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Microthermal sensors for determining fluid composition and flow rate in fluidic systems

机译:用于确定流体系统中流体成分和流速的微热传感器

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摘要

To analyze fluid mixtures a simple and low cost measurement method is realized using a microthermal sensor that introduces a short heat pulse into the fluid under test whilst the resulting temperature increase reflects thermal parameters of the fluid. For methanol in water this principle showed an almost linear dependence of the temperature increase on the methanol content for the volume concentration range 0-20%. The sensitivity was determined to S = 0.19 K/(% (V/V)) for a heat pulse of 0.5 s duration and a heater power of 30 mW. The accuracy achieved in stopped-flow single pulse measurements is ~0.5% (V/V). By integrating additional temperature sensors in front and behind the microheater the flow rate of the liquid can also be determined using thermal anemometry. The low cost sensor construction and simple signal analysis make this principle promising for use in low cost mobile applications like DMFC power supplies for laptops.
机译:为了分析流体混合物,使用微热传感器实现了一种简单且低成本的测量方法,该传感器将短的热脉冲引入被测流体中,同时产生的温度升高反映了流体的热参数。对于水中的甲醇,在体积浓度范围为0-20%时,该原理显示出温度升高对甲醇含量的线性关系。对于持续时间为0.5 s的热脉冲和30 mW的加热器功率,灵敏度确定为S = 0.19 K /(%(V / V))。停止流量单脉冲测量中达到的精度约为0.5%(V / V)。通过在微型加热器的前面和后面集成其他温度传感器,还可以使用热风速测定法确定液体的流速。低成本的传感器结构和简单的信号分析使该原理有望用于低成本移动应用,例如笔记本电脑的DMFC电源。

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