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DEVELOPMENT OF A TWO-DYE LIF TECHNIQUE FOR MEASURING FLUID TEMPERATURE FIELDS IN MICROFLUIDIC DEVICES

机译:微流体装置中测量流体温度场的双染利力技术的研制

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The feasibility of implementing a two-color laser-induced fluorescence (LIF) technique to study thermal transport at the microscale is investigated. A temperature-sensitive fluorescent dye (Rhodamine B) and a temperature-insensitive dye (Nile Red) are used in tandem to determine fluid temperature with high accuracy and low noise using a pulsed Nd:YAG laser as an illumination source. While the fluorescence intensity of the temperature-sensitive dye is proportional to temperature, it can be biased by variations in the illuminating intensity. Therefore, a second, temperature-insensitive dye is required to account for noise associated with variations in illumination intensity. Calibration of the system reveals that the two-color dye mixture in ethanol yields 1.0%/K of temperature sensitivity with volume illumination from the Nd:YAG laser. The feasibility of this methodology is explored by measuring steady-state conduction in a heated micro-reservoir.
机译:研究了实施双色激光诱导的荧光(LIF)技术以研究微观尺寸的热传输的可行性。在串联中使用温度敏感的荧光染料(Rhodamine B)和温度不敏感染料(尼罗红),以使用脉冲Nd:YAG激光作为照明源,以高精度和低噪声测定流体温度。虽然温度敏感染料的荧光强度与温度成比例,但它可以通过照明强度的变化偏置。因此,需要第二,温度不敏感的染料来解释与照明强度的变化相关的噪声。系统的校准表明,乙醇中的双色染料混合物产生1.0%/ k的温度敏感性,来自Nd:YAG激光的体积照射。通过测量加热的微储层中的稳态传导来探索该方法的可行性。

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