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Analysis study the used of Tuned Mass Damper (TMD) on an existing train bridge due to high speed train with moving mass load approach

机译:分析研究由于存在质量移动方法的高速列车,在现有列车桥上使用调谐质量阻尼器(TMD)

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As the need of the train speed increased, the existing bridges need to be evaluated, especially in dynamic responses, which are deformation and acceleration. In this study, Cisomang Bridge is modeled and analyzed due to the high-speed train SJ X2 in varying speeds, 50 km/h, 100 km/h, 150 km/h, and 200 km/h. The used of tuned mass damper also will be varied on its setting and placing. The tuned mass dampers setting be varied based on the first or second natural frequency and the placing of tuned mass damper be varied based on maximum deformation of the first or second mode. Moreover, the tuned mass damper ratio will be varied 1% and 1.6%. For all speed variations, dynamic responses of structure without TMD still fulfil the Indonesian Government Criterion based on PM 60 - 2012 but do not meet requirement of comfort criteria based on DIN-Fachbericht 101. Furthermore, only for the speed train 50km/h dynamic responses of structure fulfil safety criteria based on Eurocode EN 1990:2002, whereas the other speed variations do not meet that requirement. In the use of TMD 1% mass ratio, the structure fulfils the safety criteria for all speed variations. In the use of TMD 1.6% mass ratio, all the structure fulfils the safety and comfort criteria except 100 km/h speed which only fulfils the safety criteria.
机译:随着列车速度需求的增加,需要对现有桥梁进行评估,尤其是在动态响应方面,即变形和加速度。在这项研究中,由于高速火车SJ X2在各种速度,50 km / h,100 km / h,150 km / h和200 km / h的速度变化下,对Cisomang桥进行了建模和分析。调谐质量阻尼器的使用也将因其设置和放置而异。基于第一或第二固有频率来改变调谐质量阻尼器的设置,并且基于第一或第二模式的最大变形来改变调谐质量阻尼器的位置。而且,调谐的质量阻尼器比率将变化1%和1.6%。对于所有速度变化,没有TMD的结构的动力响应仍符合印尼政府基于PM 60-2012的标准,但不满足基于DIN-Fachbericht 101的舒适性标准的要求。此外,仅对于速度为50km / h的速度列车动力响应结构件符合欧洲规范EN 1990:2002的安全标准,而其他速度变化不满足该要求。在使用1%TMD质量比的情况下,该结构满足所有速度变化的安全标准。在使用TMD 1.6%的质量比时,除100 km / h的速度仅满足安全标准外,所有结构均满足安全和舒适性标准。

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