Examining the potential of sigma-thermic heat transfer fluid and its nanofluid in a natural circulation loop through CFD studies

被引:4
作者
Nagaraju, Dora [1 ]
Mohammad, Abdul Razack [1 ]
Mendu, Siva Subrahmanyam [2 ]
Maheswararao, G. Uma [3 ]
机构
[1] GITAM Deemed Univ, Dept Mech Engn, Visakhapatnam 530045, India
[2] MVGR Coll Engn A, Dept Mech Engn, Vizianagaram 535003, Andhra Prades, India
[3] Prakriti Tecn India Pvt Ltd, Hyderabad 500038, Telangana, India
来源
ENGINEERING RESEARCH EXPRESS | 2024年 / 6卷 / 02期
关键词
food graded heat transfer oil; nanoparticles; natural circulation loop; mass flow rate; entropy generation; STEADY-STATE; RECTANGULAR LOOP; PERFORMANCE; STABILITY; BEHAVIOR; CONVECTION; SINK; FLOW;
D O I
10.1088/2631-8695/ad4773
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study investigates the impact of hot heat exchanger (HHX) inlet temperature on Sigma-thermic heat transfer fluid (STHF or STF) performance in a natural circulation loop. Various fluids, including STHF and STHF-based nanofluids, with volumetric concentrations ranging from 0.5% to 3%, are employed in the loop. The primary objective is to analyze the thermal performance of the loop under different conditions, focusing on temperature distribution, Nusselt number, friction factor, effectiveness, and mass flow rate. 3D numerical simulations are conducted, and the numerical model is validated against existing literature. The developed model incorporates considerations for viscous dissipation and axial conduction to predict the heat transfer potential of the loop. As the HHX inlet temperature increases, the mass flow rate rises. Notably, STHF/CuO nanofluids exhibit a more substantial enhancement than other nanofluids. At a 1 vol% concentration, the mass flow rate increases by 9.5%, 4%, and 2.7% for STHF/CuO, STHF/Al2O3, and hybrid nanofluids, respectively, compared to pure STHF. The study reveals significant improvements in mass flow rates and heat transfer efficiency with increasing HHX inlet temperatures, especially with STHF/CuO nanofluids. The total entropy generation reduction is notable, with percentages ranging from 2% to 18.5% for various nanofluids compared to pure STHF.
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页数:19
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