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储能系统技术 储能系统 ★ 5.0

一种新型液态空气与抽热式组合储能系统的能量、㶲及经济性分析

Energy, exergy, and economic analyses of a novel liquid air and pumped thermal combined energy storage system

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中文摘要

摘要 液态空气储能(LAES)和抽热式储能(PTES)不受地理条件限制且环境友好,具有大规模储能的巨大潜力。LAES与PTES之间的一个关键共性在于两者均需要冷能储存单元,这些单元通常采用易燃易爆的液相烷烃介质或效率较低的固相岩石介质,从而在安全性、环境保护以及能源效率方面带来挑战。本研究提出了一种将LAES与PTES集成的新型储能系统(PT-LAES),有效消除了各自独立冷能储存单元的需求。在储能阶段,PTES中气体膨胀产生的冷能用于LAES的空气液化过程;而在释能阶段,LAES中液态空气所携带的冷能则被用于PTES的低温压缩过程。本文研究了若干关键参数,包括LAES和PTES单元的充放电压力对系统性能的影响,并对PT-LAES系统进行了能量、㶲及经济性分析。结果表明,所提出的PT-LAES系统实现了56.57%的往返效率(RTE),储能密度达到167.53 kWh/m³。与独立运行的系统相比,PT-LAES表现出更优的经济性,投资回收期为7年,30年内的净现值(NPV)达1.872亿美元,平准化度电成本(LCOE)为0.122美元/kWh。

English Abstract

Abstract Liquid air energy storage (LAES) and pumped thermal energy storage (PTES) are geographically unconstrained and environmentally friendly, holding great potential for large-scale energy storage. The key similarity between LAES and PTES is that both systems require cold storage units, which typically use a flammable and explosive liquid-phase alkane medium or an inefficient solid-phase rock medium, posing challenges in terms of safety, environmental protection, and energy efficiency. This study presents a novel energy storage system that integrates LAES and PTES (PT-LAES), effectively eliminating the need for individual cold storage units. During the energy storage phase, the cold energy generated by PTES gas expansion is used for LAES air liquefaction, while during the energy release phase, the cold energy from LAES liquid air is utilized for PTES low-temperature compression. This paper investigates key parameters, including the effects of LAES and PTES unit charging and discharging pressures on system performance. Energy, exergy, and economic analyses of PT-LAES are also conducted. Results indicate that the proposed PT-LAES achieves an RTE of 56.57 % and the energy storage density of 167.53 kWh / m 3 . Compared to stand-alone systems, PT-LAES demonstrates better economics with a payback period of 7 years, an NPV of 187.2 million USD over 30 years, and an LCOE of 0.122 USD / k W h .
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SunView 深度解读

该PT-LAES混合储能技术对阳光电源PowerTitan液冷储能系统具有重要启示。其通过冷能互补消除独立冷储单元的创新思路,可借鉴于ST系列PCS的热管理优化,将充放电过程产生的冷热能梯级利用,提升系统能量密度至167.53kWh/m³。56.57%的往返效率和7年回收期验证了技术经济性,为阳光电源大规模储能项目的成本优化和iSolarCloud平台的能量管理策略提供新方向,特别适用于长时储能场景的系统集成方案开发。