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THERMAL ENERGY STORAGE USING PARAFFIN WAX

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THERMAL ENERGY STORAGE USING PARAFFIN WAX ( thermal-energy-storage-using-paraffin-wax )

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cylindrical container. Journal of Electrical Systems and Information Technology, 4(1), 18- 33. Teng, T. P., & Yu, C. C. (2012). Characteristics of phase-change materials containing oxide nano-additives for thermal storage. Nanoscale research letters, 7(1), 611. Ukrainczyk, N., Kurajica, S., & Šipušić, J. (2010). Thermophysical comparison of five commercial paraffin waxes as latent heat storage materials. Chemical and biochemical engineering quarterly, 24(2), 129-137. Ultrasonics, B. (2001). Digital Sonifier Models 250 & 450 User’s Manual, Branson Ultrasonics Corporation. Wang, J., Xie, H., & Xin, Z. (2009). Thermal properties of paraffin based composites containing multi-walled carbon nanotubes. Thermochimica Acta, 488(1), 39-42. Wang, J., Xie, H., Li, Y., & Xin, Z. (2010). PW based phase change nanocomposites containing γ-Al2O3. Journal of Thermal Analysis and Calorimetry, 102(2), 709-713. Warzoha, R. J., & Fleischer, A. S. (2014). Improved heat recovery from paraffin-based phase change materials due to the presence of percolating graphene networks. International Journal of Heat and Mass Transfer, 79, 314-323. Weinstein, R. D., Kopec, T. C., Fleischer, A. S., D’Addio, E., & Bessel, C. A. (2008). The experimental exploration of embedding phase change materials with graphite nanofibers for the thermal management of electronics. Journal of Heat Transfer, 130(4), 042405. Wu, S., Zhu, D., Zhang, X., & Huang, J. (2010). Preparation and melting/freezing characteristics of Cu/paraffin nanofluid as phase-change material (PCM). Energy & fuels, 24(3), 1894-1898. Wu, S. Y., Tong, X., Nie, C. D., Peng, D. Q., Gong, S. G., & Wang, Z. Q. (2016). The effects of various carbon nanofillers on the thermal properties of paraffin for energy storage applications. Journal of Thermal Analysis and Calorimetry, 124(1), 181-188. 83

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