Flexible CO2-plume geothermal (CPG-F): Using geologically stored CO2 to provide dispatchable power and energy storageM. Fleming, B. Adams, J. Ogland-Hand, J. Bielicki, T. Kuehn, M. Saar2022 Peer-ReviewedEnergy Conversion and Management 253 URLDOI: 10.1016/j.enconman.2021.115082[Cite]View Abstract
Heat depletion in sedimentary basins and its effect on the design and electric power output of CO2 Plume Geothermal (CPG) systemsB. Adams, D. Vogler, T. Kuehn, J. Bielicki, N. Garapati, M. Saar2021 Peer-ReviewedRenewable Energy 172, 1393-1403 URLDOI: 10.1016/j.renene.2020.11.145[Cite]View Abstract
Increased Power Generation due to Exothermic Water Exsolution in CO2 Plume Geothermal (CPG) Power PlantsM. Fleming, B. Adams, T. Kuehn, J. Bielicki, M. Saar2020 Peer-ReviewedGeothermics 88 URLDOI: 10.1016/j.geothermics.2020.101865[Cite]View Abstract
Combining brine or CO2 geothermal preheating with low-temperature waste heat: A higher-efficiency hybrid geothermal power systemN. Garapati, B. Adams, M. Fleming, T. Kuehn, M. Saar2020 Peer-ReviewedJournal of CO2 Utilization 42 URLDOI: 10.1016/j.jcou.2020.101323[Cite]View Abstract
An analysis of the demonstration of a carbon dioxide based thermosiphon at the SECARB Cranfield site.Adams, B.M., Fleming, M.R., Garapati, N., Saar, M.O., Kuehn, T.H.2018Geothermics[Cite]View Abstract
A Hybrid Geothermal Energy Conversion Technology - A Potential Solution for Production of Electricity from Shallow Geothermal ResourcesN. Garapati, B. Adams, J. Bielicki, P. Schaedle, J. Randolph, T. Kuehn, M. Saar2017 Peer-Reviewed URLDOI: 10.1016/j.egypro.2017.03.1852[Cite]View Abstract
Economies of Scale for Producing Geothermal Energy Using Sequestered Carbon DioxideBiellicki, J.M., Taff, S., Choi, H., Jamiyuranson, B., Saar, M.O., Kuehn, T.H., Ogland-Hand, J.2017Unknown Source[Cite]View Abstract
A comparison of electric power output of CO2 Plume Geothermal (CPG) and brine geothermal systems for varying reservoir conditionsB. Adams, T. Kuehn, J. Bielicki, J. Randolph, M. Saar2015 Peer-ReviewedApplied Energy 140, 365-377 URLDOI: 10.1016/j.apenergy.2014.11.043[Cite]View Abstract