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Experimental Studies on Heat Transfer and Friction Factor Characteristics of Al2O3/Water Nanofluid in a Circular Pipe Under Transition Flow With Wire Coil Inserts

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Pages 485-496 | Published online: 14 Feb 2011

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S. Anbu, J. Arunprasad, P. Kalidoss & C. Sivakumar. (2023) Comparative studies on convective heat transfer behaviour of nanofluids under turbulent flow with inserts. International Journal of Ambient Energy 44:1, pages 892-903.
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Ayushi Mishra, Ishu Singhal & Ravi Singhal. (2023) Numerical analysis heat transfer enhancement in round corrugated channels using nano-fluids. Numerical Heat Transfer, Part A: Applications 0:0, pages 1-13.
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Turgay Coşkun & Erdal Çetkin. (2020) Heat Transfer Enhancement in a Microchannel Heat Sink: Nanofluids and/or Micro Pin Fins. Heat Transfer Engineering 41:21, pages 1818-1828.
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Beata Niezgoda-Żelasko. (2019) Heat Transfer and Pressure Drop Measurements During Boiling in Vertical Tubes with Coiled-Wire Inserts. Heat Transfer Engineering 40:19, pages 1633-1648.
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D. MageshBabu, P. K. Nagarajan, Ravishankar Sathyamurthy & S. Suseel Jai Krishnan. (2017) Enhancing the thermal performance of AL2O3/DI water nanofluids in micro-fin tube equipped with straight and left-right twisted tapes in turbulent flow regime. Experimental Heat Transfer 30:4, pages 267-283.
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Matthias H. Buschmann. (2017) Nanofluid Heat Transfer in Laminar Pipe Flow With Twisted Tape. Heat Transfer Engineering 38:2, pages 162-176.
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Saeed Zeinali Heris, Zahra Edalati, Seyed Hossein Noie & Omid Mahian. (2014) Experimental Investigation of Al2O3/Water Nanofluid Through Equilateral Triangular Duct With Constant Wall Heat Flux in Laminar Flow. Heat Transfer Engineering 35:13, pages 1173-1182.
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Articles from other publishers (29)

