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Dynamics of ships and fenders during berthing in a time domain

机译:时域停泊期间船舶和护舷的动态

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When designing fixed or semi-fixed structures used for berthing ships, it is generally assumed that the entire kinetic energy of the ship is absorbed by the fender or the system offenders. The fenders have the functions of ensuring a safe berthing both for the ships and the piers by absorbing shock loads and preventing direct contact between the berthed ship and the pier. In this study, the problem is analyzed in the stages of berthing, collision and leaving. Each of the stages is analyzed and solved in the time domain. The system is assumed to consist of three components: pier, fender and the ship. Environmental effects that simultaneously affect berthing are wave, current and wind effects. Cummins equation was assumed to be a good representation of the problem and was solved in time domain taking various factors into account. Nonlinear effects related to the instantaneous values of forces, moments and ship motions, which are time dependent, were studied by the Cummins equation and its later developments by Ogilvie. Fender forces were added to the calculation scheme by the authors. A case study for a passenger ferry operating in Izmir bay is presented.
机译:在设计用于停泊船舶的固定或半固定结构时,通常假定船舶的全部动能由防护板或系统违者吸收。挡泥板的功能是通过吸收冲击载荷并防止停泊的船舶与码头之间的直接接触来确保船舶和码头的安全停泊。在这项研究中,该问题在停泊,碰撞和离开阶段进行了分析。在时域中分析和求解每个阶段。假定该系统由三个部分组成:码头,护舷板和轮船。同时影响停泊的环境影响是波浪,电流和风的影响。康明斯方程被认为可以很好地表示问题,并在时域考虑了多种因素后对其进行了求解。康明斯方程研究了与力,力矩和船舶运动的瞬时值相关的非线性效应,这些效应与时间有关,Ogilvie后来对其进行了研究。作者将挡泥板力添加到计算方案中。介绍了一个在伊兹密尔湾运营的客运渡轮的案例研究。

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