981 |
Potential of residential buildings as thermal energy storage in district heating systems - Results from a pilot test Kensby J, Truschel A, Dalenback JO Applied Energy, 137, 773, 2015 |
982 |
Modeling of thermal storage systems in MILP distributed energy resource models Steen D, Stadler M, Cardoso G, Groissbock M, DeForest N, Marnay C Applied Energy, 137, 782, 2015 |
983 |
Embodied energy in thermal energy storage (TES) systems for high temperature applications Miro L, Oro E, Boer D, Cabeza LF Applied Energy, 137, 793, 2015 |
984 |
Parametric studies and optimisation of pumped thermal electricity storage McTigue JD, White AJ, Markides CN Applied Energy, 137, 800, 2015 |
985 |
Design of packed bed thermal energy storage systems for high-temperature industrial process heat Zanganeh G, Pedretti A, Haselbacher A, Steinfeld A Applied Energy, 137, 812, 2015 |
986 |
Energy storage for desalination processes powered by renewable energy and waste heat sources Gude VG Applied Energy, 137, 877, 2015 |
987 |
Non-isothermal crystallization of aqueous nanofluids with high aspect-ratio carbon nano-additives for cold thermal energy storage Fan LW, Yao XL, Wang X, Wu YY, Liu XL, Xu X, Yu ZT Applied Energy, 138, 193, 2015 |
988 |
The effects of radiative heat transfer during the melting process of a high temperature phase change material confined in a spherical shell Archibold AR, Rahman MM, Goswami DY, Stefanakos EK Applied Energy, 138, 675, 2015 |
989 |
Utilization of macro encapsulated phase change materials for the development of thermal energy storage and structural lightweight aggregate concrete Memon SA, Cui HZ, Zhang H, Xing F Applied Energy, 139, 43, 2015 |
990 |
Performance investigation of a novel frost-free air-source heat pump water heater combined with energy storage and dehumidification Wang FH, Wang ZH, Zheng YX, Lin Z, Hao PF, Huan C, Wang T Applied Energy, 139, 212, 2015 |