首页> 外文会议>ASME/BATH symposium on fluid power and motion control >ENHANCED TOOLBOX FOR THE COMBINED ANALYSIS OF FLUID-AND STRUCTURE- BORNE NOISE OF HYDRAULIC SYSTEMS
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ENHANCED TOOLBOX FOR THE COMBINED ANALYSIS OF FLUID-AND STRUCTURE- BORNE NOISE OF HYDRAULIC SYSTEMS

机译:增强型工具箱,用于液压系统流体和结构噪声的综合分析

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Today's available software packages that feature dedicated hydraulic system noise analysis capabilities focus on the Fluid-Borne Noise (FBN) prediction in frequency or time domain. However, some noise sensitive hydraulic installation areas, like light weight structures in aviation, drive the development of an extended toolbox that also covers the prediction of Structure-Borne Noise (SBN) and Fluid-Structure-Interaction (FSI) in hydraulic systems. This conference contribution presents the concept and design of such a toolbox. It is implemented in a Matlab Simulink/ Simscape environment by FBN-, SBN- and FSI-model libraries. For a given study case a simulation model is generated using elements from these libraries. The simulation results are experimentally validated using a dedicated hydraulic system noise test rig. It features a rotary valve as FBN source and a pipe system equipped with dynamic pressure transducers for FBN detection and acceleration sensors for SBN detection. The analysis capabilities of such a toolbox are considered beneficial in particular for future (pre-/re-) design projects in the aviation environment, which hold challenging application constraints for efficient hydraulic system noise reduction devices: Besides obligatory strong limits on component weight and size, the high safety and reliability standards demand simple and maintenance-free onboard devices. Hence solutions with minimum hardware efforts are preferred. In this context, the proposed toolbox can be used for a combined tuning of type and location of standard/simple FBN silencers together with type and location of SBN effecting pipe clamps in order to optimize the overall system noise pattern towards an increased equipment durability and passenger comfort.
机译:今天的可用软件包,该软件包具有专用的液压系统噪声分析功能,专注于频率或时域中的流体传播的噪声(FBN)预测。然而,一些噪声敏感的液压安装区域,如航空中的重量级结构,驱动扩展工具箱的开发,该延伸工具箱还涵盖了液压系统中结构传播噪声(SBN)和流体结构 - 交互(FSI)的预测。此次会议贡献呈现出这样一个工具箱的概念和设计。它在Matlab Simulink / Simscapt环境中由FBN,SBN和FSI模型库中实现。对于给定的研究案例,使用来自这些库的元素生成仿真模型。使用专用的液压系统噪声试验台实验验证仿真结果。它具有旋转阀作为FBN源和配备有动态压力传感器的管道系统,用于用于SBN检测的FBN检测和加速度传感器。这种工具箱的分析能力被认为是有益的,特别是用于航空环境中的未来(/重新)设计项目,这对高效液压系统降噪装置保持了具有挑战性的应用限制:除了对组件重量和尺寸的强制性强度限制,高安全性和可靠性标准需求简单且免维护的船上设备。因此,优先具有最低硬件工作的解决方案。在此上下文中,所提出的工具箱可以用于组合调整标准/简单的FBN消音器的类型和位置以及SBN实现管道夹的类型和位置,以便优化整体系统噪声模式朝向增加的设备耐用性和乘客舒适。

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