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An orifice meter for bidirectional air flow measurements: Influence of gas thermo-hygrometric content on static response and bidirectionality

机译:用于双向空气流量测量的孔板计:气体热湿含量对静态响应和双向性的影响

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摘要

This paper presents the design and calibration of an ISO non-compliant orifice plate flowmeter whose intended use is for respiratory function measurements in the bidirectional air flow range ± 9 L/min. The novelty of the proposed sensor consists of a plate beveled in both upstream and downstream sides: a symmetrical geometry is adopted in order to perform bidirectional measurements of flow rate. A mathematical model is introduced to quantify the influence of temperature on the sensor output. Four different positions of the pressure static taps are evaluated in order to maximize bidirectionality. An index is also introduced in order to quantitatively estimate the anti-symmetry of the sensor's response curve. Trials are carried out to evaluate the influence on sensor output of air temperatures (22℃, 30℃ and 37℃) at different values of relative humidity (5%, 55% and 85%). Experimental data show a quite good agreement with the theoretical model (R~2 > 0.98 in each condition). The influence of air temperature on the sensor output is minimized by introducing a correction factor based on the theoretical model leading to measurement repeatability better than 2% in overall range of calibration. The mean sensitivity in the calibration range is about 2 kPa L~(-1) min allowing to obtain a sensor discrimination threshold lower than 0.2 L/min in both directions. The time constant of the whole measurement system, equal to 2.40 ± 0.03 ms, leads to a bandwidth up to 80 Hz making the sensor suitable for respiratory function measurements.
机译:本文介绍了一种不符合ISO标准的孔板流量计的设计和校准方法,该流量计旨在用于±9 L / min双向气流范围内的呼吸功能测量。所提出的传感器的新颖性包括一个在上游和下游侧都倾斜的板:采用对称的几何形状以便进行流量的双向测量。引入了数学模型来量化温度对传感器输出的影响。为了最大程度地提高双向性,对压力静态分接头的四个不同位置进行了评估。还引入了一个索引,以便定量估计传感器响应曲线的反对称性。进行了试验,以评估在不同相对湿度值(5%,55%和85%)下,空气温度(22℃,30℃和37℃)对传感器输出的影响。实验数据表明与理论模型有很好的一致性(每种情况下R〜2> 0.98)。通过基于理论模型引入校正因子,可将空气温度对传感器输出的影响降至最低,从而在整个校准范围内使测量重复性优于2%。校准范围内的平均灵敏度约为2 kPa L〜(-1)min,从而可以在两个方向上获得低于0.2 L / min的传感器判别阈值。整个测量系统的时间常数等于2.40±0.03 ms,可导致高达80 Hz的带宽,从而使该传感器适用于呼吸功能测量。

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