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Nguồn tham khảo
Tài liệu tham khảo | Loại | Chi tiết |
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[1] Viktoria Martin, Bo He, Fredrik Setterwall. Direct contact PCM–water cold storage. Applied Energy 87, 2010 | Khác | |
[2] Benjamin L. Ruddell, Francisco Salamanca, Alex Mahalov. Reducing a semiarid city’s peak electrical demand using distributed cold thermal energy storage. Applied Energy 134, 2014 | Khác | |
[3] H.S. Bao, R.Z. Wang, R.G. Oliveira, T.X. Li. Resorption system for cold storage and long-distance refrigeration. Applied Energy 93, 2012 | Khác | |
[4] Xiaolin Wang, Mike Dennis. Characterisation of thermal properties and charging performance of semi-clathrate hydrates for cold storage applications.Applied Energy 167, 2016 | Khác | |
[5] Yingming Xie, Gang Li a, Daoping Liu a, Ni Liu a, Yingxia Qi a, Deqing Liang b, Kaihua Guo b, Shuanshi Fan. Experimental study on a small scale of gas hydrate cold storage apparatus. Applied Energy 87, 2010 | Khác | |
[6] X.J. Shi, P. Zhang. A comparative study of different methods for the generation of tetra-n-butyl ammonium bromide clathrate hydrate slurry in a cold storage air- conditioning system. Applied Energy 112, 2013 | Khác | |
[7] X.Q. Zhai, X.L. Wang, T. Wang, R.Z. Wang. A review on phase change cold storage in air-conditioning system: Materials and applycation. Renewable and sustainable Energy Review. 22(2013) 108-120 | Khác | |
[8] Xiwen Cheng, Xiaoqiang Zhai. Thermal performance analysis and optimization of a cascaded packed bed cool thermal energy storage unit using multiple phase change materials. Applied Energy 215, 2018 | Khác | |
[9] E. Oró, A. de Gracia, A. Castell, M.M. Farid, L.F. Cabeza. Review on phase change materials (PCMs) for cold thermal energy storage applications. Applied Energy 99, 2012 | Khác | |
[10] Qinghua Yu, Fideline Tchuenbou-Magaia, Bushra Al-Duri, Zhibing Zhang, Yulong Ding, Yongliang Li. Thermo-mechanical analysis of microcapsules containing phase change materials for cold storage. Applied Energy 211, 2018 | Khác | |
[11] Shengchun Liua, Hailong Lia, Mengjie Song, Baomin Daia, Zhili Sun. Impacts on the solidification of water on plate surface for cold energy storage using ice slurry. Applied Energy xxx (xxxx) | Khác | |
[12] A. Lúpez-Navarro, J. Biosca-Taronger, J.M. Corberỏn, C. Peủalosa, A. Lỏzaro, P. Dolado, J. Payá. Performance characterization of a PCM storage tank. Applied Energy 119, 2014 | Khác | |
[13] Tadafumi Daitoku, Yoshio Utaka. Separation characteristics of clathrate hydrates from a cooling plate for efficient cold energy storage. Applied Energy 87, 2010 | Khác | |
[14] Lucio Melone, Lina Altomare, Alberto Cigada, Luigi De Nardo. Phase change material cellulosic composites for the cold storage of perishable products: From material preparation to computational evaluation. Applied Energy 89, 2012 | Khác | |
[15] Nuno Vitorino, João C.C. Abrantes, Jorge Ribeiro Frade. Gelled graphite/gelatin composites for latent heat cold storage. Applied Energy 104, 2013 | Khác | |
[16] M.D. Murphy, M.J. O’Mahony, J. Upton. Comparison of control systems for the optimisation of ice storage in a dynamic real time electricity pricing environment. Applied Energy 149, 2015 | Khác | |
[17] Jing Pu, Guilian Liu, Xiao Feng. Cumulative exergy analysis of ice thermal storage air conditioning system. Applied Energy 93, 2012 | Khác | |
[18] Yuehong Bi, Tingwei Guo, Liang Zhang, Lingen Chen, Fengrui Sun. Entropy generation minimization for charging and discharging | Khác | |
[19] Changjiang Wang, Zitao He, Hailong Li, Ronald Wennerstern, Qie Sun. Evaluation on performance of a phase change material based cold storage house | Khác |
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