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Effect of Vibration on Forced Convection Heat Transfer for SiO2–Water Nanofluids

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M. Gangadhar Pavan Kumar, Budda Govinda Rao, B. Sreenivasulu & Shanmukh Sudhir Arasavelli. (2022) Effect of vibration on heat transfer to laminar non-Newtonian nanofluid flowing through a circular pipe: A numerical analysis. Numerical Heat Transfer, Part A: Applications 82:11, pages 683-699.
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Andrey V. Minakov, Valery Ya. Rudyak & Maxim I. Pryazhnikov. (2021) Systematic Experimental Study of the Viscosity of Nanofluids. Heat Transfer Engineering 42:12, pages 1024-1040.
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Fang-Chin Liu, Shao-Wen Chen & Jin-Der Lee. (2018) Feasibility Study of Heat Transfer Enhancement by Ultrasonic Vibration Under Subcooled Pool Condition. Heat Transfer Engineering 39:7-8, pages 654-662.
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Yuyan Wang, Peng Wang, Sungmin Yoon, Yuebin Yu & Minli Bai. (2018) Characteristics of flow and heat transfer of nanofluids under laminar states. Numerical Heat Transfer, Part A: Applications 73:1, pages 1-16.
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Richa Saxena, Dasaroju Gangacharyulu & Vijaya Kumar Bulasara. (2016) Heat Transfer and Pressure Drop Characteristics of Dilute Alumina–Water Nanofluids in a Pipe at Different Power Inputs. Heat Transfer Engineering 37:18, pages 1554-1565.
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Laura Colla, Laura Fedele, Oronzio Manca, Lorenzo Marinelli & Sergio Nardini. (2016) Experimental and Numerical Investigation on Forced Convection in Circular Tubes With Nanofluids. Heat Transfer Engineering 37:13-14, pages 1201-1210.
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Yang Zuo, Haoran Huang, Yanchen Fu, Jie Wen & Guoqiang Xu. (2023) Vibration effects on heat transfer characteristics of supercritical pressure hydrocarbon fuel in transition and turbulent states. Applied Thermal Engineering 219, pages 119617.
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Bin Yin, Shuguang Zuo, Yulin Xu & Shengpeng Chen. (2022) Performance of liquid cooling battery thermal management system in vibration environment. Journal of Energy Storage 53, pages 105232.
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Santosh Kumar Mishra, Arun Arora, Yogesh Kumar, Manoj Sao & Hari Shankar Chandra. (2021) CFD study of heat transfer effect on nanofluid of Newtonian and non-Newtonian type under vibration. Chemical Product and Process Modeling 16:4, pages 251-260.
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Selvaraj Jegadheeswaran, Athimoolam Sundaramahalingam & Sanjay D. Pohekar. (2021) Alternative Heat Transfer Enhancement Techniques for Latent Heat Thermal Energy Storage System: A Review. International Journal of Thermophysics 42:12.
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Jing Chen, Junbiao Dong & Ye Yao. (2021) Experimental Study on the Starting-Up and Heat Transfer Characteristics of a Pulsating Heat Pipe under Local Low-Frequency Vibrations. Energies 14:19, pages 6310.
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S.A.M. Mehryan, Piran Goudarzi, Seyed Mohsen Hashem Zadeh, Maryam Ghodrat, Obai Younis & Mohammad Ghalambaz. (2021) Thermal vibrational and gravitational analysis of a hybrid aqueous suspension comprising Ag–MgO hybrid nano-additives. International Communications in Heat and Mass Transfer 126, pages 105345.
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Jilin Lei, Yang Pan, Xiwen Deng, Yuhua Bi & Dewen Jia. (2021) Numerical investigation on the effects of spatial angle on oscillating flow and heat transfer characteristics of piston cooling galleries. Applied Thermal Engineering 191, pages 116822.
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Dongdong Gao, Minli Bai, Chengzhi Hu, Jizu Lv, Linsong Gao, Yang Li & Xue Zhang. (2020) Hydrophobic surface-assisted SiO 2 /DI-water nanofluids for enhancing heat transfer and reducing flow resistance . Nanotechnology 32:12, pages 125402.
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Ali Kareem Hilo, Abd Rahim Abu Talib, Antonio Acosta Iborra, Mohammed Thariq Hameed Sultan & Mohd Faisal Abdul Hamid. (2020) Experimental study of nanofluids flow and heat transfer over a backward-facing step channel. Powder Technology 372, pages 497-505.
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Nurril Ikmal Shamsul Azha, Hilmi Hussin, Mohammad Shakir Nasif & Tanweer Hussain. (2020) Thermal Performance Enhancement in Flat Plate Solar Collector Solar Water Heater: A Review. Processes 8:7, pages 756.
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Naveen Joshy, Mohammadhossein Hajiyan, Abu Raihan Mohammad Siddique, Syeda Tasnim, Hari Simha & Shohel Mahmud. (2020) Experimental investigation of the effect of vibration on phase change material (PCM) based battery thermal management system. Journal of Power Sources 450, pages 227717.
