首页> 外文会议>DE-vol.117; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20041113-19; Anaheim,CA(US) >FORCED RESPONSE OF TRANSLATING MEDIA WITH VARIABLE LENGTH AND TENSION: APPLICATION TO HIGH-SPEED ELEVATORS
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FORCED RESPONSE OF TRANSLATING MEDIA WITH VARIABLE LENGTH AND TENSION: APPLICATION TO HIGH-SPEED ELEVATORS

机译:长度和张力可变的传输介质的强制响应:在高速电梯中的应用

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摘要

The lateral response of vertically translating media with variable length and tension, subjected to general initial conditions and external excitation, are determined. The translating media are modeled as a taut string and tensioned beams with pinned and fixed boundaries. In each model a rigid body is attached to the lower end of the medium and has a prescribed displacement along the horizontal direction. The rate of change of the energy of the translating medium is analyzed from the control volume and system viewpoints. The models are used to predict the forced response of a moving cable in a high-speed elevator. Three spatial discretization schemes are used to calculate the response and shown to yield the same results. The convergence of the solution for each model is investigated. The approximate solution for the string model with constant tension is compared with its exact solution from the wave method.
机译:确定了经受一般初始条件和外部激励的,具有可变长度和张力的垂直平移介质的横向响应。翻译介质被建模为拉紧的弦,并具有固定和固定边界的张紧梁。在每种模型中,刚体均附接到介质的下端,并沿水平方向具有指定的位移。从控制量和系统角度分析了翻译介质能量的变化率。这些模型用于预测高速电梯中移动电缆的强制响应。三种空间离散方案用于计算响应,并显示出相同的结果。研究了每种模型的解的收敛性。将具有恒定张力的弦模型的近似解与通过波动法得到的精确解进行比较。

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