标题: 利用弹性可移动细线来增强FC-72池沸腾与流动沸腾热传之新奇方法研究
A Study of a Novel Method for Enhancing Fc-72 Pool and Flow Boiling Heat Transfer through Flexible and Movable Threads
作者: 林清发
LIN TSING-FA
国立交通大学机械工程学系(所)
公开日期: 2012
摘要: 最近这二十年來,IC产业蓬勃发展,半导体制程技术不断精进,电子元件藉由制程上的突破,其线宽从18.0μm缩小至1.0μm,造成元件上的导线數不断大幅增加,使得单位面积上的发热量急遽升高,如何将所产生的高热量迅速地移走,使电子元件避免发生高温过热烧毁之重大课题,受到IC产业高度重视。近年來,电子冷却散热的形式从传统的单相自然对流、强制对流,转变为以相变化热传方式來进行散热,主要的原因是藉由较高的潜热传递來带走大量的热量。另外散热鳍片尺寸大小也从传统的大型鳍片缩成奈微米针狀鳍片,在这些散热鳍片中,主要是利用固定式散热鳍片,鲜少有探讨可移动非固定式散热鳍片來增强热传于池沸腾及流动沸腾热传中。此可移动式散热鳍片预计将可大幅提升沸腾时之气泡脱離频率,进而增强沸腾热传。本计画拟以详细的实验量测和观测來探讨被动式可移动鳍片对池沸腾及流动沸腾热传之影响。由于鳍片的移动是靠沸腾时强烈的液体及气泡流动所带动,而且鳍片必须非常薄小,在机械加工制作上将较困难。因此本研究将以常用的细线取代一般鳍片,提高实验之可行性。
因此,在本三年期研究计画中(民国99年8月至102年7月),我们将建立兩套实验系统(池沸腾和流动沸腾系统),以FC-72为工作流体來详细探讨被动式可移动非固定散热细线在饱和及次冷态池及流动沸腾情况之下是否可大幅增强沸腾热传。除此之外,也将改变散热细线之材质及几何參數來作详细研究。同时我门也将探讨移动细线对气泡特征(气泡脱離尺寸、频率及加热面成核密度)之影响,以厘清加装可移动散热细线时之沸腾热传机制。
In recent two decades, the quick development of the IC (Integrated Circuits) and semiconductor manufacturing technology has resulted in the breakthrough in the fabrication of the electronic devices. The line width has reduced from 18.0μm to 1.0μm and the number of lines increases substantially, causing huge increase in the dissipating heat in the electronic devices. How to quickly move the dissipation heat from the electronic devices to avoid device overheating is an important task. Thus the methods employed in electronics cooling changes from that based on natural convection and forced convection to phase change recently because of latent heat involved in the heat transfer process. Besides, the fins also reduce to micro size. These fins normally fixed firmly on heating surfaces. No attention has been paid to investigating the effects of movable and flexible fins on the enhancement of pool and flow boiling heat transfer. The use of movable and flexible fins is expected to greatly increase the bubble departure frequency in the boiling process, which in turn will enhance boiling heat transfer. The present study intends to explore how passive movable and flexible fins affect pool boiling and flow boiling heat transfer through a detailed experimental measurement and visualization of the boiling process. Since the fin movement is induced passively by the vigorous liquid motion and bubble ebullition during the boiling process, the fins should be relatively small and thin, which is difficult in manufacturing to some extent. In this study we will use fine wires to replace the conventional fins to facilitate the experiment and promote the feasibility of the study.
Thus, in this three-year research project (August 2010 to July 2013) two sets of experimental apparatuses (pool boiling system & flow boiling system) will be established to investigate how the movable and flexible fins in the form of fine wires affect the boiling heat transfer with coolant FC-72. Both the saturated and subcooled pool and flow boiling heat transfer augmentation will be examined. Besides, the effects of the wire material and geometry parameters will be studied. Moreover, we will explore how the bubble characteristics in the boiling flow, including the bubble departure diameter and frequency and active nucleation site density on the heating surface, are affected by the movable and flexible wires to delineate the associated mechanisms for the boiling heat transfer enhancement by the movable fine wires.
官方说明文件#: NSC99-2221-E009-059-MY3
URI: http://hdl.handle.net/11536/98299
https://www.grb.gov.tw/search/planDetail?id=2389074&docId=379688
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