标题: | 静电振动应用于离子风散热之研究 Experimental studies on applying electrostatic vibration to ion wind cooling |
作者: | 蓝朝诚 Lan, Chao-Coeng 王启川 Wang, Chi-Chuan 机械工程系所 |
关键字: | 电液动力学;离子风;压电风扇;Electrostatic ion-wind vibration;ion-wind cooling;EHD cooling |
公开日期: | 2015 |
摘要: | 本研究提出一个新设计,用于改善自然对流的主动散热设计,此设计无风扇马达,透过高压静电产生的静电吸附力,让弹性金属片产生类似压电风扇的机械振动,同时运用其导电性质,将金属片作为导电电极,使高压电极及接地的铝质散热片中间形成空气解离,产生复合式的振动离子风来增强散热效率。实验设计以7.5W功率加热,测试不同电极间距、电极极性、电极材质、电极几何形状下的尖端位移、振动频率及热传性能。实验结果显示,在电极间距25 mm,18 kV的工作电压下,可产生尖端位移量8.62 mm,而在电极间距20 mm,18 kV工作电压下,热传系数达38.85 W/m2K,约为自然对流的4.5倍。最后比较复合式散热与纯离子风散热,根据实验结果,在消耗功率0.13 W的情况下表现最好,复合式散热的热传系数为32.03 W/m2K,相比离子风散热的29.65 W/m2K增加了8.03%。 This study presents a new design of electronic air-cooling using ionic electrostatic wind to improve natural convection cooling. The proposed electrostatic ion wind vibration cooling design features a hybrid effect which combines electrostatic vibration and ion wind. The wind by electrostatic vibration which can enhance the volumetric airflow with less power consumption. In the experiments, the maximum tip displacement is 8.6 mm for an electrode gap distance of 25 mm subject to an operating voltage of 18 kV. For a 7.5 W heat source, the maximum heat transfer coefficient is 38.85 W/m2K for an electrode gap distance of 20 mm at an operating voltage of 18 kV. The heat transfer enhancement reached 4.5 times relative to natural convection. Finally, the test results are also compared with electrostatic ion wind cooling with EHD cooling. The results reveal that the heat transfer coefficient can be improved by 8.03% at the same supplying power of 3W. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070251104 http://hdl.handle.net/11536/127290 |
显示于类别: | Thesis |