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Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 69, 2016 - Issue 4
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Original Articles

Analysis of a hybrid nanofluid exposed to radiation

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Pages 271-286 | Received 09 Jul 2015, Accepted 05 Sep 2015, Published online: 23 Mar 2016

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Read on this site (5)

Swapnali Doley, Vanav Kumar Alagarsamy, Ali J. Chamkha, Jino Lawrence & Ashwin Jacob. (2023) Numerical study of heat transfer between hot moving material and ambient medium using various hybrid nanofluids under MHD radiative-convection, viscous dissipation effects, and time-fractional condition. Numerical Heat Transfer, Part B: Fundamentals 84:1, pages 24-49.
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Hamidou Benzenine, Said Abboudi & Rachid Saim. (2020) Effect of the presence of a shoulder on the thermal and dynamic structure of a laminar flow in an air-plane solar collector. Numerical Heat Transfer, Part B: Fundamentals 77:3, pages 257-270.
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Xinhua Xue. (2020) Daily diffuse solar radiation estimation using adaptive neuro-fuzzy inference system technique. Numerical Heat Transfer, Part B: Fundamentals 77:2, pages 138-151.
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Lei Wang, Dong-Dong Zhang, Fu-Yun Zhao, Di Liu & Han-Qing Wang. (2019) Thermal driven flows inside a square enclosure saturated with nanofluids: Convection heat functions and transfer rate revisions from a homogenous model. Numerical Heat Transfer, Part B: Fundamentals 75:4, pages 265-288.
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Ricardo Diaz & Zhixiong Guo. (2017) Molecular dynamics study of wettability and pitch effects on maximum critical heat flux in evaporation and pool boiling heat transfer. Numerical Heat Transfer, Part A: Applications 72:12, pages 891-903.
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Zafar Said, Misbah Iqbal, Aamir Mehmood, Thanh Tuan Le, Hafiz Muhammad Ali, Dao Nam Cao, Phuoc Quy Phong Nguyen & Nguyen Dang Khoa Pham. (2023) Nanofluids-based solar collectors as sustainable energy technology towards net-zero goal: Recent advances, environmental impact, challenges, and perspectives. Chemical Engineering and Processing - Process Intensification 191, pages 109477.
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Hafiz Muhammad Ali. (2022) Phase change materials based thermal energy storage for solar energy systems. Journal of Building Engineering 56, pages 104731.
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Abu Mahamude, Muhamad Kamarulzaman, Wan Harun, Kumaran Kadirgama, Devarajan Ramasamy, Kaniz Farhana, Rosli Bakar, Talal Yusaf, Sivarao Subramanion & Belal Yousif. (2022) A Comprehensive Review on Efficiency Enhancement of Solar Collectors Using Hybrid Nanofluids. Energies 15:4, pages 1391.
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Wei Peng & Omid Karimi Sadaghiani. (2021) Thermal performance enhancement of direct absorption solar collector using nanoparticle in sunray trap. Applied Thermal Engineering 187, pages 116578.
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Y Akbar, F M Abbasi & S A Shehzad. (2020) Effectiveness of Hall current and ion slip on hydromagnetic biologically inspired flow of Cu − Fe 3 O 4 /H 2 O hybrid nanomaterial . Physica Scripta 96:2, pages 025210.
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Wei Peng & Omid Karimi Sadaghiani. (2020) Using a sunrays trap in direct-absorption solar collector (DASC) to enhance the thermal efficiency of collector. Thermal Science and Engineering Progress 20, pages 100740.
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Yathin Krishna, M. Faizal, R. Saidur, K.C. Ng & Navid Aslfattahi. (2020) State-of-the-art heat transfer fluids for parabolic trough collector. International Journal of Heat and Mass Transfer 152, pages 119541.
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Sabeel M. Khan & H. Kaneez. (2020) Numerical computation of heat transfer enhancement through Cosserat hybrid nanofluids using continuous Galerkin–Petrov method. The European Physical Journal Plus 135:2.
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Dipanwita Mitra, Kalyan K. Chattopadhyay & Paramita Chattopadhyay. 2020. Encyclopedia of Renewable and Sustainable Materials. Encyclopedia of Renewable and Sustainable Materials 570 597 .
Mohammad Hossein Ahmadi, Mahyar Ghazvini, Milad Sadeghzadeh, Mohammad Alhuyi Nazari & Mohammad Ghalandari. (2019) Utilization of hybrid nanofluids in solar energy applications: A review. Nano-Structures & Nano-Objects 20, pages 100386.
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Tayyab Raza Shah & Hafiz Muhammad Ali. (2019) Applications of hybrid nanofluids in solar energy, practical limitations and challenges: A critical review. Solar Energy 183, pages 173-203.
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Hamza Babar & Hafiz Muhammad Ali. (2019) Towards hybrid nanofluids: Preparation, thermophysical properties, applications, and challenges. Journal of Molecular Liquids 281, pages 598-633.
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Adeel Arshad, Mark Jabbal, Yuying Yan & David Reay. (2019) A review on graphene based nanofluids: Preparation, characterization and applications. Journal of Molecular Liquids 279, pages 444-484.
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Marco Bornstein, Toni K. Tullius & Yildiz Bayazitoglu. (2019) Optimal nanoparticles for heat absorption and cost. International Journal of Heat and Mass Transfer 133, pages 778-785.
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Caiyan Qin, Kyeonghwan Kang, Ikjin Lee & Bong Jae Lee. (2018) Optimization of the spectral absorption coefficient of a plasmonic nanofluid for a direct absorption solar collector. Solar Energy 169, pages 231-236.
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Hooman Yarmand, Nurin Wahidah Binti Mohd Zulkifli, Samira Gharehkhani, Seyed Farid Seyed Shirazi, Abdullah A.A.A. Alrashed, Mohamad Azlin Bin Ali, Mahidzal Dahari & S.N. Kazi. (2017) Convective heat transfer enhancement with graphene nanoplatelet/platinum hybrid nanofluid. International Communications in Heat and Mass Transfer 88, pages 120-125.
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Caiyan Qin, Kyeonghwan Kang, Ikjin Lee & Bong Jae Lee. (2017) Optimization of a direct absorption solar collector with blended plasmonic nanofluids. Solar Energy 150, pages 512-520.
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