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Airflow measurements using averaging Pitot tube under restricted conditions

机译:在受限条件下使用平均皮托管进行气流测量

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This paper studies the effect of the air damper placed downstream of an averaging Pitot tube (APT) on the flow measurement in air distribution systems. Experiments are conducted to obtain the characteristic curve of the APT under different damper positions. The analysis of variance (ANOVA) is applied and the results reveals a statistically significant correlation between them. A mathematical model for the pressure coefficient with respect to the damper opening angle is proposed to compensate the systematic error caused by the damper. The model is validated under various Reynolds numbers (Re) varying from 6.38 x 10(3) to 19.1 x 10(3) with RMSE 0.02. By applying the proposed model, the flow measurement errors are reduced below 0.6% for all tested cases, and the highest accuracy (0.02%) is achieved when Re = 9.57 x 10(3). The proposed model significantly improves the performance of current air flow control stations (AFCS) where the ATP is placed immediately upstream of the air damper. This research can be helpful for manufactures to provide AFCS with higher accuracy and larger operating range.
机译:本文研究了将空气阻尼器放置在平均皮托管(APT)下游对空气分配系统中流量测量的影响。进行实验以获得在不同阻尼器位置的APT的特性曲线。应用方差分析(ANOVA),结果揭示了它们之间的统计显着相关性。提出了关于阻尼器开度角的压力系数的数学模型,以补偿由阻尼器引起的系统误差。该模型在从6.38 x 10(3)到19.1 x 10(3)的各种雷诺数(Re)下验证,RMSE <0.02。通过应用所提出的模型,所有测试情况下的流量测量误差均降低到0.6%以下,当Re = 9.57 x 10(3)时,可以达到最高的精度(0.02%)。所提出的模型显着改善了当前的空气流量控制站(AFCS)的性能,在这些站点中,ATP放置在空气调节器的紧邻上游。这项研究对于制造商提供具有更高准确性和更大工作范围的AFCS很有帮助。

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