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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Thermal chip fabrication with arrays of sensors and heaters for micro-scale impingement cooling heat transfer analysis and measurements
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Thermal chip fabrication with arrays of sensors and heaters for micro-scale impingement cooling heat transfer analysis and measurements

机译:带有传感器和加热器阵列的热芯片制造,用于微尺度冲击冷却传热分析和测量

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摘要

The design and fabrication for a thermal chip with an array of temperature sensors and heaters for study of micro-jet impingement cooling heat transfer process are presented. This thermal chip can minimize the heat loss from the system to the ambient and provide a uniform heat flux along the wall, thus local heat transfer processes along the wall can be measured and obtained. The fabrication procedure presented can reach a chip yield of 100%, and every one of the sensors and heaters on the chip is in good condition. In addition, micro-jet impingement cooling experiments are performed to obtain the micro-scale local heat transfer Nusselt number along the wall. Flow visualization for the micro-impinging jet is also made. The experimental results indicate that both the micro-scale impinging jet flow structure and the heat transfer process along the wall is significantly different from the case of large-scale jet impingement cooling process. (C) 2004 Elsevier B.V. All rights reserved.
机译:提出了具有温度传感器和加热器阵列的热芯片的设计和制造,用于研究微射流冲击冷却传热过程。该热芯片可以使从系统到周围环境的热损失最小化,并提供沿壁的均匀热通量,因此可以测量和获得沿壁的局部传热过程。提出的制造程序可以达到100%的芯片良率,并且芯片上的每个传感器和加热器都处于良好状态。另外,进行微射流冲击冷却实验以获得沿壁的微尺度局部传热努塞尔数。还对微冲击射流进行了流量可视化。实验结果表明,与大尺度射流冷却过程相比,小尺度射流的流动结构和沿壁的传热过程都存在显着差异。 (C)2004 Elsevier B.V.保留所有权利。

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