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Thermal Imaging of Microfluidic Systems as a Model for Investigating Energy Efficiency

机译:微流体系统的热成像作为研究能源效率的模型

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摘要

We explore the use of a commercial thermal imaging infrared camera (7-12 micron, uncooled microbolometer array, 320 × 240 resolution) to characterize microfluidic devices with the aims of: 1) evaluating the usefulness of thermal imaging to assess various flow configurations with respect to heat transfer, and 2) developing educational laboratory projects combining rapid prototyping, thermal imaging, microfluidics, and heat transfer. We investigated concurrent and countercurrent heat exchangers, mixing streams of different temperature (cold and hot water), mixing streams yielding a heat of mixing (ethanol and water), mixing streams yielding a heat of reaction (acid-base neutralization), and freezing and heating flowing streams in channels with a Peltier module. Energy efficiency can be assessed to determine the feasibility and effectiveness of microfluidic designs. Substantial improvements in mixing and heat transfer using a magnetic stirrer are demonstrated with thermal imaging.
机译:我们探索使用商用红外热成像仪(7-12微米,未冷却的微辐射热计阵列,分辨率为320×240)来表征微流控设备,其目的是:1)评估热成像的有效性,以评估各种流量配置2)开发结合快速原型制作,热成像,微流控和热传递的教育实验室项目。我们研究了并流和逆流换热器,不同温度的混合流(冷水和热水),产生混合热的混合流(乙醇和水),产生反应热的混合流(酸中和),冷冻和使用Peltier模块加热通道中的流动流。可以评估能效以确定微流体设计的可行性和有效性。通过热成像技术证明了使用磁力搅拌器在混合和传热方面的显着改进。

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