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Shock transmission through universal joint of cutter suction dredger

机译:通过刀具抽吸挖泥船的万向接头冲击

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摘要

The dredger operation extended from protected water to harsher environments in recent years. This resulted in a change in design strategy. Understanding these complex dynamic interaction during the dredging operation using a Cutter Suction Dredger (CSD) can improve the production by reducing the downtime. CSD consists of the dredge hull, spud and the cutter shaft. A hybrid scaled model of the CSD is developed using Froude and Cauchy scaling for the different section of the CSD. The assembly was modelled in two sections. The spud hull assembly dynamics was modelled using WAMIT and ANSYS. The system was identified and reduced to a SDOF in the surge direction. The surge dynamics was coupled to the cutter shaft assembly using a roller support. Wave excitation acting on the assembly was determined using statistically linearised Morison equation. The assembly was linearised in frequency domain and transformed to state space and the temporal response was determined. A parametric study was carried out to understand the influence of the relative shaft dimensions and the coupling strength on the vibration transmission when subjected to an impulsive load. The results from the study indicated that shaft dimension asymmetry and coupling strength influences the vibration transmission.
机译:近年来,挖泥船操作从受保护的水延伸到恶意的环境。这导致了设计策略的变化。了解使用刀具吸入挖泥船(CSD)在疏浚操作期间的这些复杂的动态交互可以通过减少停机时间来改善生产。 CSD包括挖泥船船体,炉膛和刀轴。 CSD的混合缩放模型是使用CSD的不同部分的Froude和Cauchy缩放开发的。组件以两部分建模。使用WAMIT和ANSYS建模Spud Hull组装动态。识别系统并将其缩小到喘振方向的SDOF。使用辊子支撑件连接到浪涌动力学与刀轴组件。使用统计线性的Morison方程测定作用在组件上的波浪激发。组件在频域中线性化,转化为状态空间,并确定时间响应。进行参数学研究以了解相对轴尺寸和耦合强度在受冲动载荷时对振动变速器的影响。研究结果表明,轴尺寸不对称和耦合强度影响振动传动。

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