Ghalambaz, M.; Mehryan, S.A.M.; Ayoubloo, K.A.; Hajjar, A.; El Kadri, M.; Younis, O.; Pour, M.S.; Hulme-Smith, C.
Thermal Energy Storage and Heat Transfer of Nano-Enhanced Phase Change Material (NePCM) in a Shell and Tube Thermal Energy Storage (TES) Unit with a Partial Layer of Eccentric Copper Foam. Molecules 2021, 26, 1491.
https://doi.org/10.3390/molecules26051491
AMA Style
Ghalambaz M, Mehryan SAM, Ayoubloo KA, Hajjar A, El Kadri M, Younis O, Pour MS, Hulme-Smith C.
Thermal Energy Storage and Heat Transfer of Nano-Enhanced Phase Change Material (NePCM) in a Shell and Tube Thermal Energy Storage (TES) Unit with a Partial Layer of Eccentric Copper Foam. Molecules. 2021; 26(5):1491.
https://doi.org/10.3390/molecules26051491
Chicago/Turabian Style
Ghalambaz, Mohammad, Seyed Abdollah Mansouri Mehryan, Kasra Ayoubi Ayoubloo, Ahmad Hajjar, Mohamad El Kadri, Obai Younis, Mohsen Saffari Pour, and Christopher Hulme-Smith.
2021. "Thermal Energy Storage and Heat Transfer of Nano-Enhanced Phase Change Material (NePCM) in a Shell and Tube Thermal Energy Storage (TES) Unit with a Partial Layer of Eccentric Copper Foam" Molecules 26, no. 5: 1491.
https://doi.org/10.3390/molecules26051491
APA Style
Ghalambaz, M., Mehryan, S. A. M., Ayoubloo, K. A., Hajjar, A., El Kadri, M., Younis, O., Pour, M. S., & Hulme-Smith, C.
(2021). Thermal Energy Storage and Heat Transfer of Nano-Enhanced Phase Change Material (NePCM) in a Shell and Tube Thermal Energy Storage (TES) Unit with a Partial Layer of Eccentric Copper Foam. Molecules, 26(5), 1491.
https://doi.org/10.3390/molecules26051491