THERMAL ENERGY STORAGE USING PARAFFIN WAX

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References Agyenim, F., Eames, P., & Smyth, M. (2009). A comparison of heat transfer enhancement in a medium temperature thermal energy storage heat exchanger using fins. Solar Energy, 83(9), 1509-1520. Akgün, M., Aydın, O., & Kaygusuz, K. (2008). Thermal energy storage performance of paraffin in a novel tube-in-shell system. Applied Thermal Engineering, 28(5), 405-413. Al-Abidi, A., Mat, S., Sopian, K., Sulaiman, Y., & Mohammad, A. (2016). Heat transfer enhancement for PCM thermal energy storage in triplex tube heat exchanger. Heat Transfer Engineering, 37(7-8), 705-712. Al-Shannaq, R., Kurdi, J., Al-Muhtaseb, S., Dickinson, M., & Farid, M. (2015). Supercooling elimination of phase change materials (PCMs) microcapsules. Energy, 87, 654-662. Angayarkanni, S. A., & Philip, J. (2015). Review on thermal properties of nanofluids: recent developments. Advances in colloid and interface science, 225, 146-176. Angayarkanni, S. A., & Philip, J. (2015). Thermal conductivity measurements in phase change materials under freezing in presence of nanoinclusions. Journal of Applied Physics, 118(9), 094306. Barreneche, C., Navarro, M. E., Cabeza, L. F., & Fernández, A. I. (2015). New database to select phase change materials: Chemical nature, properties, and applications. Journal of Energy Storage, 3, 18-24. Butt, H. J., Graf, K., & Kappl, M. (2003). Physics and chemistry of interfaces. John Wiley & Sons. Choi, S. U., & Eastman, J. A. (1995). Enhancing thermal conductivity of fluids with nanoparticles (No. ANL/MSD/CP--84938; CONF-951135--29). Argonne National Lab., IL (United States). 76

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