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首页> 外文期刊>Journal of Sound and Vibration >Measurement and simulation of low frequency impulse noise and ground vibration from airblasts
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Measurement and simulation of low frequency impulse noise and ground vibration from airblasts

机译:冲击波产生的低频脉冲噪声和地面振动的测量和模拟

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This paper presents numerical simulations of low frequency ground vibration and dynamic overpressure in air using two different numerical models. Analysis is based on actual recordings during blast tests at Haslemoen test site in Norway in June 1994. It is attempted to use the collected airblast-induced overpressures and ground vibrations in order to assess the applicability of the two models. The first model is a computer code which is based on a global representation of ground and atmospheric layers, a so-called Fast Field Program (FFP). A viscoelastic and a poroelastic version of this model is used. The second model is a two-dimensional moving-load formulation for the propagation of airblast over ground. The poroelastic FFP gives the most complete and realistic reproduction of the processes involved, including decay of peak overpressure amplitude and dominant frequency of signals with range. It turns out that the moving-load formulation does not provide a complete description of the physics involved when the speed of sound in air is different from the ground wavespeeds. (C) 1998 Academic Press. [References: 25]
机译:本文利用两个不同的数值模型,对低频地面振动和空气中的动态超压进行了数值模拟。分析是基于1994年6月在挪威Haslemoen试验场进行的爆炸试验中的实际记录。尝试使用收集到的爆炸引起的超压和地面振动来评估这两种模型的适用性。第一个模型是基于地面和大气层的全局表示的计算机代码,即所谓的快速现场程序(FFP)。使用此模型的粘弹性和多孔弹性版本。第二个模型是二维运动载荷公式,用于在地面上传播气团。多孔弹性FFP可最完整,最真实地再现所涉及的过程,包括峰值超压幅度的衰减和范围内信号的主导频率。事实证明,当空气中的声速不同于地面波速时,运动载荷公式无法完整地描述所涉及的物理学。 (C)1998年学术出版社。 [参考:25]

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