Experimental Study on the Effect of Micro Concentrations of Hybrid Nanofluids through Microchannel Heat Sinks

  • سال انتشار: 1404
  • محل انتشار: مجله مکانیک کاربردی و محاسباتی، دوره: 11، شماره: 2
  • کد COI اختصاصی: JR_JACM-11-2_004
  • زبان مقاله: انگلیسی
  • تعداد مشاهده: 53
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نویسندگان

Mohamed Elsherbiny

Mechanical Engineering Department, Al-Azhar University, Nasr City, Cairo, Egypt

Mostafa Ali

Mechanical Engineering Department, Al-Azhar University, Nasr City, Cairo, Egypt

Moatsem Shahin

Mechanical Engineering Department, Badr University in Cairo, Cairo, Egypt

Mahmoud El-Kady

Mechanical Engineering Department, Al-Azhar University, Nasr City, Cairo, Egypt

چکیده

The current study examines the convective heat transfer coefficient experimentally. It assesses the performance of Al۲O۳, CuO, ZnO, and Ag/ distilled water nanofluids up to a tetra level of hybridization utilized in microprocessor cooling systems equipped with MCHS. An equal ratio of ۵۰%, ۳۳.۳%, and ۲۵% for di-, tri-, and tetra-nanofluids, respectively, with a focus on micro-volume fraction ۰.۰۲۵% and comparing it with ۰.۰۵%. Operating conditions were as follows: heat loading from ۱۳۶.۴ up to ۱۹۶.۴ watts; and flow rate from ۰.۳۵ up to ۰.۵ LPM. The findings showed that all types of mono nanofluids showed an increase in Nu and HTC enhancement levels by increasing concentration from ۰.۰۲۵% to ۰.۰۵%, while HYNF reacted the opposite, even lower than the base fluid values. The reasons behind such findings might be due to the nanoparticle agglomeration effect. The maximum PEC was ۱.۸۴۵ at the highest heat flux and flow velocity by Al۲O۳-ZnO-Ag, while the minimum PEC was ۰.۸۴۷ at the highest heat flux and lowest velocity by CuO-ZnO-Ag, which is lower than unity. ZnO, Al۲O۳-CuO-ZnO, and CuO-ZnO-Ag only showed a PEC lower than unity; however, not in all operating conditions. Despite their differences in magnitude at ۰.۰۲۵%, all nanofluids showed an enhancement in terms of Nu and HTC ratios.

کلیدواژه ها

hybrid nanofluids, tetra hybridization, microchannel heat sinks, microprocessor cooling systems, micro-concentrations

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