Conclusions A novel liquid CO 2 energy storage system with low pressure stores is reported in this paper. The design principle for the newly proposed system is discussed in detail. Thermodynamically parametric analysis is performed to identify the variation of system performance when key operating parameters are changed.
Fig. 1 represents the newly proposed LCES system with low pressure stores. Its main feature is that the sensible and latent cold energies are separately stored. Particularly, the charging and discharging CO 2 is stored in artificial storage tanks at low operating pressure.
As reviewed in the introduction, the main merit of the liquid energy storage systems is their removal of the geographic restrictions of compressed gas energy storage systems. Artificial storage tanks can be thus used to store the liquid working medium, such as the two liquid CO 2 tanks in the proposed LCES system.
A novel liquid CO 2 energy storage system with low pressure stores is proposed. The sensible and latent cold energy of CO 2 after expansion is separately stored. The efficiency and energy density are 51.45% and 22.21 kW h/m3 at design condition. A peak value of efficiency and energy density exists as discharge pressure varies.
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