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Slug-bubble regime identification in a square channel using a IR Sensor

机译:使用IR传感器在方形通道中识别SLUG-BUBBLE状态

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Design of micro thrusters for nano satellites, require a detailed understanding of multiphase flow phenomena in micro/mini-channels. This work focuses on the experimental and numerical investigation of an Infra-red sensor behavior during two phase flow of a slug-bubble train (air-water two-phase flow). The regime flows inside a square channel of sides 2 mm and 0.5 mm thickness made of borosilicate glass. The interference of the slug-bubble train flow pattern on the IR transceiver characteristics is experimentally studied as current signals corresponding to the number of photons received by the photodiode. A numerical model is developed to analyze the IR transceiver characteristics using COMSOL Multiphysics package. The experimental and numerical results are in good agreement and the developed system with proper calibration can be used to design feedback loops for micro thrusters.
机译:用于纳米卫星的微推动器的设计需要详细了解微/迷你通道中的多相流动现象。这项工作侧重于在SLUG-泡火车(空水两相流)的两相流动期间红外传感器行为的实验和数值研究。该制度在侧面2mm和0.5mm的厚度内流动,由硼硅酸盐玻璃制成。实验研究了IR收发器特性对IR收发器特性的滑块列车流动图案的干扰作为对应于由光电二极管接收的光子的数量的电流信号。开发了一种数值模型来分析IR收发器特性使用COMSOL Multiphysics封装。实验和数值结果非常一致,并且具有适当校准的发达系统可用于为微推动器设计反馈回路。

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