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Analysis of the Deep Sea Mining Pipe Transverse Vibration Characteristics Based on Finite Element Method

机译:基于有限元法的深海采矿管横向振动特性分析

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This paper analyzes the transverse vibration laws of 5000?m ladder-shaped mining pipe under different towing velocities and accelerations in the ocean, thinking of the pipe as the beam model, discretized based on the FEM. The algorithm is used to solve the problem to obtain the transverse vibration law. The research shows that the mining pipe overall transverse vibration trend decreases first and then increases, the minimum vibration value occurs at 3000?m, and the maximum occurs at the top. Increasing the towing velocity, acceleration, and ore bin weight will increase the transverse vibration value. The vibration intensity produced by the same acceleration in the constant acceleration and deceleration stages is different, and the damping effect after adding the same damping is also different. In the range of 0.01?m/s 2 –0.1?m/s 2 , the vibration reduction effect after adding damping in the constant deceleration stage is more significant, and in the range of 0.1?m/s 2 -0.2?m/s 2 , the vibration reduction effect after adding damping in the constant acceleration stage is more significant. In the stage of the constant acceleration or deceleration, when adding the same damping, the vibration intensity generated by the large acceleration is still far greater than the vibration intensity generated by the small acceleration, so the mining ship should keep the small acceleration for towing motion.
机译:本文分析了在不同牵引速度和海洋的加速度下的5000?M梯形采矿管的横向振动定律,思考管道作为光束模型,基于FEM离心。该算法用于解决问题以获得横向振动法。该研究表明,采矿管道整体横向振动趋势首先降低,然后增加,最小振动值发生在3000?M,最大值发生在顶部。增加牵引速度,加速度和矿石箱重量将增加横向振动值。通过恒定加速度和减速级相同加速产生的振动强度是不同的,并且在添加相同阻尼后的阻尼效果也不同。在0.01Ωm/ s 2 -0.1Δm/ s 2的范围内,在恒定减速阶段加入阻尼后的减振效果更显着,并且在0.1μm/ s 2-0.2Ω·m / S 2,在恒定加速阶段加入阻尼后的减振效果更为显着。在恒定加速度或减速的阶段,当添加相同的阻尼时,由大加速度产生的振动强度仍然远远大于小加速度产生的振动强度,因此采矿船应保持牵引运动的小加速度。

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