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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 68, 2015 - Issue 8
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Original Articles

CFD Modeling of the Charging and Discharging of a Shell-and-Tube Latent Heat Storage System for High-Temperature Applications

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Pages 813-826 | Received 27 Oct 2014, Accepted 15 Jan 2015, Published online: 05 Jun 2015

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Read on this site (5)

R. Anandalakshmi, Tanmay Basak & Leo Lukose. (2019) Numerical visualization via heatlines for natural convection in porous bodies of rhombic shapes subjected to thermal aspect ratio-based heating of walls. Numerical Heat Transfer, Part A: Applications 76:9, pages 687-711.
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Digant S. Mehta, Bhavesh Vaghela, Manish K. Rathod & Jyotirmay Banerjee. (2019) Heat transfer intensification in horizontal shell and tube latent heat storage unit. Numerical Heat Transfer, Part A: Applications 75:7, pages 489-508.
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Yiqian He, Xingcong Dong & Haitian Yang. (2019) A new adaptive algorithm for phase change heat transfer problems based on quadtree SBFEM and smoothed effective heat capacity method. Numerical Heat Transfer, Part B: Fundamentals 75:2, pages 111-126.
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B. S. Yilbas, M. Khalil Anwar & S. Z. Shuja. (2016) A mobile thermal battery and thermal energy storage enhancement. Numerical Heat Transfer, Part A: Applications 69:11, pages 1297-1309.
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Articles from other publishers (12)

E. Momoniat, C. Harley & R.S. Herbst. (2023) Effects of extended surfaces on heat transfer in buoyancy-driven flow in a square cavity. Results in Engineering 18, pages 101190.
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Sangeeta S. Mundra & Sujit S. Pardeshi. (2022) Analysis of phase change material inside horizontally oriented heat storage unit: A numerical and experimental approach. Case Studies in Thermal Engineering 31, pages 101831.
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Girish Kumar Marri & C. Balaji. (2022) Liquid crystal thermography based study on melting dynamics and the effect of mushy zone constant in numerical modeling of melting of a phase change material. International Journal of Thermal Sciences 171, pages 107176.
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Afrah Awad, Waqar Ahmed & Muayad Waleed. 2021. Emerging Nanotechnologies for Renewable Energy. Emerging Nanotechnologies for Renewable Energy 495 516 .
Qi Li, Chuan Li, Zheng Du, Feng Jiang & Yulong Ding. (2019) A review of performance investigation and enhancement of shell and tube thermal energy storage device containing molten salt based phase change materials for medium and high temperature applications. Applied Energy 255, pages 113806.
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Digant S. Mehta, Karan Solanki, Manish K. Rathod & Jyotirmay Banerjee. (2019) Thermal performance of shell and tube latent heat storage unit: Comparative assessment of horizontal and vertical orientation. Journal of Energy Storage 23, pages 344-362.
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Mohamed Fadl & Philip C. Eames. (2019) Numerical investigation of the influence of mushy zone parameter Amush on heat transfer characteristics in vertically and horizontally oriented thermal energy storage systems. Applied Thermal Engineering 151, pages 90-99.
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S. Saeed Mostafavi Tehrani, Gonzalo Diarce & Robert A. Taylor. (2018) The error of neglecting natural convection in high temperature vertical shell-and-tube latent heat thermal energy storage systems. Solar Energy 174, pages 489-501.
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Muhammad O. Lari & Ahmet Z. Sahin. (2018) Effect of retrofitting a silver/water nanofluid-based photovoltaic/thermal (PV/T) system with a PCM-thermal battery for residential applications. Renewable Energy 122, pages 98-107.
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F. Fornarelli, V. Ceglie, B. Fortunato, S.M. Camporeale, M. Torresi, P. Oresta & A. Miliozzi. (2017) Numerical simulation of a complete charging-discharging phase of a shell and tube thermal energy storage with phase change material. Energy Procedia 126, pages 501-508.
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M.D. Muhammad & O. Badr. (2017) Performance of a finned, latent-heat storage system for high temperature applications. Applied Thermal Engineering 116, pages 799-810.
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Monisha Roy, Pratibha Biswal & Tanmay Basak. (2016) On the finite element based evaluation of Nusselt numbers for curved walls. International Communications in Heat and Mass Transfer 77, pages 123-131.
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