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EVALUATING FOULED BALLAST USING SEISMIC SURFACE WAVES

机译:使用地震表面波评估污垢镇流器

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This paper presents the equipment and Spectral Analysis of Surface Wave (SASW) approach for non-invasively characterizing railroad track ballast and foundation layers. Surface wave testing on a railroad track is more complicated than that on soil sites or pavements because of the presence of ballast, crossties, and rails as well as the complexity of ballast-soil foundation structure in terms of the variation of shear-wave velocity with depth. Using portable SASW equipment, the Young's Modulus of the ballast was calculated for both clean and fouled ballast in wet and dry conditions. In addition, the local modulus is determined at different locations under the tie, e.g. tie center or edge, to investigate modulus variation and tie support under a single tie. Expansion of the system to measure the modulus under two adjacent ties is also discussed and may be suitable for evaluating ballast performance under §213.103, which requires ballast to perform the following serviceability functions: (1) transmit and distribute the load of the track and railroad rolling equipment to the subgrade; (2) restrain the track laterally, longitudinally, and vertically under dynamic loads imposed by railroad rolling equipment and thermal stresses exerted by the rail; (3) provide adequate drainage for the track; and (4) maintain proper track crosslevel, surface, and alignment".
机译:本文介绍了非侵入性表征铁轨镇流器和基础层的表面波(SASW)方法的设备和光谱分析。铁路轨道上的表面波测试比在剪力波速度变化方面存在镇流器,粗糙和轨道以及镇流器土基础结构的复杂性,更复杂。深度。使用便携式SASW设备,计算较小的镇流器的模量,用于湿润和干燥条件下的清洁和污垢镇流器。另外,局部模量在领带下方的不同位置确定,例如,系列中心或边缘,调查单个领带下的模量变化和扎带。还讨论了系统扩展以测量两个相邻领带下的模量,并且可以适用于评估§213.103下的镇流器性能,这需要镇流器进行以下可维护性功能:(1)传输和分配轨道和铁路的负载滚动设备到路基; (2)在铁路滚动设备施加的动态载荷和轨道上施加的动态载荷下横向地抑制轨道。 (3)为轨道提供足够的排水; (4)保持适当的轨道Crosslevel,表面和对准“。

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