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Energy saving analysis of segment positioning in shield tunneling machine considering assembling path optimization

机译:考虑装配路径优化的盾构掘进机分段定位节能分析

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A motion parameter optimization method based on the objective of minimizing the total energy consumption in segment positioning was proposed for segment erector of shield tunneling machine. The segment positioning process was decomposed into rotation, lifting and sliding actions in deriving the energy calculation model of segment erection. The work of gravity was taken into account in the mathematical modeling of energy consumed by each actuator. In order to investigate the relationship between the work done by the actuator and the path moved along by the segment, the upward and downward directions as well as the operating quadrant of the segment erector were defined. Piecewise nonlinear function of energy was presented, of which the result is determined by closely coupled components as working parameters and some intermediate variables. Finally, the effectiveness of the optimization method was proved by conducting a case study with a segment erector for the tunnel with a diameter of 3 m and drawing comparisons between different assembling paths. The results show that the energy required by assembling a ring of segments along the optimized moving path can be reduced up to 5%. The method proposed in this work definitely provides an effective energy saving solution for shield tunneling machine.
机译:提出了一种运动参数优化方法,最小化屏蔽隧道机的段射击器的段射击器的总能量消耗。分段定位过程被分解成旋转,提升和滑动动作在导出段勃起的能量计算模型中。在每个执行器消耗的能量的数学建模中考虑了重力的工作。为了研究致动器和沿着区段移动的路径之间的工作之间的关系,定义了向上和向下方向,向上和向下方向以及分段射击器的操作象限。提出了能量的分段非线性函数,其中结果通过紧密耦合的组件作为工作参数和一些中间变量来确定。最后,通过用直径为3μm的隧道进行壳体射线器进行案例研究证明了优化方法的有效性,并在不同组装路径之间绘制比较。结果表明,通过组装沿优化的移动路径的段环所需的能量可以减少高达5%。本作品提出的方法绝对为盾构隧道机提供了有效的节能解决方案。

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