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Thermal Wavelength Measurement of Nanofluid in an Optical-Fiber Thermal Wave Cavity Technique to Determine the Thermal Diffusivity

机译:光纤热波腔技术中纳米流体的热波长测量以确定热扩散率

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摘要

The application of optical-fiber thermal wave cavity (OF-TWC) technique was investigated to measure the thermal diffusivity of Ag nanofluids. The thermal diffusivity was obtained by measuring the thermal wavelength of sample in a cavity scan mode. The spherical Ag nanoparticles samples were prepared at various sizes using the microwave method. Applying the thermal wavelength measurement in a flexible OF-TWC technique requires only two experimental data sets. It can be used to estimate thermal diffusivity of a small amount of liquid samples (0.3 ml) in a brief period. UV-Vis spectroscopy and transmission electron microscopy were used to measure the characterization of the Ag nanoparticles. The thermal diffusivity of distilled water, glycerol, and two different types of cooking oil was measured and has an excellent agreement with the reported results in the literature (difference of only 0.3%–2.4%). The nanofluids showed that the highest value of thermal diffusivity was achieved for smaller sized nanoparticles. The results of this method confirmed that the thermal wavelength measurement method using the OF-TWC technique had potential as a tool to measure the thermal diffusivity of nanofluids with different variables such as the size, shape, and concentration of the nanoparticles.
机译:研究了光纤热波腔(OF-TWC)技术在测量Ag纳米流体的热扩散率中的应用。通过在腔扫描模式下测量样品的热波长获得热扩散率。使用微波方法制备了各种尺寸的球形Ag纳米颗粒样品。在灵活的OF-TWC技术中应用热波长测量仅需要两个实验数据集。它可用于估算短期内少量液体样品(0.3毫升/毫升)的热扩散系数。紫外可见光谱和透射电子显微镜用于测量银纳米粒子的表征。测量了蒸馏水,甘油和两种不同类型的食用油的热扩散率,与文献报道的结果具有极好的一致性(相差仅0.3%–2.4%)。纳米流体表明,对于较小尺寸的纳米颗粒,可以实现最高的热扩散率。该方法的结果证实,使用OF-TWC技术的热波长测量方法具有潜力,可以用来测量纳米流体的热扩散率,这些流体具有不同的变量,例如纳米颗粒的大小,形状和浓度。

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