1 |
Global sensitivity analysis of borehole thermal energy storage efficiency for seventeen material, design and operating parameters Woloszyn J Renewable Energy, 157, 545, 2020 |
2 |
Evaluation of temperature profiling quality in determining energy efficiencies of borehole heat exchangers Shwa T, Sojczynska A, Rosen MA, Kowalski T Geothermics, 78, 129, 2019 |
3 |
Effects of solar field design on the energy, environmental and economic performance of a solar district heating network serving Italian residential and school buildings Rosato A, Ciervo A, Ciampi G, Sibilio S Renewable Energy, 143, 596, 2019 |
4 |
Performance evaluation of an industrial borehole thermal energy storage (BTES) project - Experiences from the first seven years of operation Nilsson E, Rohdin P Renewable Energy, 143, 1022, 2019 |
5 |
A solar assisted seasonal borehole thermal energy system for a non-residential building in the Mediterranean area Panno D, Buscemi A, Beccali M, Chiaruzzi C, Cipriani G, Ciulla G, Di Dio V, Lo Brano V, Bonomolo M Solar Energy, 192, 120, 2019 |
6 |
Towards achieving net-zero energy communities: Investigation of design strategies and seasonal solar collection and storage net-zero Hachem-Vermette C, Guarino F, La Rocca V, Cellura M Solar Energy, 192, 169, 2019 |
7 |
Environmental and economic assessment of borehole thermal energy storage in district heating systems Welsch B, Gollner-Volker L, Schulte DO, Bar K, Sass I, Schebek L Applied Energy, 216, 73, 2018 |
8 |
Global sensitivity analysis of borehole thermal energy storage efficiency on the heat exchanger arrangement Woloszyn J Energy Conversion and Management, 166, 106, 2018 |
9 |
Solar district heating with underground thermal energy storage: Pathways to commercial viability in North America Reed AL, Novelli AP, Doran KL, Ge S, Lu N, McCartney JS Renewable Energy, 126, 1, 2018 |
10 |
Borehole thermal energy storage systems under the influence of groundwater flow and time-varying surface temperature Nguyen A, Pasquier P, Marcotte D Geothermics, 66, 110, 2017 |