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Field and numerical modelling of sand-rubber mixtures vibration barrier

机译:沙橡胶混合隔振的数值模拟。

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Reducing ground vibrations using a vibration barrier has shown mixed levels of success in practice. The factors affecting the success are the source frequency, distance of source to area of interest at which vibration is to be reduced, ground type, barrier dimensions, and barrier material. Open trench has been shown to be the most effective vibration barrier but faces practical problems in implementation. To overcome the open trench problem, materials like air-filled cushion, polystyrene/geofoam, composites and piles have been used. One promising material which has not been investigated in the field for use as a vibration barrier is sand-rubber mixture. In this study, field tests using a continuous vibration source at various frequencies were conducted where the vibration amplitudes behind an open trench and two different sand-rubber mixtures barriers were measured. The amplitude ratios for the different vibration barriers were compared. The field tests were also modelled numerically to provide contours of the amplitude ratio around the vibration barrier to better understand the spatial performance of the vibration barrier. The sand-rubber mixture barrier is able to reduce the vibration amplitude by 75% behind the barrier when depth of barrier to Rayleigh wavelength ratio is >= 0.7. For a barrier, there is a finite zone behind the barrier where the amplitude ratio is <= 0.25. The size of the "effective" zone decreases as the impedance of the barrier increases.
机译:在实践中,使用隔振装置降低地面振动已显示出不同程度的成功。影响成功的因素是源频率,源到要减少振动的目标区域的距离,接地类型,屏障尺寸和屏障材料。已经证明,开放式沟槽是最有效的振动屏障,但在实施中面临实际问题。为了克服开沟问题,已经使用了诸如充气垫,聚苯乙烯/泡沫塑料,复合材料和桩的材料。在该领域中尚未研究用作振动屏障的有希望的材料是沙-橡胶混合物。在这项研究中,使用各种频率的连续振动源进行了现场测试,其中测量了一条开沟和两个不同的沙-橡胶混合物屏障后面的振动幅度。比较了不同隔振片的振幅比。还对现场测试进行了数值建模,以提供围绕振动屏障的振幅比的轮廓,以更好地了解振动屏障的空间性能。当阻隔层与瑞利波长之比大于等于0.7时,砂-橡胶混合阻隔层能够将振动幅度降低至阻隔层后面75%。对于障碍物,在障碍物后面有一个有限区域,其振幅比<= 0.25。随着屏障的阻抗增加,“有效”区域的尺寸减小。

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