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Replacement of heat sink fan by nanocoolants for enhancement of CPU efficiency

机译:用纳米冷却剂代替散热器风扇,以提高CPU效率

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The highest temperature under which a CPU can operate without interruption is 90˚C. Heat sink fans generally provided for removal of heat produced by the processor are proved to be inadequate when CPU usage is 100%. The objective of this work is to exploit the enhanced thermal properties of nanofluid for dissipation of heat from the Intel (R) Core (TM) i5-2310 CPU @ 2.9GHz quad-core processor for cooling it to a suitable operating temperature. Nanocoolants were prepared with two types of nanoparticles, titania and copper. The volume percentage of nanoparticles in nanocoolants were 0.01 and 0.1. It was observed that nanofluids are more efficient coolants than the base fluid and found to be significantly better than the traditional heat sink fan, as indicated by the CPU temperature, under the same loading condition. The average CPU temperatures were 90˚C, 58˚C, 56.6˚C and 54.5˚C with heat sink fan, deionized water, 0.1 vol% TiO2 and 0.1 vol% Cu nanofluids respectively at the flow rate of 700ml/min and CPU usage of 100%. The lowest CPU operating temperature (54.5˚C) was obtained with 0.1 vol% Cu at the flow rate of 700ml/min. The cooling of CPU was also affected by the flow rate and the volume fraction of nanoparticles in the nanocoolant.
机译:CPU可以不间断运行的最高温度为90°C。当CPU使用率为100%时,通常提供的散热风扇不足以消除处理器产生的热量。这项工作的目的是利用纳米流体的增强的热性能,以散发来自英特尔(R)酷睿(i)i5-2310 CPU @ 2.9GHz四核处理器的热量,以将其冷却到合适的工作温度。用两种类型的纳米颗粒,二氧化钛和铜制备纳米冷却剂。纳米冷却剂中纳米颗粒的体积百分比为0.01和0.1。据观察,在相同的负载条件下,纳米流体比基础流体更有效的冷却剂,并且发现它比传统的散热器风扇要好得多,如CPU温度所指示的那样。使用散热器风扇,去离子水,0.1 vol%TiO2和0.1 vol%Cu纳米流体的平均CPU温度分别为90°C,58°C,56.6°C和54.5°C,流速为700ml / min,CPU使用率100%。以700%/ min的流速使用0.1%(体积)的Cu可获得最低的CPU工作温度(54.5°C)。 CPU的冷却还受到纳米冷却剂中纳米颗粒的流速和体积分数的影响。

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