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Accuracy analysis of air torque position dampers based on blade profiles and damper locations

机译:基于叶片轮廓和风门位置的空气扭矩位置风门的精度分析

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The primary concern of this paper is a single-blade air torque position damper used for the indirect measurement of volumetric air-flow rates by measuring the moment of airstream force exerted on the blade and the damper position. The purpose of the paper is to analyze the accuracy of the air velocity measurements and the adequacy of the damper mathematical model on the basis of the blade profile and the damper location in a duct system. The analysis was performed on the basis of the experimentally obtained results. Four different blade profiles (flat, V-groove, symmetrical airfoil, and non-symmetrical airfoil blades) were taken into account, as well as three different damper locations in the duct system (at the duct entrance, within the duct, and at the duct exit). Two blade orientations at the duct entrance were examined relative to the direction of air-flow (with front and rear mounting flanges). It was determined that the blade profile and particularly the damper location in the duct system affect the measurement accuracy and the adequacy of the damper mathematical model provided the blade angle of attack is less than or equal to 30°, i. e. within the range of a more open damper.
机译:本文的主要关注点是单叶片空气扭矩位置阻尼器,该阻尼器用于通过测量施加在叶片上的气流力矩和阻尼器位置来间接测量空气体积流量。本文的目的是根据叶片轮廓和风管系统中风门的位置来分析风速测量的准确性和风门数学模型的充分性。根据实验获得的结果进行分析。考虑了四个不同的叶片轮廓(扁平,V形槽,对称翼型和非对称翼型叶片),以及风管系统中三个不同的风门位置(在风管入口,风管内和风门处)。管道出口)。相对于气流方向(带有前后安装法兰)检查了导管入口处的两个叶片方向。如果叶片攻角小于或等于30°,即确定叶片轮廓,特别是风管系统中风门的位置会影响测量精度和风门数学模型的充分性。 e。在更大的风门范围内。

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