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Interference effects of three sonic nozzles of different throat diameters in the same meter tube

机译:同一根仪表管中三个不同喉径的声波喷嘴的干扰效果

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For calibration of a large capacity gas flow meter, a sonic nozzle bank may be used as a reference system. International standards (ISO9300:1990) allow installation of a single nozzle in a meter tube as a flow transfer standard. For multiplenozzles in a single tube, the effect of interference between sonic nozzles and the chamber wall must be measured to predict the discharge coefficient of a nozzle array from those of single nozzles. The interference effect between neighboring nozzles canbe additional error sources in mass flow measurement. Sonic nozzles with three different throat diameters (d = 4.3, 8.1, and 13.4 mm) were tested in a single meter tube in three geometrical arrangements. The mass flow rate was measured against a primarygas flow standard system. Three installation plates for sonic nozzles were made to vary the distance between nozzles and distance from the chamber wall. Discharge coefficients of the three individual nozzles were in agreement with the ISO recommendedequation within± 0.2%. Discharge coefficients of the nozzle bank calculated from those of the individual sonic nozzle were the same as the direct measurements within± 0.098% at the 95% confidence level for all cases. For these experiments, the resultswere not influenced by the proximity of the tube wall or the interaction of the nozzles.
机译:为了校准大容量气体流量计,可以将声波喷嘴组用作参考系统。国际标准(ISO9300:1990)允许在计量管中安装单个喷嘴作为流量传递标准。对于单个管中的多个喷嘴,必须测量声波喷嘴和腔室壁之间的干扰影响,以从单个喷嘴的喷嘴中预测喷嘴阵列的排放系数。相邻喷嘴之间的干扰效应可能是质量流量测量中的其他误差源。具有三种不同喉部直径(d = 4.3、8.1和13.4 mm)的声波喷嘴在单米管中以三种几何布置进行了测试。针对主要气体流量标准系统测量质量流率。制作了三个用于声波喷嘴的安装板,以改变喷嘴之间的距离和与腔室壁的距离。三个单独喷嘴的排放系数与ISO推荐的公式一致,在±0.2%之内。在所有情况下,由单个声波喷嘴计算出的喷嘴组的排放系数与直接测量值相同,在95%置信度下,其直接测量值在±0.098%之内。对于这些实验,结果不受管壁的邻近程度或喷嘴的相互作用的影响。

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