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ICE-STRUCTURE IMPACT CONTACT LOAD CALCULATION WITH DYNAMIC MODEL AND SIMPLIFIED LOAD FORMULA

机译:用动态模型和简化负载公式的冰结构冲击接触载荷计算

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Shipping in arctic and in ice conditions is increasing. Modern propulsion systems often utilize azimuthing thrusters in their various forms. When operating azimuthing thruster equipped ships in ice conditions, the thruster will interact with ice. One such interaction type is an impact-type contact of an ice block and the thruster. The contact causes certain loading to the thruster. The contact load problem can be considered as an ice impact to a steel structure. In a study related to developing the Finnish-Swedish ice class rules, the impact forces due to an ice contact to a steel structure are dealt with a simple theoretical model and an experimental approach is used for the model validation. In this paper, the principle of the dynamic load model, its validation and suggestion for a simplified load estimation formula is presented. For an azimuthing thruster operated in ice conditions, an ice block impact contact load can be solved effectively with a simple three-mass dynamic-system model. The contact region is assumed to be a hemisphere indenting into ice, representing the azimuthing thruster hull or the propeller hub. Model considers ship speed, ship mass, thruster mass, ice mass and connections between these. The dynamic model was verified with available lull scale data and with two sets of experiments with ice from the Baltic Sea to give good estimate of the contact loads in impacts. The impact speed considered in these cases was below 5 m/s. The suggested simplified formulation is based on the dynamic contact load model results. The dynamic contact load model was run with different initial values. This gives indication how different parameters effect the contact load. The most significant variables were identified and only they are included in the suggested simplified approach.
机译:在北极和冰条件下运输正在增加。现代推进系统通常使用各种形式的氮杂化推进器。当在冰条件下的装备船舶船舶的船舶操作时,推进器将与冰相互作用。一种这种相互作用类型是冰块和推进器的冲击式接触。接触导致某些装入推进器。接触载荷问题可以被认为是对钢结构的冰波。在与开发芬兰瑞典冰级规则有关的研究中,通过对钢结构的冰接触引起的冲击力进行了处理简单的理论模型,并使用实验方法进行模型验证。本文介绍了动态负荷模型的原理,呈现了简化负载估计公式的验证和建议。对于在冰条件下操作的氮杂化推进器,可以通过简单的三群动态系统模型有效地解决冰块冲击接触载荷。假设接触区域是凹入冰的半球,代表偶像推进器船体或螺旋桨轮毂。模型考虑船舶速度,船舶质量,推进器质量,冰块和连接之间的连接。动态模型通过可用的LULL比例数据验证,并使用两组实验,来自波罗的海的冰,良好地估计撞击中的接触载荷。在这些情况下考虑的冲击速度低于5米/秒。建议的简化配方基于动态接触载荷模型结果。动态接触载荷模型以不同的初始值运行。这使得指示不同的参数如何影响接触载荷。确定最重要的变量,只有它们被列入所提出的简化方法。

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