Rankine Carnot Batteries with the Integration of Thermal Energy Sources: A Review

卡诺循环 工艺工程 热能储存 火用 热能 热的 储能 环境科学 可用能 机械工程 热力学 核工程 电气工程 工程类 功率(物理) 物理
作者
Guido Francesco Frate,Lorenzo Ferrari,Umberto Desideri
出处
期刊:Energies [Multidisciplinary Digital Publishing Institute]
卷期号:13 (18): 4766-4766 被引量:89
标识
DOI:10.3390/en13184766
摘要

This paper provides an overview of a novel electric energy storage technology. The Thermally Integrated Pumped Thermal Electricity Storage (TI-PTES) stores electric energy as thermal exergy. Compared to standard PTES, TI-PTES takes advantage of both electric and low-temperature heat inputs. Therefore, TI-PTES is a hybrid technology between storage and electric production from low-temperature heat. TI-PTES belongs to a technology group informally referred to as Carnot Batteries (CBs). As the TI-PTES grows in popularity, several configurations have been proposed, with different claimed performances, but no standard has emerged to date. The study provides an overview of the component and operating fluid selection, and it describes the configurations proposed in the literature. Some issues regarding the performance, the ratio between thermal and electrical inputs, and the actual TI-PTES utilisation in realistic scenarios are discussed. As a result, some guidelines are defined. The configurations that utilise high-temperature thermal reservoirs are more extensively studied, due to their superior thermodynamic performance. However, low-temperature TI-PTES may achieve similar performance and have easier access to latent heat storage in the form of water ice. Finally, to achieve satisfactory performance, TI-PTES must absorb a thermal input several times larger than the electric one. This limits TI-PTES to small-scale applications.
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