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A DISCRETE ELEMENT MODEL FOR BRASH ICE SIMULATIONS

机译:狂热冰模拟的离散元素模型

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Most merchant ships operating in the cold regions are not able to break ice themselves, they can only navigate in the broken ice, the so-called brash ice channels. Today's standard requires a model test in real brash ice conditions to be carried out and realistic additional resistances to be estimated from this. The problem is that they can only be performed at the end of the design process. The possibility of changing the ship design within the development process can only be guaranteed by using a simulation tool, based on the Discrete Element Method. The problem with the development of this numerical simulation is the correctness of the mapping of the physical behaviour of brash ice. The physical models used are often simplified and not sufficient to represent the complex mechanical behaviour of brash ice. Thus, another problem with the use of numerical simulation is the selection of the correct parameters to describe the mechanical behaviour. A concrete definition of the used material parameters does not exist and the experimental tests for the determination of the physical properties are often complex and not standardized. This paper examines the mechanical behaviour of brash ice and the descriptive parameters of each ice rubble. On this basis, the physical behaviour in nature is compared with the model used in numerical simulation. As a result, physical inconsistencies are determined and new solution approaches are proposed, for example in the form of a new contact model, an extension of the friction model or a change of the descriptive particle shape.
机译:大多数商人在寒冷地区运营的船只无法打破冰自己,他们只能在破碎的冰中导航,所谓的刺激冰通道。今天的标准需要在真正的刺激冰条件下进行模型测试,并从中进行估计的额外额外的抵抗力。问题是它们只能在设计过程结束时执行。只有使用基于离散元素方法,只能通过使用仿真工具来保证更改开发过程中的船舶设计的可能性。这种数值模拟的开发的问题是狂热冰的物理行为映射的正确性。使用的物理模型通常是简化的,并且不足以表示刺激冰的复杂机械行为。因此,使用数值模拟的另一个问题是选择正确参数来描述机械行为。使用的使用材料参数的具体定义不存在,并且测定物理性质的实验测试通常是复杂的并且不标准化。本文探讨了刺激冰的力学行为和每个冰瓦砾的描述性参数。在此基础上,与数值模拟中使用的模型进行了与性质中的物理行为。结果,确定了物理不一致,并且提出了新的解决方案方法,例如以新的接触模型的形式,摩擦模型的延伸或描述性颗粒形状的变化。

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