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首页> 外文期刊>The Journal of the Acoustical Society of America >Ultrasonic tomographic imaging of temperature and flow fields in gases using air-coupled capacitance transducers
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Ultrasonic tomographic imaging of temperature and flow fields in gases using air-coupled capacitance transducers

机译:使用空气耦合电容传感器对气体中的温度和流场进行超声层析成像

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摘要

A pair of air-coupled ultrasonic capacitance transducers with polished metal backplates have been used to image temperature and flow fields in gases using ultrasonic tomography. Using a filtered back-projection algorithm and a difference technique, cross-sectional images of spatially variant changes in ultrasonic attenuation and slowness cause by the presence of temperature and flow fields were reconstructed. Temperature fields were produced in air by a commercial soldering iron, and the subsequent images of slowness variations used to reconstruct the air temperature at various heights above the iron. When compared to measurements made with a thermocouple, the tomographically reconstructed temperatures were found to be accurate to within 5%. The technique was also able to resolve multiple heat sources within the scan area. Attenuation and velocity images were likewise produced for flow fields created by an air-jet from a 1-mm-diam nozzle, at both 90 and 45 degrees to the scanning plane. The fact that temperature and flow fields can be measured in a gas without the need to insert any measuring devices into the image region is an advantage that may have many useful applications.
机译:一对带有抛光金属背板的空气耦合超声电容传感器已用于使用超声层析成像技术对气体中的温度和流场进行成像。使用滤波的反投影算法和差分技术,重建了由温度和流场的存在引起的超声衰减和慢度的空间变化变化的横截面图像。商用烙铁在空气中产生温度场,随后的慢度变化图像用于重建烙铁上方各种高度的空气温度。与热电偶的测量结果相比,层析重建温度精确到5%以内。该技术还能够解决扫描区域内的多个热源。对于从直径为1毫米的喷嘴通过喷气产生的流场,同样会在与扫描平面成90度和45度的位置上产生衰减和速度图像。可以在气体中测量温度和流场而无需在图像区域中插入任何测量设备这一事实是一个优点,它可能具有许多有用的应用。

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