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首页> 外文期刊>Journal of Sound and Vibration >PREDICTION OF STRUCTURE-BORNE SOUND TRANSMISSION IN LARGE WELDED SHIP STRUCTURES USING STATISTICAL ENERGY ANALYSIS
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PREDICTION OF STRUCTURE-BORNE SOUND TRANSMISSION IN LARGE WELDED SHIP STRUCTURES USING STATISTICAL ENERGY ANALYSIS

机译:基于统计能量分析的大型焊接船体结构声传

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摘要

An efficient method is presented for the prediction of structure-borne Sound transmission in large welded ship structures. SEA (Statistical Energy Analysis) is used, and the equations used for the SEA parameters are also presented. Traditionally, the SEA method requires a great deal of work when steel structures are modelled. It is almost impossible to prepare models manually for large structures such as ships. In the method developed, the preprocessing programs used in the context of the finite element method (FEM) are applied to reduce the modelling work. To date, one-dimensional beam, two-dimensional triangular and quadrilateral plate, and three-dimensional volume elements have been implemented. The assemblage of the loss factor matrix is made in a manner analogous to the stiffness matrix in FEM. In the computer implementation of the SEA program, standard FEM techniques are used to reduce calculation time, including the skyline matrix technique and LDL(T)-matrix decomposition of the loss factor matrix. The effectiveness of the present method is illustrated by the computer run of the model of the passenger cruise vessel, which contained over 5000 elements and 17 000 coupling branches. It took only 17 min in the Iris Indigo R4000 workstation. Application calculations for an echo sweeping vessel, a timber-container carrier, and a passenger cruise vessel are discussed, and comparison is made with full scale measurements. [References: 64]
机译:提出了一种预测大型焊接船结构声传声的有效方法。使用了SEA(统计能量分析),还介绍了用于SEA参数的方程式。传统上,在对钢结构进行建模时,SEA方法需要大量工作。手动为大型结构(例如船舶)准备模型几乎是不可能的。在开发的方法中,应用了有限元方法(FEM)上下文中使用的预处理程序来减少建模工作。迄今为止,已经实现了一维束,二维三角形和四边形板以及三维体积元。损耗因子矩阵的组合类似于FEM中的刚度矩阵。在SEA程序的计算机实现中,标准的FEM技术用于减少计算时间,包括天际线矩阵技术和损耗因子矩阵的LDL(T)-矩阵分解。本方法的有效性通过载客游轮模型的计算机运行来说明,该游轮模型包含5000多个元素和17000个耦合分支。在Iris Indigo R4000工作站中仅花费了17分钟。讨论了回波扫描船,木材集装箱船和客轮的应用计算,并与满量程测量进行了比较。 [参考:64]

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