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Field Experiments On Wave Propagation And Vibration Isolation By Using Wave Barriers

机译:使用波障进行波传播和隔振的现场实验

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In this paper, the obtained results from the experimental studies describe the basic characteristics of wave propagation and ability of possible measures to reduce the impact of soil vibrations on structural response for both active and passive isolation cases. A series of field tests on the foundation vibrations generated by electrodynamic shaker are performed to examine the screening efficiency of open and in-filled trench barriers which are constructed for full-scale measurement. From field measurements of amplitude with and without the barrier, the amplitude reduction ratio is estimated at different points of interest. Wave propagating characteristics and frequency-dependent screening effects of the wave barriers are investigated according to various isolation material stiffnesses. The remarkable outcomes from these experimental studies can be briefly generalized as follows: backfilled trench with softer material than soil is more effective for the passive isolation than the active one. The reduction effects of wave barriers depend on the frequency of vibration source for both passive and active isolation cases. In-situ measurements confirm that vibration screening systems using open or in-filled trench barriers can be applied as a reduction measure for soil vibrations due to a moving load which is considered as stationary wave source in this problem.
机译:在本文中,从实验研究中获得的结果描述了波传播的基本特征以及在主动和被动隔离情况下减少土壤振动对结构响应的影响的可能措施的能力。对电动振动筛产生的基础振动进行了一系列的现场测试,以检查为全面测量而构造的开放式和填充式沟槽壁障的屏蔽效率。从有和没有障碍物的幅度的现场测量中,可以在不同的关注点估计幅度减小率。根据各种隔离材料的刚度,研究了波障的传播特性和频率相关的屏蔽效应。这些实验研究的显着成果可以概括如下:用比土壤更软的材料回填沟槽对于被动隔离比主动隔离更有效。对于无源和有源隔离情况,波障的减小效果取决于振动源的频率。现场测量证实,使用开放式或填充式沟槽屏障的振动筛分系统可以作为减少由于移动载荷而引起的土壤振动的措施,在该问题中移动载荷被视为固定波源。

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