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首页> 外文期刊>Journal of Hazardous Materials >Experimentally validated 3-D simulation of shock waves generated by dense explosives in confined complex geometries
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Experimentally validated 3-D simulation of shock waves generated by dense explosives in confined complex geometries

机译:在密闭复杂几何形状中由密集炸药产生的冲击波的实验验证3D模拟

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Accidental blast wave generation and propagation in the surroundings poses severe threats for people and property. The prediction of overpressure maxima and its change with time at specified distances can lead to useful conclusions in quantitative risk analysis applications. In this paper, the use of a computational fluid dynamics (CFD) code CFX-5.6 on dense explosive detonation events is described. The work deals with the three-dimensional simulation of overpressure wave propagation generated by the detonation of a dense explosive within a small-scale branched tunnel. It also aids at validating the code against published experimental data as well as to study the way that the resulting shock wave propagates in a confined space configuration. Predicted overpressure histories were plotted and compared versus experimental measurements showing a reasonably good agreement. Overpressure maxima and corresponding times were found close to the measured ones confirming that CFDs may constitute a useful tool in explosion hazard assessment procedures. Moreover, it was found that blast wave propagates preserving supersonic speed along the tunnel accompanied by high overpressure levels, and indicating that space confinement favors the formation and maintenance of a shock rather than a weak pressure wave.
机译:意外的爆炸波在周围的产生和传播对人员和财产构成严重威胁。在指定距离下对超压最大值及其随时间的变化的预测可以在定量风险分析应用中得出有用的结论。在本文中,描述了在致密炸药爆炸事件中使用计算流体力学(CFD)代码CFX-5.6。这项工作涉及由小支路隧道内的密集炸药爆炸引起的超压波传播的三维模拟。它还有助于根据已发布的实验数据验证代码,并研究所产生的冲击波在密闭空间配置中的传播方式。绘制了预测的过压历史记录,并将其与实验测量值进行比较,显示出相当好的一致性。发现超压最大值和相应的时间接近所测量的值,这证实了CFD可能构成爆炸危险评估程序中的有用工具。此外,还发现爆炸波沿超音速传播并保持较高的超压水平,从而沿隧道传播,并表明空间限制有利于冲击的形成和维持,而不是弱的压力波。

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