Van Schaik Innovation Handling B.V., Glaslaan 2, Building SWA 1.032, 5616 LW, Eindhoven, The Netherlands.
Sensors (Basel). 2010;10(8):7421-33. doi: 10.3390/s100807421. Epub 2010 Aug 9.
An acoustic relative humidity sensor for air-steam mixtures in duct flow is designed and tested. Theory, construction, calibration, considerations on dynamic response and results are presented. The measurement device is capable of measuring line averaged values of gas velocity, temperature and relative humidity (RH) instantaneously, by applying two ultrasonic transducers and an array of four temperature sensors. Measurement ranges are: gas velocity of 0-12 m/s with an error of ± 0.13 m/s, temperature 0-100 °C with an error of ± 0.07 °C and relative humidity 0-100% with accuracy better than 2 % RH above 50 °C. Main advantage over conventional humidity sensors is the high sensitivity at high RH at temperatures exceeding 50 °C, with accuracy increasing with increasing temperature. The sensors are non-intrusive and resist highly humid environments.
设计和测试了一种用于管道流中空气-蒸汽混合物的声相对湿度传感器。介绍了该测量装置的原理、结构、标定、动态响应考虑因素以及测量结果。该测量设备通过使用两个超声波换能器和四个温度传感器阵列,能够瞬时测量气体速度、温度和相对湿度(RH)的线平均值。测量范围为:气体速度 0-12 m/s,误差为 ± 0.13 m/s;温度 0-100°C,误差为 ± 0.07°C;相对湿度 0-100%,在 50°C 以上时精度优于 2%RH,精度随温度升高而增加。与传统湿度传感器相比,其主要优点是在温度超过 50°C 时具有高 RH 的高灵敏度,并且精度随温度升高而增加。该传感器是非侵入式的,能够抵抗高湿度环境。