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Walking Model to Simulate Interaction Effects between Pedestrians and Lively Structures

机译:走路模型模拟行人与生动结构之间的互动效应

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This paper focuses on evaluating the vertical movements that appear when a pedestrian is walking on a slender platelike structure. For this, the pedestrian is modeled by a dynamic system consisting of a concentrated mass, located in the pedestrian's center of mass, supported by two springs that simulate the stiffness of the legs. The success of this simple mechanical model is that the resulting contact forces are well adjusted to those observed experimentally for human gait. In this way, the structure is undergoing the moving mass and is loaded with realistic forces, resulting in a proper assembly to study interaction effects. The dynamic response is obtained at any coordinate by the modal superposition method, considering a finite number of modes. Differential equations of the resulting coupled problem are solved using proper numerical techniques (constant time step Runge-Kutta method). Solutions obtained for different scenarios (depending on the dimensions and boundary conditions of the plate and on the mass of the pedestrian with respect to the mass of the floor) are presented and compared with the response of the structure when the pedestrian load is treated as a moving force, as suggested in some design guidelines. (C) 2017 American Society of Civil Engineers.
机译:本文侧重于评估当行人行走在纤细的塑料结构上时出现的垂直运动。为此,行人由由位于行人的质心中的集中质量组成的动态系统,由两个弹簧的支撑,该弹簧构成腿的刚度。这种简单的机械模型的成功是,所得到的接触力良好地调节到实验为人体步态观察的那些。以这种方式,该结构正在经历移动质量并加载有现实力,导致适当的组装来研究相互作用效应。考虑到有限数量的模式,模叠方法在任何坐标处获得动态响应。使用适当的数值技术(恒定时间步长-Kutta方法)解决了所得耦合问题的微分方程。提出并将溶液获得不同场景(取决于板的尺寸和边界条件以及行人的质量相对于地板的质量),并与在行人载荷被视为时的结构的响应相比如某些设计准则所建议的那样,移动力量。 (c)2017美国土木工程师协会。

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