FO105 - FuturEnviro

INVESTIGACIÓN/PROYECTO SAGE4CAN 22 • Arias-Penas, D., Castro-García, M. P., Rey-Ronco, M. A., & Alonso-Sánchez, T. (2015). Determining the thermal diffusivity of the ground based on subsoil temperatures. Preliminary results of an experimental geothermal borehole study Q-THERMIE-UNIOVI. Geothermics, 54, 35–42. https://doi.org/10.1016/j. geothermics.2014.10.006 • Custodio Gimena, E. (2020). Hidrogeología y recursos de agua subterránea en formaciones e islas volcánicas. CETAQUA Barcelona. https://doi.org/10.5821/ ebook-9788498809473 • Ferroukhi, R., Frankl, P., & Adib, R. (2020). Renewable Energy Policies in a Time of Transition: Heating and Cooling. https://www.iea.org/reports/renewableenergy-policies-in-a-time-of-transition-heating-andcooling • García-Gil, A., Abesser, C., Gasco Cavero, S., Marazuela, M. Á., Mateo Lázaro, J., Vázquez-Suñé, E., Hughes, A. G., & Mejías Moreno, M. (2020). Defining the exploitation patterns of groundwater heat pump systems. Science of The Total Environment, 710, 136425. https://doi.org/10.1016/j.scitotenv.2019.136425 • García-Gil, A., Goetzl, G., Klonowski, M. R., Borovic, S., Boon, D. P., Abesser, C., Janza, M., Herms, I., Petitclerc, E., Erlström, M., Holecek, J., Hunter, T., Vandeweijer, V. P., Cernak, R., Mejías Moreno, M., & Epting, J. (2020). Governance of shallow geothermal energy resources. Energy Policy, 138, 111283. https://doi.org/10.1016/j. enpol.2020.111283 • García-Gil, A., Vázquez-Suñe, E., Alcaraz, M. M., Juan, A. S., Sánchez-Navarro, J. Á., Montlleó, M., Rodríguez, G., & Lao, J. (2015). GIS-supported mapping of lowtemperature geothermal potential taking groundwater flow into account. Renewable Energy, 77, 268–278. https://doi.org/10.1016/j.renene.2014.11.096 • Gasco Cavero, S., Lemes Pacheco, G., García-Gil, A., Rodríguez-Martín, J., Expósito, C., Cruz-Pérez, N., & Santamarta, J. C. (2023). The Effect of Pyroclasts in Geothermal Borehole Heat Exchangers Performance on the Volcanic Island of Lanzarote (Canary Islands, Spain). Journal of Sustainability Research, 5(4). https://doi.org/10.20900/jsr20230016 • Gasser, L., Flück, S., Kleingries, M., Meier, C., Bätschmann, M., & Wellig, B. (2017). High efficiency heat pumps for low temperature lift applications. 12th IEA Heat Pump Conference 2017. https://heatpumpingtechnologies.org/publications/o-1-4-5-high-efficiency-heat-pumps-for-low-temperature-lift-applications/ • IEA. (2020). World Energy Statistics and Balances 2020 (database). In International Energy Agency (IEA). • Rey-Ronco, M. A., Castro-García, M. P., Marcos-Robredo, G., & Alonso-Sánchez, T. (2020). Study of shallow subsoil temperature and its relationship to thermal Arias-Penas, D., Castro-García, M. P., Rey-Ronco, M. A., & Alonso-Sánchez, T. (2015). Determining the thermal diffusivity of the ground based on subsoil temperatures. Preliminary results of an experimental geothermal borehole study Q-THERMIE-UNIOVI. Geothermics, 54, 35–42. https://doi.org/10.1016/j. geothermics.2014.10.006 • Custodio Gimena, E. (2020). Hidrogeología y recursos de agua subterránea en formaciones e islas volcánicas. CETAQUA Barcelona. https://doi.org/10.5821/ ebook-9788498809473 • Ferroukhi, R., Frankl, P., & Adib, R. (2020). Renewable Energy Policies in a Time of Transition: Heating and Cooling. https://www.iea.org/reports/renewable-energy-policies-in-a-time-of-transition-heatingand-cooling • García-Gil, A., Abesser, C., Gasco Cavero, S., Marazuela, M. Á., Mateo Lázaro, J., Vázquez-Suñé, E., Hughes, A. G., & Mejías Moreno, M. (2020). Defining the exploitation patterns of groundwater heat pump systems. Science of The Total Environment, 710, 136425. https://doi.org/10.1016/j.scitotenv.2019.136425 • García-Gil, A., Goetzl, G., Klonowski, M. R., Borovic, S., Boon, D. P., Abesser, C., Janza, M., Herms, I., Petitclerc, E., Erlström, M., Holecek, J., Hunter, T., Vandeweijer, V. P., Cernak, R., Mejías Moreno, M., & Epting, J. (2020). Governance of shallow geothermal energy resources. Energy Policy, 138, 111283. https://doi.org/10.1016/j. enpol.2020.111283 • García-Gil, A., Vázquez-Suñe, E., Alcaraz, M. M., Juan, A. S., Sánchez-Navarro, J. Á., Montlleó, M., Rodríguez, G., & Lao, J. (2015). GIS-supported mapping of lowtemperature geothermal potential taking groundwater flow into account. Renewable Energy, 77, 268–278. https://doi.org/10.1016/j.renene.2014.11.096 • Gasco Cavero, S., Lemes Pacheco, G., García-Gil, A., Rodríguez-Martín, J., Expósito, C., Cruz-Pérez, N., & Santamarta, J. C. (2023). The Effect of Pyroclasts in Geothermal Borehole Heat Exchangers Performance on the Volcanic Island of Lanzarote (Canary Islands, Spain). Journal of Sustainability Research, 5(4). https://doi.org/10.20900/jsr20230016 • Gasser, L., Flück, S., Kleingries, M., Meier, C., Bätschmann, M., & Wellig, B. (2017). High efficiency heat pumps for low temperature lift applications. 12th IEA Heat Pump Conference 2017. https://heatpumpingtechnologies.org/publications/o-1-4-5-high-efficiency-heat-pumps-for-low-temperature-lift-applications/ • IEA. (2020). World Energy Statistics and Balances 2020 (database). In International Energy Agency (IEA). • Rey-Ronco, M. A., Castro-García, M. P., MarcosRobredo, G., & Alonso-Sánchez, T. (2020). Study of shallow subsoil temperature and its relationship to thermal diffusivity. Geothermics, 86, 101821. https:// doi.org/10.1016/j.geothermics.2020.101821 • Santamarta Cerezal, J. C. (2017). Tratado de Minería de Recursos Hídricos en Islas Volcánicas Oceánicas. Colegio Oficial de Ingenieros de Minas del Sur de España. https://oa.upm.es/47880/ • Santamarta, J. C., García-Gil, A., Expósito, M. del C., Casañas, E., Cruz-Pérez, N., Rodríguez-Martín, J., Mejías-Moreno, M., Götzl, G., & Gemeni, V. (2021). The clean energy transition of heating and cooling in touristic infrastructures using shallow geothermal energy in the Canary Islands. Renewable Energy, 171, 505–515. https://doi.org/10.1016/j.renene.2021.02.105 Santamarta, J. C., Pacheco, G. L., Rodríguez-Martín, J., del Cristo Expósito, M., García-Gil, A., & Cruz-Pérez, N. (2023). Geothermal Supply System for a Winery on a Volcanic Island (Lanzarote, Canary Islands) (pp. 133– 135). https://doi.org/10.1007/978-3-031-43222-4_29 REFERENCIAS

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