Computers and Structures, 1994, 51(5): 585-596.
[3] Beshara F B A. Modeling of blast loading on aboveground structures -II. Internal blast and ground shock[J]. Computers and Structures, 1994, 51(5): 597-606.
[4] Zhao C F, Chen J Y, Wang Y, Lu S J. Damage mechanism and response of reinforced concrete containment structure under internal blast loading[J]. Theoretical and Applied Fracture Mechanics, 2012, 61: 12-20.
[5] Feldgun V, Karinski Y, Edri I, Tsemakh D, Yankelevsky D. On Blast Pressure Analysis Due to a Partially Confined Explosion: II. Numerical Studies[J]. International Journal of Protective Structures, 2012, 3(1): 61-80.
[6] AUTODYN. Theory Manual. Century Dynamics[M], 2006.
[7] TM5-1300. Structures to resist the effects of accidental explosions[R]. US Department of the Army 1990.
[8] UFC-3-340-02. Structures to resist the effects of accidental explosions[R]. US Department of Defense 2008.
[9] Shi Y C, Hao H, Li Z X. Numerical simulation of blast wave interactionwith structure columns[J]. Shock Waves, 2007, 17: 113-133.
[10] Chapman T C, Rose T A, Simth P D. Refleced blast wave resultants behind cantilever walls: a new prediction technique[J]. International Journal of Impact Engineering, 1998, 16(3): 397-403.

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