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MULTIPHASE SUBMERGED JET IMPINGEMENT COOLING UTILIZING NANOSTRUCTURED PLATES

机译:利用纳米结构板的多相浸没式射流冲击冷却

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An experimental setup is designed to simulate the heat dissipated by electronic devices and to test the effects of nanostructured plates in enhancing the heat removal performance of jet impingement systems in such cooling applications under boiling conditions. Prior experiments conducted in single phase have shown that such different surface morphologies are effective in enhancing the heat transfer performance of jet impingement cooling applications. In this paper, results of the most recent experiments conducted using multiphase jet impingement cooling system will be presented. Distilled water is propelled into four microtubes of diameter 500 urn that provide the impinging jets to the surface. Simulation of the heat generated by miniature electronic devices is simulated through four aluminum cartridge heaters of 6.25 mm in diameter and 31.75 mm in length placed inside an aluminum base. Nanostructured plates of size 35mm×30mm and different surface morphologies are placed on the surface of the base and two thermocouples are placed to the surface of the heating base and the base is submerged into deionized water. Water jets generated using microtubes as nozzles are targeted to the surface of the nanostructured plate from a nozzle to surface distance of 1.5 mm and heat removal characteristics of the system is studied for a range of flow rates and heat flux, varying between 107.5-181.5 ml/min and 1-400000 W/m~2, respectively. The results obtained using nanostructured plates are compared to the ones obtained using a plain surface copper plate as control sample and reported in this paper.
机译:设计一种实验装置,以模拟电子设备散发的热量,并测试纳米结构板在沸腾条件下在此类冷却应用中增强射流撞击系统的除热性能方面的作用。在单相中进行的先前实验表明,这种不同的表面形态可以有效地提高射流冲击冷却应用的传热性能。在本文中,将介绍使用多相射流冲击冷却系统进行的最新实验的结果。将蒸馏水推入直径为500 um的四个微管中,这四个微管向表面提供冲击射流。微型电子设备产生的热量的模拟是通过放置在铝基座内部的四个直径为6.25 mm,长度为31.75 mm的铝制筒形加热器进行的。将尺寸为35mm×30mm且具有不同表面形态的纳米结构板放置在基座的表面上,并将两个热电偶放置在加热基座的表面上,并将基座浸入去离子水中。使用微管作为喷嘴产生的水射流从喷嘴到纳米结构板表面的距离为1.5 mm,并研究了系统的散热特性,其流量和热通量范围在107.5-181.5 ml之间/ min和1-400000 W / m〜2。将使用纳米结构板获得的结果与使用普通表面铜板作为对照样品获得的结果进行比较,并在本文中进行了报道。

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