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A Dynamic Calibration Method for Experimental and Analytical Hub Load Comparison

机译:一种动态校准方法,用于实验性和分析中心负荷比较

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This paper presents the results from an ongoing effort to produce improved correlation between analytical hub force and moment prediction and those measured during wind-tunnel testing on the Aeroelastic Rotor Experimental System (ARES), a conventional rotor testbed commonly used at the Langley Transonic Dynamics Tunnel (TDT). A frequency-dependent transformation between loads at the rotor hub and outputs of the testbed balance is produced from frequency response functions measured during vibration testing of the system. The resulting transformation is used as a dynamic calibration of the balance to transform hub loads predicted by comprehensive analysis into predicted balance outputs. In addition to detailing the transformation process, this paper also presents a set of wind-tunnel test cases, with comparisons between the measured balance outputs and transformed predictions from the comprehensive analysis code CAMRAD Ⅱ. The modal response of the testbed is discussed and compared to a detailed finite-element model. Results reveal that the modal response of the testbed exhibits a number of characteristics that make accurate dynamic balance predictions challenging, even with the use of the balance transformation.
机译:本文提出了持续努力的结果,以在空气弹性转子实验系统(ARES)上的循环枢纽力和时刻预测之间产生改善的相关性,并且在风速转子实验系统(ARES)上测量的那些,通常用于Langley Myseronic Dynamics Tunnel的传统转子试验台(TDT)。从系统的振动测试期间测量的频率响应函数产生转子集线器处的载荷和测试平衡输出之间的频率依赖性变换。得到的转换用作余额的动态校准,以将通过综合分析预测到预测的平衡输出预测的集线器负载。除了详细说明转换过程之外,本文还提出了一套风洞测试用例,在综合分析码CamradⅡ的测量平衡输出和转换预测之间的比较。与详细的有限元模型进行讨论并与测试平的模态响应进行了讨论。结果表明,试验台的模态响应呈现了许多特征,使得能够准确的动态平衡预测具有挑战性,即使使用平衡转换也是如此。

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