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Transient simulation of the propulsion machinery system operating in ice - Modeling approach

机译:冰中推进机械系统的瞬态仿真-建模方法

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The propulsion machinery system is one of the major concerns in the design of ships that operate in ice covered waters. Numerical models and simulations are important tools for a better understanding of the system subjected to the transient ice-related loads. Design loads and design criteria applied in the typical numerical simulations are described by classification societies. However, the rules do not cover the level and type of discretization of the propulsion machinery system is not covered. Therefore, in this paper we study the sensitivity of the system response to: 1) finite-lump vs. finite-mode propeller shaft sub models; 2) the number of propeller shaft lumps and modes; 3) simplified vs. complex sub-model of the diesel engine. The propulsion machinery system is modeled using the bond graph method. Dynamic torque and angular velocity responses of all elements of the propulsion machinery system are simulated. Simulation results show that the selection of sub-model discretization and fidelity are important parameters for the accuracy of the dynamic response and natural frequencies. Furthermore, energy flow and computational time are used as criteria to identify the most suitable discretization and fidelity of the sub models in question. (C) 2016 Elsevier Ltd. All rights reserved.
机译:推进机械系统是在覆冰水域中运行的船舶设计中的主要问题之一。数值模型和仿真是重要的工具,可以帮助您更好地了解承受瞬时冰相关载荷的系统。船级社描述了典型数值模拟中应用的设计载荷和设计标准。但是,规则未涵盖推进机械系统离散化的级别和类型。因此,在本文中,我们研究了系统对以下情况的响应:1)有限集总和有限模式螺旋桨轴子模型; 2)螺旋桨轴块的数量和模式; 3)柴油机的简化子模型与复杂子模型。推进机械系统是使用键合图方法建模的。模拟了推进机械系统所有元件的动态转矩和角速度响应。仿真结果表明,子模型离散化和保真度的选择是动态响应和固有频率精度的重要参数。此外,能量流和计算时间用作确定所讨论的子模型的最合适离散化和保真度的标准。 (C)2016 Elsevier Ltd.保留所有权利。

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