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Gopal Nandan. 2020. Advances in Solar Power Generation and Energy Harvesting. Advances in Solar Power Generation and Energy Harvesting 137 148 .
M Ijaz Khan, Sumaira Qayyum, Shahid Farooq, T Hayat & A Alsaedi. (2019) Transportation of activation energy in the Oldroyd-B nanofluid by considering double stratification over a surface with variable thickness. Pramana 93:4.
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Santosh Kumar Mishra, H. Chandra & Arun Arora. (2019) Effect of velocity and rheology of nanofluid on heat transfer of laminar vibrational flow through a pipe under constant heat flux. International Nano Letters 9:3, pages 245-256.
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Milad Kelidari & Ali Jabari Moghadam. (2019) Effects of Fe3O4/Water Nanofluid on the Efficiency of a Curved Pipe. Journal of Thermal Science and Engineering Applications 11:4.
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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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K. R. MISHRA SANTOSH, H. CHANDRA & ARORA ARUN. (2019) NUMERICAL INVESTIGATION OF THE EFFECTS OF VELOCITY AND PARTICLE CONCENTRATION ON HEAT TRANSFER OF VIBRATIONAL FLOW OF NON-NEWTONIAN NANOFLUID. i-manager’s Journal on Mathematics 8:1, pages 34.
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Jizu Lv, Chengzhi Hu, Minli Bai, Liangyu Li, Lin Shi & Dongdong Gao. (2019) Visualization of SiO2-water nanofluid flow characteristics in backward-facing step using PIV. Experimental Thermal and Fluid Science 101, pages 151-159.
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Shao-Wen Chen, Fang-Chin Liu, Hsiao-Jou Lin, Pei-Syuan Ruan, Yu-Ting Su, Yu-Chi Weng, Jong-Rong Wang, Jin-Der Lee & Wei-Keng Lin. (2018) Experimental test and empirical correlation development for heat transfer enhancement under ultrasonic vibration. Applied Thermal Engineering 143, pages 639-649.
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Peng Wang, Kaihong Han, Sungmin Yoon, Yuebin Yu & Mingsheng Liu. (2018) The gas-liquid two-phase flow in reciprocating enclosure with piston cooling gallery application. International Journal of Thermal Sciences 129, pages 73-82.
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TVR Sekhar, Gopal Nandan, Ravi Prakash & Marisamy Muthuraman. (2018) Investigations on Viscosity and Thermal Conductivity of Cobalt oxide- water Nano fluid. Materials Today: Proceedings 5:2, pages 6176-6182.
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A. Hosseinian, A.H. Meghdadi Isfahani & E. Shirani. (2018) Experimental investigation of surface vibration effects on increasing the stability and heat transfer coeffcient of MWCNTs-water nanofluid in a flexible double pipe heat exchanger. Experimental Thermal and Fluid Science 90, pages 275-285.
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Jizu Lv, Peng Wang, Minli Bai, Gang Li & Ke Zeng. (2017) Experimental visualization of gas-liquid-solid three-phase flow during reciprocating motion. Experimental Thermal and Fluid Science 80, pages 155-167.
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F. Ilami Doshmanziari, A. E. Zohir, H. Ramezani Kharvani, D. Jalali-Vahid & M. R. Kadivar. (2015) Characteristics of heat transfer and flow of Al2O3/water nanofluid in a spiral-coil tube for turbulent pulsating flow. Heat and Mass Transfer 52:7, pages 1305-1320.
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Gianluca Coccia, Giovanni Di Nicola, Laura Colla, Laura Fedele & Mauro Scattolini. (2016) Adoption of nanofluids in low-enthalpy parabolic trough solar collectors: Numerical simulation of the yearly yield. Energy Conversion and Management 118, pages 306-319.
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K.H. Solangi, Ahmad Amiri, M.R. Luhur, Soheila Ali Akbari Ghavimi, Mohd Nashrul Mohd Zubir, S.N. Kazi & A. Badarudin. (2016) Experimental investigation of the propylene glycol-treated graphene nanoplatelets for the enhancement of closed conduit turbulent convective heat transfer. International Communications in Heat and Mass Transfer 73, pages 43-53.
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K. H. Solangi, Ahmad Amiri, M. R. Luhur, Soheila Ali Akbari Ghavimi, S. N. Kazi, A. Badarudin & Mohd Nashrul Mohd Zubir. (2016) Experimental investigation of heat transfer performance and frictional loss of functionalized GNP-based water coolant in a closed conduit flow. RSC Advances 6:6, pages 4552-4563.
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Mohammad Mehrali, Emad Sadeghinezhad, Marc A. Rosen, Amir Reza Akhiani, Sara Tahan Latibari, Mehdi Mehrali & Hendrik Simon Cornelis Metselaar. (2015) Heat transfer and entropy generation for laminar forced convection flow of graphene nanoplatelets nanofluids in a horizontal tube. International Communications in Heat and Mass Transfer 66, pages 23-31.
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