首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.4 pt.B: Fluid-Structure Interaction >EFFECTS OF SENSOR SHAPE ON OSCILLATING PRESSURE MEASUREMENTS WITH WIND- TUNNEL TEST CONFIRMATION
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EFFECTS OF SENSOR SHAPE ON OSCILLATING PRESSURE MEASUREMENTS WITH WIND- TUNNEL TEST CONFIRMATION

机译:传感器形状对风洞试验确认的振动压力测量的影响

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This paper summarizes the effects of the pressure sensor shape on the dynamic oscillating pressure measurements when the pressure wave modulating along the steam/air flow path is to be characterized. In the study presented in the paper, a three-dimensional CFD model of the external flow around the protruding, dome-shaped sensor was developed to evaluate the effects of the sensor shape on the external flow pattern, and the detailed flow patterns were studied with this protruding, dome-shaped sensors and compared with the flow patterns for the flush mounted sensors. Then, a one-dimensional analysis was done to predict that the dynamic pressures measured with the protruding sensor do not require significant correction, and this was later supported by wind tunnel tests. The amplitude of the dynamic pressure measured on the protruding sensor was determined to be ranging from 0 to 8 % higher than measured by a flush mounted pressure sensor. The frequency of the pressure wave is not affected by the presence of the protrusion.
机译:本文总结了当表征沿蒸汽/空气流动路径调制的压力波时,压力传感器形状对动态振荡压力测量的影响。在本文提出的研究中,开发了围绕凸起的圆顶形传感器的外部流的三维CFD模型,以评估传感器形状对外部流型的影响,并详细研究了流型。凸出的圆顶形传感器,并与齐平安装的传感器的流型进行了比较。然后,进行一维分析以预测用伸出的传感器测量的动压不需要进行重大校正,并且此后得到风洞测试的支持。确定在伸出的传感器上测得的动压力的幅度比通过齐平安装的压力传感器测得的幅度高0%至8%。压力波的频率不受突起的存在的影响。

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