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Improvement of an SEA Model of Cab Interior Sound Levels Through Use of a Hybrid FE/SEA Method

机译:通过使用杂交Fe / SEA方法改进驾驶室内置声级的海洋模型

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An existing system-level Statistical Energy Analysis (SEA) model of an enclosed operator station (cab) for a combine-harvester was improved through component-level analyses using Finite Element (FE) and hybrid FE-SEA methods. At mid to high audio frequencies, airborne transmission of machine noise is a dominant path for the cab. An SEA model was created for the cab using the VA One product. When model results were validated against experimental data derived from three idealized insonification load cases, the original model did not compare well with the measured data. The structural panels used in the cab feature various non-uniform cross-sections and varying radii of curvature. The former are not appropriately modeled with standard beam stiffeners, and the latter must be accounted for by some average curvature. Geometrically accurate Finite Element (FE) models of the panels were employed to estimate parameters including effective material stiffness, and effective material density. Further, hybrid FE-SEA modeling was employed to estimate panel radiation efficiencies and account for non-uniform curvature. Using the corrected parameters, the improved SEA model compared well with measured data; it can be used with confidence to predict cab interior sound levels for different field load cases, and to explore noise control treatments.
机译:通过使用有限元(Fe)和杂交Fe-Sea方法的组分分析,改善了组合收割机的封闭式操作员站(驾驶室)的现有系统级统计能量分析(SEA)模型。在中高音频频率下,机载的机器噪声传输是驾驶室的主要路径。使用VA一个产品为驾驶室创建了海模型。当验证模型结果针对来自三种理想化粗鲁载荷案例的实验数据进行验证时,原始模型与测量数据没有很好地比较。驾驶室中使用的结构面板具有各种不均匀的横截面和不同的曲率半径。前者没有用标准光束加强筋适当建模,后者必须通过一些平均曲率来计算。使用几何精确的有限元(Fe)面板型号来估计包括有效材料刚度和有效材料密度的参数。此外,采用杂交Fe-Sea建模来估算面板辐射效率并占非均匀曲率的抑制。使用校正的参数,改进的海模型与测量数据相比;它可以充满信心地预测不同场载荷盒的驾驶室内部声音水平,并探索噪声控制处理。

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