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Dynamic Response of Railway Track Resting on Variable Foundation Using Finite Element Method

机译:用有限元法测定铁路轨道对变量基础的动态响应

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At high train speed, differential settlement of railway track arises due to the variation in stiffness and yield characteristics of foundation along its length. In the present study, the effect of nonhomogeneous elastic foundation on dynamic response of railway track due to a moving load is studied. The railway track is modeled as an infinitely long beam on nonhomogeneous elastic foundation subjected to a moving load. The foundation stiffness is varying harmonically, about a mean value, along the length of beam. The dynamic response is obtained using a finite element (FE) approach. Adequacy of the proposed FE model is ascertained by comparing the FE results with the results available in the literature. The comprehensive new results are obtained to quantify the effect of amplitude (ε) and wavelength (λ) of harmonic foundation on the dynamic response of beam. The peak displacement of beam increases with ε, λ and velocity. It is further shown that for harmonically varying foundation, higher-order harmonics are significantly present in the response making it irregular. Also, the critical velocity (V_(cr)) is considerably affected by ε and λ. The variation of peak displacement with velocity is found to be irregular and instead of a distinct peak at V_(cr), a plateau is obtained, implying that for a range of velocities peak displacement is quite high. This is also demonstrated through modal mass contribution by a large number of modes. The FE model used in this study can be naturally extended to predict the differential track settlement by including yielding characteristics of foundation.
机译:在高火车速度下,由于沿其长度的刚度和基础的产量特征的变化而产生差动沉降。在本研究中,研究了非均匀弹性地基对由于移动载荷引起的铁路轨道动态响应的影响。铁路轨道被建模为无数长光束,在不均匀的弹性基础上进行移动负载。基础刚度沿着梁的长度逐渐变化,围绕平均值。使用有限元(FE)方法获得动态响应。通过将Fe结果与文献中可获得的结果进行比较,确定所提出的Fe模型的充分性。获得全面的新结果,以量化谐波基础对梁动力响应的振幅(ε)和波长(λ)的影响。光束的峰值位移随ε,λ和速度而增加。进一步表明,对于谐振的基础,在响应中显着存在高阶谐波,使其不规则。而且,临界速度(V_(CR))受ε和λ的影响。发现具有速度的峰值位移的变化是不规则的,并且在获得高原的v_(Cr)下代替明显的峰值,这意味着对于一系列速度峰位是相当高的。这也通过大量模式来证明通过模态质量贡献来证明。本研究中使用的FE模型可以自然地扩展以通过包括基础的产生特征来预测差动轨道沉降。

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