用自由振荡法实验测定螺距阻尼系数

Ionuț Bunescu, M. Stoican, Mihai-Vlăduț Hothazie
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引用次数: 0

摘要

本文概述了在 INCAS 立体风洞进行的一项实验研究,重点是俯仰阻尼系数的测定。本次研究使用的模型是基本芬纳模型,这是一种用于动态测试的标准模型,由一个带有四个矩形鳍片的圆锥筒体组成。研究旨在评估各种参数(包括马赫数、攻角、降低频率、旋转中心和滚转角)对俯仰阻尼系数的影响。确定这些系数所采用的方法是自由振荡法,即在初始扰动后测量模型在自由流中的振荡。为了在风洞中进行这些动态测试,我们开发了一个专用钻机,利用线性伺服执行器启动模型摆动,并利用应变仪记录其摆动。实验结果表明了每个参数对俯仰阻尼系数的影响,突出了测量的精确性。本文的结论是,所开发的钻机和所使用的方法可提供精确的结果,不同参数的变化可改变阻尼系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Determination of Pitch Damping Coefficient Using Free Oscillation Method
This paper outlines an experimental investigation conducted at the INCAS trisonic wind tunnel, focusing on the determination of pitch damping coefficient. The model used for this investigation is the Basic Finner Model, a standard model for dynamic tests which consists in a cone-cylinder body with four rectangular fins. The study aims to evaluate the influence of various parameters—including the Mach number, angle of attack, reduced frequency, center of rotation, and roll angle—on pitch damping coefficient. The employed method for determining these coefficients is the free oscillation method which consists in measuring the model oscillation in free stream after an initial perturbation. In order to perform these dynamic tests in the wind tunnel, a dedicated rig was developed to initiate the model’s oscillation using a linear servo-actuator and to record its oscillation using a strain gauge. The results obtained from the experiments illustrate how each parameter impacts the pitch damping coefficient, highlighting the precision of the measurements. The paper’s conclusion presents that the developed rig and the method used provide accurate results, and the variation in different parameters can change the damping coefficient.
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