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The development of a cross-flow fan for electronic devices cooling with a focus on laptop computers

机译:用于电子设备的交叉流动风扇的开发,用于膝上型计算机的焦点

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The directive is to develop a new type of cross-flow fan for cooling electronic devices. First, the module is based on the 60×60×6mm fan and attempts to use several parameters to enhance the fan's performance. The parameters considered here include blade number, angle of the blade, impeller diameter, divergent structure, and outlet area. Both numerical and experimental analyses are carried out on the cross-flow fan which was oriented horizontally. The ANSYS Fluent software is used in a 2D simulation to predict the heat transfer coefficient and the flow fields. Next, the flow and acoustic noise measurements are carried out at different parameters with the aid of AMCA and semi-anechoic chambers. The results show that when the outlet vent size is 70% of fan outside diameter the outcome is an enhanced fan performance of 12%. The optimal number of blades is 37. A block is inserted below the fan blade to improve the fan performance by 8%. The numerical and experimental values of air flow were plotted and found to be consistent. In summary, this study provides a systematic process to develop a cross-flow fan that can meet the requirements for thin and light laptop computers.
机译:该指令是开发一种用于冷却电子设备的新型横流风扇。首先,该模块基于60×60×6mm的风扇,并尝试使用多个参数来增强风扇的性能。这里考虑的参数包括叶片数,刀片的角度,叶轮直径,发散结构和出口区域。数值和实验分析均在水平定向的横流风扇上进行。 ANSYS流畅的软件用于2D仿真中以预测传热系数和流场。接下来,借助于AMCA和半向象腔室在不同参数下进行流动和声学噪声测量。结果表明,当出口通风口大小为风扇外径的70%时,结果增强了12%的风扇性能。最佳的刀片数为37.插入风扇刀片下方的块,以提高风扇性能8%。绘制空气流量的数值和实验值,发现是一致的。总之,本研究提供了一种系统的过程,可以开发一个可以满足薄和轻型笔记本电脑的要求的横流风扇。

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