Jahar Sarkar & Rashmi Rekha Sahoo. (2024) Experiment on Heat Exchanger Using Innovative Coils and Phase Change Material/MXene Nanofluids. Journal of Thermophysics and Heat Transfer 38:2, pages 250-259.
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Abdussamet Subasi, Mehmed Rafet Ozdemir & Patrice Estellé. (2022) A review on laminar-to-turbulent transition of nanofluid flows. Journal of Thermal Analysis and Calorimetry 147:24, pages 14765-14786.
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Orhan Keklikcioglu & Veysel Ozceyhan. (2022) Heat transfer augmentation in a tube with conical wire coils using a mixture of ethylene glycol/water as a fluid. International Journal of Thermal Sciences 171, pages 107204.
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Çayan Demirkır & Hakan Ertürk. (2021) Convective heat transfer and pressure drop characteristics of graphene-water nanofluids in transitional flow. International Communications in Heat and Mass Transfer 121, pages 105092.
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Younes Menni, Ali J. Chamkha & Houari Ameur. (2020) Advances of nanofluids in heat exchangers—A review. Heat Transfer 49:8, pages 4321-4349.
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Sumit Kr. Singh & Jahar Sarkar. (2020) Improving hydrothermal performance of hybrid nanofluid in double tube heat exchanger using tapered wire coil turbulator. Advanced Powder Technology 31:5, pages 2092-2100.
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H Ismail, M Z Sulaiman & M A H Aizzat. (2020) Qualitative investigations on the stability of Al 2 O 3 -SiO 2 hybrid water-based nanofluids . IOP Conference Series: Materials Science and Engineering 788:1, pages 012091.
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Geetha Ramadass, M. M. Vijayalakshmi & E. Natarajan. (2020) Energy Investigation in Serpentine Heat Exchanger Using Aluminum Oxide Nanofluid on Solar Photovoltaic/Thermal System. Journal of Testing and Evaluation 48:2, pages 1031-1054.
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Premdasu Nalluri, Abdul Munaf Abdul, P. Premkumar, M. R. Ch Sastry, S. K. Rajesh Kanna & J. Nishanth Jude Roy. Improvement in heat transfer rate of a pipe using various types of inserts. Improvement in heat transfer rate of a pipe using various types of inserts.
Omer F. Guler, Oguz Guven & Murat K. Aktas. (2019) Heat Transfer Enhancement by Sinusoidal Motion of a Water-Based Nanofluid. Journal of Thermal Science and Engineering Applications 11:4.
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S. Anbu, S. Venkatachalapathy & S. Suresh. (2019) Convective heat transfer studies on helically corrugated tubes with spiraled rod inserts using TiO2/DI water nanofluids. Journal of Thermal Analysis and Calorimetry 137:3, pages 849-864.
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Gangtao Liang & Issam Mudawar. (2019) Review of single-phase and two-phase nanofluid heat transfer in macro-channels and micro-channels. International Journal of Heat and Mass Transfer 136, pages 324-354.
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S. Rashidi, M. Eskandarian, O. Mahian & S. Poncet. (2018) Combination of nanofluid and inserts for heat transfer enhancement. Journal of Thermal Analysis and Calorimetry 135:1, pages 437-460.
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Juan Du, Yuxiang Hong, Shuangfeng Wang, Wei-Biao Ye & Si-Min Huang. (2018) Experimental thermal and flow characteristics in a traverse corrugated tube fitted with regularly spaced modified wire coils. International Journal of Thermal Sciences 133, pages 330-340.
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E.J. Onyiriuka, A.I. Obanor, M. Mahdavi & D.R.E. Ewim. (2018) Evaluation of single-phase, discrete, mixture and combined model of discrete and mixture phases in predicting nanofluid heat transfer characteristics for laminar and turbulent flow regimes. Advanced Powder Technology 29:11, pages 2644-2657.
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Yuxiang Hong, Juan Du, Shuangfeng Wang, Si-Min Huang & Wei-Biao Ye. (2018) Heat transfer and fluid flow behaviors in a tube with modified wire coils. International Journal of Heat and Mass Transfer 124, pages 1347-1360.
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Orhan Keklikcioglu & Veysel Ozceyhan. 2018. Heat Transfer - Models, Methods and Applications. Heat Transfer - Models, Methods and Applications.
Goutam Saha & Manosh C. Paul. (2018) Investigation of the characteristics of nanofluids flow and heat transfer in a pipe using a single phase model. International Communications in Heat and Mass Transfer 93, pages 48-59.
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A. Dominic, J. Sarangan, S. Suresh & V. S. Devahdhanush. (2016) An experimental study of heat transfer and pressure drop characteristics of divergent wavy minichannels using nanofluids. Heat and Mass Transfer 53:3, pages 959-971.
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Sandesh S. Chougule & S.K. Sahu. (2015) Heat transfer and friction characteristics of Al2O3/water and CNT/water nanofluids in transition flow using helical screw tape inserts – a comparative study. Chemical Engineering and Processing: Process Intensification 88, pages 78-88.
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Goutam Saha & Manosh C. Paul. (2015) Analysis of Heat Transfer and Entropy Generation of TiO2-Water Nanofluid Flow in a Pipe under Transition. Procedia Engineering 105, pages 381-387.
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M.A. Ahmed, M.Z. Yusoff, K.C. Ng & N.H. Shuaib. (2014) Effect of corrugation profile on the thermal–hydraulic performance of corrugated channels using CuO–water nanofluid. Case Studies in Thermal Engineering 4, pages 65-75.
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Khamisah Abdul Hamid, Wan Hamzah Azmi, Rizalman Mamat & Nur Ashikin Usri. (2014) Heat Transfer Performance of Titanium Oxide in Ethylene Glycol Based Nanofluids under Transition Flow. Applied Mechanics and Materials 660, pages 684-688.
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Ehsan B. Haghighi, Mohsin Saleemi, Nader Nikkam, Rahmatollah Khodabandeh, Muhammet S. Toprak, Mamoun Muhammed & Björn Palm. (2014) Accurate basis of comparison for convective heat transfer in nanofluids. International Communications in Heat and Mass Transfer 52, pages 1-7.
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M. Chandra Sekhara Reddy & Veeredhi Vasudeva Rao. (2014) Experimental investigation of heat transfer coefficient and friction factor of ethylene glycol water based TiO2 nanofluid in double pipe heat exchanger with and without helical coil inserts. International Communications in Heat and Mass Transfer 50, pages 68-76.
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Efstathios E. MichaelidesEfstathios E. Michaelides. 2014. Nanofluidics. Nanofluidics 117 161 .
Anwar Gavili, Taghi Dallali Isfahani, Fatemeh Zabihi & Iraj Hadi. (2013) The effect of real viscosity on the heat transfer of water based Al2O3 nanofluids in a two-sided lid-driven differentially heated rectangular cavity. Heat and Mass Transfer 49:10, pages 1433-1445.
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L. Syam Sundar & Manoj K. Singh. (2013) Convective heat transfer and friction factor correlations of nanofluid in a tube and with inserts: A review. Renewable and Sustainable Energy Reviews 20, pages 23-35.
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L. Syam Sundar, N.T. Ravi Kumar, M.T. Naik & K.V. Sharma. (2012) Effect of full length twisted tape inserts on heat transfer and friction factor enhancement with Fe3O4 magnetic nanofluid inside a plain tube: An experimental study. International Journal of Heat and Mass Transfer 55:11-12, pages 2761-2768.
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