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Load Distribution of Railway Tank Car in Fluid Sloshing

机译:铁路油罐车晃荡中的载荷分布

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In most structural analysis and fatigue calculations of tank car, researchers would directly input the horizontal inertial force of the fluid on the end wall of the tank as the pressure of the tank wall. In fact, the fluid will influences the distribution of pressure on the tank end wall. Especially when the viscosity of the liquid inside tank is sufficient, the shear force on the tank body will be considerable and finally change the force distribution of the tank. The time-domain description of the hydrodynamic drag is used in combination with the conventional boundary conditions when the fluid sloshing and viscosity is taken into consideration. It is shown that the force of the filled tank from the fluid sloshing is not only pressure on the head wall and on the end wall but also on the side wall with resistance along the way.
机译:在罐车的大多数结构分析和疲劳计算中,研究人员将罐端壁上流体的水平惯性力直接输入为罐壁的压力。实际上,流体将影响罐端壁上的压力分布。尤其是当罐内液体的粘度足够时,罐体上的剪切力将相当大,并最终改变罐的力分布。当考虑流体的晃动和粘度时,结合常规的边界条件使用流体动力阻力的时域描述。可以看出,由于液体晃动而引起的填充罐的力不仅是顶壁和端壁上的压力,而且还包括沿途带有阻力的侧壁上的压力。

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