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Effect of gas temperature on flow rate characteristics of an averaging pitot tube type flow meter

机译:气体温度对皮托管平均流量计流量特性的影响

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The flow rate characteristics passing through an averaging Pitot tube (APT) while constantly controlling the flow temperature were studied through experiments and CFD simulations. At controlled temperatures of 25, 50, 75, and 100 degrees C, the flow characteristics, in this case the upstream, downstream and static pressure at the APT flow meter probe, were measured as the flow rate was increased. The flow rate through the APT flow meter was represented using the H-parameter (hydraulic height) obtained by a combination of the differential pressure and the air density measured at the APT flow meter probe. Four types of H-parameters were defined depending on the specific combination. The flow rate and the upstream, downstream and static pressures measured at the APT flow meter while changing the H-parameters were simulated by means of CFD. The flow rate curves showed different features depending on which type of H-parameter was used. When using the constant air density value in a standard state to calculate the H-parameters, the flow rate increased linearly with the H-parameter and the slope of the flow rate curve according to the H-parameter increased as the controlled target air temperature was increased. When using different air density levels corresponding to each target air temperature to calculate the H-parameter, the slope of the flow rate curve according to the H-parameter was constant and the flow rate curve could be represented by a single line. The CFD simulation results were in good agreement with the experimental results. The CFD simulations were performed while increasing the air temperature to 1200 K. The CFD simulation results for high air temperatures were similar to those at the low temperature ranging from 25 to 100 degrees C.
机译:通过实验和CFD模拟研究了通过平均皮托管(APT)同时不断控制流动温度的流量特性。在25、50、75和100摄氏度的受控温度下,随着流量的增加,测量流量特性,在这种情况下,即APT流量计探头的上游,下游和静压力。通过APT流量计的流量使用H参数(液压高度)表示,该参数由压差和在APT流量计探头处测得的空气密度的组合获得。根据特定的组合定义了四种类型的H参数。通过CFD模拟在更改H参数的同时在APT流量计上测得的流量,上游,下游和静压。流速曲线根据使用的H参数类型显示不同的特征。在标准状态下使用恒定空气密度值计算H参数时,流量随H参数线性增加,并且随着受控目标空气温度的升高,根据H参数的流量曲线的斜率增加。增加。当使用与每个目标空气温度相对应的不同空气密度水平来计算H参数时,根据H参数的流量曲线的斜率是恒定的,并且流量曲线可以用一条线表示。 CFD仿真结果与实验结果吻合良好。在将空气温度提高到1200 K的同时执行CFD模拟。高温空气的CFD模拟结果与25至100摄氏度的低温模拟结果相似。

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