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Accurate estimation of tube-induced distortion effects on wind pressure measurements

机译:准确估计管道诱导的风力测量变形效应

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摘要

Pressure signals are commonly measured by tube-transducer systems which may result in significant distortion effects on the measurements. Although many studies have been conducted on the correction of distorted pressure records, there is a lack of investigations on determining the inner diameter (D) of pressure tubes and the inner volume (V) of pressure transducers involved in a tube-transducer system, which are demonstrated to be two key parameters for quantifying the distortion effects and for correcting the recorded pressure signals. This study presents a systematic method for accurate determination of these two parameters. The value of D is estimated first by measuring the weight of water filled in a tube. The value of V is then determined by fitting the measured frequency-response-function (FRF) with those predicted by the theoretical model. To demonstrate the validity of the proposed method, two groups of case studies are presented which utilize scanivalve and Honeywell transducers to measure wind pressure, respectively. Results show that the nominal inner diameter of some tubes may not be accurate, and the inner volume of a Heneywell transducer cannot be neglected. This study also compares raw pressure records with those after correction, through which the importance of accurate determination of D and V is highlighted. The proposed method has some attractive merits including high accuracy and great operational convenience, and it can be adopted widely in wind tunnel tests.
机译:压力信号通常通过管换能器系统测量,这可能导致对测量的显着变形效应。虽然已经对扭曲的压力记录进行了校正进行了许多研究,但是缺乏关于确定压力管的内径(D)和涉及管换能器系统的压力传感器的内部容积(V)的研究,但是被证明是用于量化失真效果的两个关键参数,并用于校正记录的压力信号。本研究提出了一种用于精确确定这两个参数的系统方法。首先通过测量填充在管中的水的重量来估计D的值。然后通过将测量的频率响应 - 函数(FRF)与理论模型预测的那些拟合来确定V的值。为了证明所提出的方法的有效性,提出了两组案例研究,其利用扫描仪和霍尼韦尔换能器来测量风压。结果表明,一些管的标称内径可能不准确,并且不能忽略肝换能器的内部容积。本研究还将原始压力记录与校正后的原始压力记录进行比较,通过该校正D和V的重要性被突出显示。该方法具有一些有吸引力的优点,包括高精度和巨大的操作方便,可以广泛采用风洞试验。

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