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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >An inline sensing of coolant temperature inside a micro-channel for applications in ultra dense packed high power electronics
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An inline sensing of coolant temperature inside a micro-channel for applications in ultra dense packed high power electronics

机译:内联传感内的冷却液温度微通道超密集的应用程序包装高功率电子

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摘要

An indirect cooling mechanism with coolants flowing through micro-channels absorbing the heat emanating from the ultra dense high power electronics chips and field programable gate arrays (FPGA) has been reported as the successful thermal management process in recent times. In such schemes, it is imperative to control the flow rate of the fluid so as to maintain the normal operating conditions/temperature on the area to be cooled. Such requirement necessitates the measurement of the temperature inside the micro-channels so as to sustain the needed circulation speed of the coolant. In the present paper, experimental measurement of the temperature of the fluids flowing through a closed loop micro-channel, by inserting an inline all-fiber micro Mach - Zehnder interferometer (MMZI) inside the channel, has been reported. During the study, three different fluids viz, water, isopropyle alcohol and copper nano particle mixed iso propyle alcohol, were circulated, at different flow rates, inside the 0.6 mm(2) channel. The variations in the characteristics of the light waves propagating through the fiber due to the presence of the fluid and its flow rate were observed on the optical spectrum analyzer. The temperature sensitivity of the MMZI for three fluids, in terms of shift in the output fringe pattern was determined as 0.372 nm/degrees C, 0.261 nm/degrees C. and 0.249 nm/degrees C, respectively. (C) 2015 Elsevier GmbH. All rights reserved.
机译:间接冷却机制与冷却剂流经微细血管吸收热量来自超致密高功率电子芯片和现场可编程的门阵列(FPGA)已经被报道的成功最近热管理过程。这样的计划,它是必要的控制流量的液体来维持/温度在正常操作条件区域冷却。内的温度的测量微细血管,以维持所需的循环冷却的速度。论文,实验测量的温度的液体流经闭环微通道,通过插入内联全光纤微马赫-亿康先达干涉仪(MMZI)内的通道,已被报道。在研究过程中,三种不同的液体即,水,isopropyle酒精和铜纳米iso propyle酒精混合粒子流传,在不同的流速,在0.6毫米(2)通道。光波传播的特性通过纤维的存在流体及其流量的观察光学频谱分析仪。敏感性MMZI三流体的输出边缘模式的转变确定为0.372 nm /度,0.261/度C, 0.249 nm /度,分别。保留。

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