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Design and Analysis of Lock System of Hydraulic Turbine Lifting Device

机译:水轮机举升装置锁定系统的设计与分析

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According to the characteristics of floating tidal turbines subjected to complex loads from marine, a symmetrical rack locking system was designed. When the turbine is lowered to the power generation position, the turbine can be fixed on the carrier without any gaps. Using the Bets theory, the maximum instantaneous axial force of the turbine subjected to the action of the carrier longitudinal and pitching is obtained, and then it is concluded that the axial force acting on the turbine is time-varying and has the same period as the shaking of the carrier. Establish the dynamic equation of turbine column and solve the dynamic characteristics of the locking force of the locking system under the action of the carrier shaking. Based on the sub-modeling analysis method of ANSYS, the finite element analysis of the locking system was performed to verify the stress variation of the locking rack. The simulation results show that the designed locking system meets the conditions of use, which verifies the feasibility of this design and simulation method.
机译:根据浮动潮汐涡轮机承受船舶复杂载荷的特性,设计了对称的齿条锁定系统。当涡轮降低到发电位置时,涡轮可以无间隙地固定在支架上。利用贝茨理论,获得了在轮架纵向和俯仰作用下涡轮机的最大瞬时轴向力,然后得出的结论是,作用在涡轮机上的轴向力是随时间变化的,并且与涡轮机具有相同的周期。摇动载体。建立了汽轮机柱动力方程,解决了在船架振动作用下锁紧系统锁紧力的动力学特性。基于ANSYS的子模型分析方法,对锁紧系统进行了有限元分析,以验证锁紧架的应力变化。仿真结果表明,所设计的锁紧系统满足使用条件,验证了该设计和仿真方法的可行性。

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