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Ontwerp van trillingsreducerende maatregelen voor spoorverkeer door middel van topologische optimalisatie

机译:通过拓扑优化设计铁路交通减振措施

摘要

Vibrations and re-radiated noise in buildings due to railway traffic are a matter of growing environmental concern. This has necessitated the development of vibration mitigation measures at the source (railway track), on the transmission path, and at the receiver (building). Mitigation measures on the transmission path aim at impeding propagation of ground vibration from source to receiver and are particularly appealing in situations with existing track and buildings. Examples include open trenches, soft and stiff wave barriers, stiffening of subgrade under the track, and placement of heavy masses next to track. Because of the high computational costs of numerical simulations, mitigation measures on the transmission path are usually designed by trial and error. Only a limited number of relatively simple design geometries is explored, leaving much roomfor further improvement by fully exploiting flexibility in design geometry provided by construction methods presently in use. The aim of this PhD research is therefore to develop a methodology for optimizing the design of mitigation measures on the transmission path, taking into accounttechnological constraints of buildability as well as uncertainties related to construction and surrounding soil. A topology optimization approach, that seeks the most efficient distribution of a given amount of material in a specified design domain, will be adopted for finding innovative optimized solutions.
机译:由于铁路运输而引起的建筑物中的振动和再辐射噪声越来越引起人们对环境问题的关注。这就需要在源(铁轨),传输路径和接收器(建筑物)上制定减振措施。传输路径上的缓解措施旨在阻止地面振动从源到接收器的传播,在现有轨道和建筑物的情况下尤其有吸引力。例子包括开放的沟渠,软硬的防波堤,轨道下方的路基硬化以及在轨道旁边放置重物。由于数值模拟的高计算成本,因此通常通过反复试验来设计传输路径上的缓解措施。仅探索了有限数量的相对简单的设计几何形状,通过充分利用当前使用的构造方法所提供的设计几何形状的灵活性,留下了进一步改进的空间。因此,本博士研究的目的是在考虑可建造性的技术限制以及与施工和周围土壤有关的不确定性的情况下,开发一种优化传输路径上的缓解措施设计的方法。拓扑优化方法将寻求在指定的设计域中最有效地分配给定数量的材料,以查找创新的优化解决方案。

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    Van hoorickx Cédric;

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