首页> 外文会议>ASME international mechanical engineering congress >A MECHANICAL MODEL FOR DYNAMIC BEHAVIOR OF LARGE AMPLITUDE LIQUID SLOSHING IN PARTIALLY FILLED TANK VEHICLES
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A MECHANICAL MODEL FOR DYNAMIC BEHAVIOR OF LARGE AMPLITUDE LIQUID SLOSHING IN PARTIALLY FILLED TANK VEHICLES

机译:部分填充罐车中大振幅液体晃动动态行为的机械模型

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A mechanical model of liquid sloshing is developed to investigate the longitudinal dynamic characteristics of partially filled liquid cargo tank vehicles during typical straight-line driving. The dynamic liquid morion is modeled by utilizing a mechanical system that describes the behavior of the liquid motion as a linear spring-mass model augmented with an impact subsystem for longitudinal oscillations. Computer simulation of tank vehicles under rough road conditions is performed by incorporating the forces and moments caused by liquid motion into the pitch plane vehicle model. The fifth wheel loads and the normal axle loads, which are key factors to vehicle structure design, fatigue analysis and vehicle performance characteristics, are computed using the mechanical system approach in order to investigate the influence of liquid motion. This study presents a new approach to investigate the longitudinal dynamic behavior of partially filled tank vehicles under large amplitude liquid sloshing.
机译:开发了一种液体晃动的机械模型,以研究典型的直线驱动期间部分填充的液体货物罐车的纵向动态特性。通过利用描述液体运动的行为的机械系统来建模动态液体乳房,作为用于纵向振荡的冲击子系统的线性弹簧质量模型。通过将由液体运动引起的液体运动引起的力和力矩结合到俯仰平面车辆模型中来执行粗糙道路条件下的计算机模拟。使用机械系统方法计算第五轮载荷和普通轴载,这是车辆结构设计,疲劳分析和车辆性能特性的关键因素,以便研究液体运动的影响。该研究提出了一种新方法来研究在大振幅液位下部分填充罐车辆的纵向动态行为。

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