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JCR 2016
جستجوی مقالات
دوشنبه 26 مرداد 1405
Journal of Applied and Computational Mechanics
، جلد ۱۱، شماره ۲، صفحات ۳۷۱-۳۸۱
عنوان فارسی
چکیده فارسی مقاله
کلیدواژههای فارسی مقاله
عنوان انگلیسی
Electro-magnetic Enhanced Mixed-convection of a Confined Slot NEPCM-water Impinging Jet Equipped with Metal Foam
چکیده انگلیسی مقاله
This study tackles a complicated heat transfer problem about the cooling capability of a confined slot NEPCM-water suspension impinging jet for cooling a hot surface within the mixed convective region (with
Ri
= 1 and
Re
= 100 and 300). A NEPCM-water slurry comprises nano-sized capsules containing phase change material particles dispersed in a water-based solution. The cooling medium involves a porous metal foam (
Da
= 0.001), and the entire configuration is subjected to a uniform magnetic field that satisfies the laminar region (
Ha
= 50, λ = -75°) and electric field (between the surface and confining wall). The non-dimensional governing equations of both the fluid and electromagnetic field are solved by ANSYS Fluent. This involves implementing a nondimensionalization scheme and incorporating additional partial differential equations (PDEs) into the code. Additionally, memory allocation is optimized for efficient execution. Flow patterns, isotherms, heat capacity ratio, entropy generation components, and Bejan number are computed for both water and a 2% NEPCM-water suspension. The findings indicate that increasing the Reynolds number from 100 to 300, coupled with the introduction of electromagnetic fields (EMF) enhances Nu
ave
by 67.1% for the NEPCM-water slurry. However, this increase in heat transfer is accompanied by a proportional rise in entropy generation under EMF at
Re
= 300. Interestingly, the simultaneous application of electric and magnetic fields results in a notable reduction in entropy generation, with N
gen
decreasing by 35% and 14% for the NEPCM-water suspension at
Re
= 100 and 300, respectively, compared to pure water. Moreover, the average Bejan number (Be
ave
) exhibits a decreasing trend with increasing Reynolds numbers, indicating a diminishing relative importance of heat transfer irreversibility. By the introduction of EMF, Be
ave
demonstrates a 35.9% decline for NEPCM suspension at
Da
= 0.001 as
Re
increases from 100 to 300. These results underscore the complex interplay among fluid dynamics, electromagnetic fields, and entropy generation in impinging jet systems, offering effective understandings for improving heat transfer methods across many industrial applications.
کلیدواژههای انگلیسی مقاله
EMF,impinging jet,Ansys Fluent,NEPCM,Mixed convection,EHD
نویسندگان مقاله
Mehdi Hashemi-Tilehnoee |
Centre for Cooperative Research on Alternative Energies (CIC energiGUNE), Basque Research and Technology Alliance (BRTA), Alava Technology Park, Albert Einstein 48, 01510 Vitoria-Gasteiz, Spain
Seyyed Masoud Seyyedi |
Department of Mechanical Engineering, Aliabad Katoul Branch, Islamic Azad University, Aliabad Katoul, Iran
Elena Palomo Del Barrio |
Centre for Cooperative Research on Alternative Energies (CIC energiGUNE), Basque Research and Technology Alliance (BRTA), Alava Technology Park, Albert Einstein 48, 01510 Vitoria-Gasteiz, Spain
Farhad Hosseinnejad |
Department of Mechanical Engineering, Sari Branch Islamic Azad University, Sari, Iran
Mohsen Sharifpur |
School of Mechanical, Industrial and Aeronautical Engineering, University of the Witwatersrand, Private Bag 3, Wits 2050, South Africa
نشانی اینترنتی
https://jacm.scu.ac.ir/article_19338_c7128f99d400f6b8388b9301d6f5b43b.pdf
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