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Computational Analysis of Heat Flow in Computer Casing

机译:计算机壳中热流的计算分析

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Reliability of a computer system is directly related to thermal management system. This is due to the fact that poor thermal management led to high temperature distribution throughout hardware components and resulting poor performance and reducing fatigue life of the package. Therefore, good cooling solutions (heat sink, fan) and proper form factor design (expandability, interchangeable of parts) is necessary to provide good thermal management in computer system. The performance of Advanced Technology Extended (ATX) and its purposed successor, Balanced Technology Extended (BTX) were compared to investigate the aforementioned factors. Simulations were conducted by using ANSYS software. Results obtained from simulations were compared with values in the datasheet obtained from manufacturers for validation purposes and it was discovered that there are more chaos region in the flow profile for ATX form factor. In contrast, BTX form factor yields a straighter flow profile. Based on the result, we can conclude that BTX form factor has better cooling capability compared to its predecessor, ATX due to the improvement of layout made in the BTX form factor. With this change, it enabled BTX form factor to be used with more advanced components which dissipate more amount of heat and also improves the acoustic performance of BTX by reducing the number of fan needed to just one unit for BTX.
机译:计算机系统的可靠性与热管理系统直接相关。这是由于热管理不良导致整个硬件部件的高温分布,并且性能差和减少包装的疲劳寿命。因此,需要良好的冷却液(散热器,风扇)和适当的外形设计(可扩展性,零件互换),以提供计算机系统的良好热管理。比较高级技术的性能延长(ATX)及其被饰有延长的技术(BTX)延长(BTX),以研究上述因素。通过使用ANSYS软件进行仿真。将从模拟中获得的结果与从制造商获得的数据表中的值进行比较,以便验证目的,发现ATX形状因子的流程轮廓中有更多的混沌区域。相反,BTX形状因子产生更直的流动轮廓。基于结果,我们可以得出结论,由于在BTX形状因子中提高布局,BTX形状因子与其前代ATX相比具有更好的冷却能力。通过这种变化,它使BTX形状因子能够与更高级的组件一起使用,这些组件耗散更多的热量,并且还通过减少仅为BTX单位所需的风扇数量来提高BTX的声学性能。

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