1 |
Thermodynamic and heat-hydrogen transfer analyses of novel multistage hydrogen-alloy sorption heat pump Syed SN, Sharma VK, Emadabathuni AK International Journal of Energy Research, 44(4), 2925, 2020 |
2 |
Stabilization of K2CO3 in vermiculite for thermochemical energy storage Shkatulov AI, Houben J, Fischer H, Huinink HP Renewable Energy, 150, 990, 2020 |
3 |
Pressure boost thermochemical sorption heat pump cycle Gao P, Shao LL, Zhang CL Energy, 169, 1090, 2019 |
4 |
Characterization of transport limitations in SAPO-34 adsorbent coatings for adsorption heat pumps Ammann J, Michel B, Ruch PW International Journal of Heat and Mass Transfer, 129, 18, 2019 |
5 |
Numerical and experimental analysis of a novel heat pump driven sorption storage heater Aydin D, Casey SP, Chen XJ, Riffat S Applied Energy, 211, 954, 2018 |
6 |
Experimental study on sorption and heat transfer performance of NaBr-NH3 for solid sorption heat pipe Yu Y, Wang LW, An GL International Journal of Heat and Mass Transfer, 117, 125, 2018 |
7 |
Sorption heat storage for long-term low-temperature applications: A review on the advancements at material and prototype scale Scapino L, Zondag HA, Van Bael J, Diriken J, Rindt CCM Applied Energy, 190, 920, 2017 |
8 |
Design of serially connected district heating heat pumps utilising a geothermal heat source Jensen JK, Ommen T, Markussen WB, Elmegaard B Energy, 137, 865, 2017 |
9 |
Experimental investigation on a novel solid-gas thermochemical sorption heat transformer for energy upgrade with a large temperature lift Wu S, Li TX, Yan T, Wang RZ Energy Conversion and Management, 148, 330, 2017 |
10 |
Insights from modeling dynamics of water sorption in spherical particles for adsorption heat pumps Radu AI, Defraeye T, Ruch P, Carmeliet J, Derome D International Journal of Heat and Mass Transfer, 105, 326, 2017 |