Speed of reaching the full potential heat capacity of a basalt product: Mathematical model based on experimental results

Journal of Energy Storage - Tập 64 - Trang 107026 - 2023
Karin Rindt1, Lukáš Pilař1, František Hrdlička1
1Department of Energy Engineering, Czech Technical University in Prague, Prague, Czech Republic

Tài liệu tham khảo

IEA, 2018 IEA, 2016 EUTIT, 2021 Rindt, 2022, Speed of reaching the full potential heat capacity of a basalt product: Experimental results Waples, 2004, A review and evaluation of specific heat capacities of rocks, minerals, and subsurface fluids. Part 1: Minerals and nonporous rocks, Nat. Resour. Res., 13, 97, 10.1023/B:NARR.0000032647.41046.e7 Becattini, 2017, Experimental investigation of the thermal and mechanical stability of rocks for high-temperature thermal-energy storage, Appl. Energy, 203, 373, 10.1016/j.apenergy.2017.06.025 Martin, 2014, Screening and analysis of potential filler materials for molten salt thermocline storages, 10.1115/ES2014-6493 Hartlieb, 2016, Thermo-physical properties of selected hard rocks and their relation to microwave-assisted comminution, Miner. Eng., 91, 34, 10.1016/j.mineng.2015.11.008 Nahhas, 2019, Experimental investigation of basalt rocks as storage material for high-temperature concentrated solar power plants, Renew. Sustain. Energy Rev., 110, 226, 10.1016/j.rser.2019.04.060 1998, Statistische und numerische Methoden der Datenanalyse