September 2016

Journal

Thermal Analysis of Near-Isothermal Compressed Gas Energy Storage System

By:
Odukomaiya, Adewale O; Abuheiba, Ahmed G; Gluesenkamp, Kyle R; Abdelaziz, Omar A; Jackson, Roderick K; Daniel, Claus ; Graham, Samuel; Mehdizadeh Momen, Ayyoub
Journal Name:
Applied Energy
Page Number:
948-960
Volume:
179
Issue Number:
N/A
Publication Date:
September 2016
View DOI Listing:
https://doi.org/10.1016/j.apenergy.2016.07.059

Abstract

In this paper, alternative system configurations for a novel Ground-Level Integrated Diverse Energy Storage (GLIDES) system, which can store energy via input of electricity and heat and deliver dispatchable electricity, is presented. The proposed system is low-cost and hybridizes compressed air and pumped hydro storage approaches that will allow for the off-peak storage of intermittent renewable energy for use during peak times. This study reveals that implementing direct-contact low grade heat exchange via sprayed falling droplets to cool the gas during charging (compression) and warm the gas during discharging (expansion) can be achieved through a secondary recirculating loop of liquid. This study shows that if the recirculating liquid loop is pre-conditioned with waste-heat prior to spraying during gas expansion and considering all the round trip conversion losses from standard 120 V 60 HZ electricity input and output with utilization of low grade heat at 90C the alternative system design leads to a 16% boost in round trip efficiency of the electricity storage to ηelec = 82% with an energy density of ED = 3.59 MJ/m3.


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