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Numerical Investigation of Phase Change Material-Based Heat Storage Unit on Cooling of Mobile Phone

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Pages 494-504 | Published online: 16 Dec 2011

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Jun Zhao, Ningwen Xu, Meiquan Li, Xi Zhang, Zhiqiang Wu, Zhaoyu Xiao, Chen Ma, Haiyu Meng & Shuzhong Wang. (2022) Investigation on Unsteady Phase-Change Heat Transfer Characteristics of Centrifugal Granulated Particles. Heat Transfer Engineering 43:8-10, pages 806-817.
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Hamza Faraji, Mustapha Faraji & Mustapha El Alami. (2021) Numerical Study of the Transient Melting Of Nano-Enhanced Phase Change Material. Heat Transfer Engineering 42:2, pages 120-139.
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Ponnada Srivatsa, Rajesh Baby & Chakravarthy Balaji. (2016) Geometric Optimization of a PCM-Based Heat Sink—A Coupled ANN and GA Approach. Heat Transfer Engineering 37:10, pages 875-888.
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Jinyan Hu, Run Hu, Yongming Zhu & Xiaobing Luo. (2016) Experimental Investigation on Composite Phase-Change Material (CPCM)-Based Substrate. Heat Transfer Engineering 37:3-4, pages 351-358.
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Articles from other publishers (12)

Ch Ravi Shankar & Y. Naresh. (2023) Experimental Investigations on Effect of Orientation on Thermal Performance of a Novel Phase Change Material-Based Heat Sink. Journal of Thermal Science and Engineering Applications 15:9.
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Se Hyun Kim, Seong Hyun Park, Sudhanshu Pandey & Man Yeong Ha. (2023) Effects of fin positioning on the thermal performance of a phase change material–filled heat sink with horizontal fins. Journal of Energy Storage 68, pages 107756.
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Girish Kumar Marri & C. Balaji. (2021) Experimental and numerical investigations on the effect of porosity and PPI gradients of metal foams on the thermal performance of a composite phase change material heat sink. International Journal of Heat and Mass Transfer 164, pages 120454.
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G. Gnaneshwar, G. Sundara Subramanian, N. S. Hari Thiagarajan, Lakshmi Narayanan & D. Senthil Kumar. 2021. Intelligent Manufacturing and Energy Sustainability. Intelligent Manufacturing and Energy Sustainability 579 589 .
Girish Kumar Marri, R. Srikanth & C. Balaji. (2020) Effect of phase change and ambient temperatures on the thermal performance of a solid-liquid phase change material based heat sinks. Journal of Energy Storage 30, pages 101327.
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Lokesh Kalapala & Jaya Krishna Devanuri. (2019) Parametric investigation to assess the melt fraction and melting time for a latent heat storage material based vertical shell and tube heat exchanger. Solar Energy 193, pages 360-371.
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Eren Sevinchan, Ibrahim Dincer & Haoxiang Lang. (2018) A review on thermal management methods for robots. Applied Thermal Engineering 140, pages 799-813.
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Yanlong Han, Weiling Luan, Yifeng Jiang & Xiaoni Zhang. (2016) Protection of electronic devices on nuclear rescue robot: Passive thermal control. Applied Thermal Engineering 101, pages 224-230.
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Yanlong Han, Weiling Luan, Yifeng Jiang & Xiaoni Zhang. (2015) Thermal Control of Electronics for Nuclear Robots via Phase Change Materials. Energy Procedia 75, pages 3301-3306.
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Manish K. Rathod & Jyotirmay Banerjee. (2013) Thermal Performance of a Phase Change Material‐Based Latent Heat Thermal Storage Unit. Heat Transfer—Asian Research 43:8, pages 706-719.
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Jiang Lu, Li-wu Fan, Yi Zeng, Yu-qi Xiao, Xu Xu & Zi-tao Yu. (2014) Effect of the inclination angle on the transient performance of a phase change material-based heat sink under pulsed heat loads倾斜角度对基于相变材料的散热器在脉冲式热负荷作用下瞬时性能的影响. Journal of Zhejiang University SCIENCE A 15:10, pages 789-797.
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Li-Wu Fan, Yu-Qi Xiao, Yi Zeng, Xin Fang, Xiao Wang, Xu Xu, Zi-Tao Yu, Rong-Hua Hong, Ya-Cai Hu & Ke-Fa Cen. (2013) Effects of melting temperature and the presence of internal fins on the performance of a phase change material (PCM)-based heat sink. International Journal of Thermal Sciences 70, pages 114-126.
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