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Results from a Sting Whip Correction Verification Test at the Langley 16-Foot Transonic Tunnel

机译:兰利16英尺跨音速隧道的鞭W校正验证测试的结果

摘要

In recent years, great strides have been made toward correcting the largest error in inertial Angle of Attack (AoA) measurements in wind tunnel models. This error source is commonly referred to as 'sting whip' and is caused by aerodynamically induced forces imparting dynamics on sting-mounted models. These aerodynamic forces cause the model to whip through an arc section in the pitch and/or yaw planes, thus generating a centrifugal acceleration and creating a bias error in the AoA measurement. It has been shown that, under certain conditions, this induced AoA error can be greater than one third of a degree. An error of this magnitude far exceeds the target AoA goal of 0.01 deg established at NASA Langley Research Center (LaRC) and elsewhere. New sting whip correction techniques being developed at LaRC are able to measure and reduce this sting whip error by an order of magnitude. With this increase of accuracy, the 0.01 deg AoA target is achievable under all but the most severe conditions.
机译:近年来,在纠正风洞模型中惯性攻角(AoA)测量中的最大误差方面已取得了长足的进步。该误差源通常被称为“ wh鞭”,是由空气动力引起的力引起的,该力在安装在ing上的模型上产生动力。这些空气动力导致模型在俯仰和/或偏航平面中通过弧形截面鞭打,从而产生离心加速度并在AoA测量中产生偏差误差。已经表明,在某些条件下,该诱发的AoA误差可能大于一个度的三分之一。这个数量级的误差远远超过了NASA兰利研究中心(LaRC)和其他地方制定的0.01度目标AoA目标。 LaRC正在开发的新型鞭鞭校正技术能够将这种鞭鞭误差测量并降低一个数量级。随着精度的提高,除了最严酷的条件外,在所有情况下都可以实现0.01度AoA目标。

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