← 返回
含水层储能用于南欧地区供热与供冷能源脱碳:动态环境影响评估
Aquifer thermal energy storage for decarbonising heating and cooling energy supply in southern Europe: A dynamic environmental impact assessment
| 作者 | Giovanna Pallott · Elisa Marrasso · Chiara Martone · Nicola Luciano · Gabriela Squarzoni · Carlo Roselli · Maurizio Sasso |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 394 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Aquifer Thermal Energy storage may have significant potential in Southern Europe. |
语言:
中文摘要
摘要 科学研究已证明含水层储能(Aquifer Thermal Energy Storage, ATES)在以供暖需求为主的国家具有巨大潜力。然而,ATES同样有望在支持南欧城市脱碳方面发挥重要作用,为建筑提供可持续的供热与供冷服务。本文提出了一种针对两种不同电动热泵系统在罗马(意大利中部)小型区域供热与供冷网络中应用的对比性环境影响评估方法。传统系统采用空气源热泵,而所提出的方案则采用水-水热泵耦合含水层储能(ATES)的技术。基于动态模拟结果,本研究开展了一项时间依赖型环境分析,考虑了电力系统二氧化碳排放因子以及热泵热源温度在系统十五年生命周期内的时变特性。意大利电网排放因子的预测基于逐小时历史数据,同时采用三种不同的气候文件(分别代表历史、中期和长期未来气候条件)对传统系统进行模拟,以反映气候变化导致的空气源热泵性能变化。时间依赖性评估结果表明,所提出的方案具有显著的环境优势,其总当量变暖影响(Total Equivalent Warming Impact)较传统系统降低了22%。
English Abstract
Abstract Scientific research has demonstrated the potential of Aquifer Thermal Energy Storage (ATES) in heating-dominated countries. Nevertheless, ATES could play a significant role in supporting the decarbonization of cities in Southern Europe by providing sustainable heating and cooling for buildings. This work proposes a comparative environmental impact assessment of two alternative electric-driven heat pumps activating a small-scale district heating and cooling network in Rome (Central Italy). The traditional system is an air-source heat pump, while the proposed solution includes a water-to-water heat pump coupled with ATES. Based on the results of dynamic simulations, a time-dependent environmental analysis is conducted, accounting for the temporal variability of the carbon dioxide emission factor of the power grid and the heat pumps' heat source temperature over the system's fifteen-year lifetime. The forecast of the Italian power grid emission factor is based on hourly historical data, while three different climate files, representing historical, mid-term, and long-term future climatic conditions, are used to simulate the traditional system to account for the variability in air-source heat pump performance due to climate change. The results from the time-dependent assessment highlight the environmental benefits of the proposed solution, which exhibits a 22 % lower Total Equivalent Warming Impact compared to the traditional system.
S
SunView 深度解读
该ATES地热储能技术为阳光电源储能系统拓展季节性储能应用提供重要参考。可结合ST系列PCS与PowerTitan储能系统,开发冷热电三联供解决方案:利用热泵技术实现地下含水层冷热储存,配合光伏发电与电储能系统形成多能互补架构。研究显示的22%碳排放降低潜力,验证了储能系统在建筑供冷供热领域的减碳价值。建议将该技术与iSolarCloud平台结合,开发针对南欧及类似气候区域的智慧能源管理系统,通过动态碳排放因子优化充放策略,拓展阳光电源在区域供能市场的应用场景。