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Experimental and numerical analysis of an industrial RC tower

机译:工业RC塔的实验与数值分析

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This study presents the results of analyses performed using a dynamic 3D model of a RC skip tower located at a coal mine in Poland. Kinematic excitation was based on acceleration records of a mining tremor (underground mining activity) and an earthquake. Although Poland is not a particularly active seismic region, there are regional seismic phenomena associated with mineral exploitation. These vibrations, generally connected with human activity, are so-called paraseismic events. Whilst mining-related surface vibrations show some similarities with natural earthquakes, there are also some differences. Dynamic calculations were performed in the time domain. Analysis of the results refers to the distribution of stresses and displacements which were compared to the limit values. An additional goal of the study was to examine the possibility of loss of structural stability and the risk of collapse. The reason for making the analysis was the fact that kinematic excitations of high structures had not been taken into account in the design procedure. Using actual recorded surface vibrations caused by rock burst and earthquake as kinematics loads allowed a comparison of the dynamic responses of the structure with two different seismic events.
机译:本研究介绍了使用位于波兰煤矿的RC跳过塔的动态3D模型进行了分析结果。运动激励是基于矿业震颤(地下采矿活动)和地震的加速记录。虽然波兰不是一个特别活跃的地震区域,但存在与矿物剥削相关的区域地震现象。这些振动通常与人类活动相连,是所谓的解混事件。虽然采矿相关的表面振动显示出一些与自然地震的相似性,但也存在一些差异。在时域中进行动态计算。结果分析是指与极限值进行比较的应力和位移的分布。该研究的另一个目标是检查结构稳定性损失的可能性和崩溃的风险。分析的原因是在设计过程中没有考虑到高结构的运动激发。使用由岩石突发和地震引起的实际记录的表面振动,因为运动学负载允许比较结构与两个不同地震事件的结构的动态响应。

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