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Identification of Rational Functions using two-degree-of-freedom model by forced vibration method

机译:强制振动法利用二自由度模型识别有理函数

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摘要

In prediction of self-excited forces and flutter instability of flexible structures, time domain method has distinct advantages. Rational Functions that are used to formulate self-excited aerodynamic forces in time domain were indirectly extracted from experimentally obtained flutter derivatives in the past. Recently, an algorithm was published to directly extract the Rational Functions from wind tunnel section model tests in free vibration. To overcome the limitations of free vibration technique, a new algorithm that is developed for direct extraction of the Rational Functions from section model tests using a forced vibration technique is presented here. The new algorithm can be used to extract all the Rational Functions associated with one, two or three degree-of-freedom motion (vertical, lateral and torsional) of a section model. To validate the new algorithm, forced vibration wind tunnel tests in two degrees of freedom (vertical and torsional) were performed on a streamlined bridge deck section model with width-to-depth ratio B/D =15:1 and also a bluff rectangular section model with BjD = 5:1. This is a significant improvement from other forced vibration methods that require separate one-degree-of-freedom model tests which are dependent on phase angle difference between aerodynamic loads and displacements.
机译:在预测柔性结构的自激力和颤振不稳定性时,时域方法具有明显的优势。过去,从实验获得的颤振导数中间接提取了用于在时域中表达自激空气动力的有理函数。最近,发布了一种算法,可以在自由振动中直接从风洞截面模型测试中提取有理函数。为了克服自由振动技术的局限性,这里提出了一种新算法,该算法使用强制振动技术从截面模型测试中直接提取有理函数。新算法可用于提取与截面模型的一个,两个或三个自由度运动(垂直,横向和扭转)相关的所有有理函数。为了验证该新算法,对流线型桥面板截面模型进行了两个自由度(垂直和扭转)的强制振动风洞试验,该模型的纵横比为B / D = 15:1,并且为钝角矩形截面BjD = 5:1的模型。这是对其他强制振动方法的重大改进,这些方法需要单独的一自由度模型测试,该测试取决于空气动力负载和位移之间的相角差。

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