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季节性太阳能吸收式储能系统全生命周期环境影响与能源利用评估
Assessment of full life cycle environmental impact and energy utilization in an interseasonal solar absorption energy storage system
| 作者 | Huijie Zhu · Yuehong Biab |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 295 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 | Designed an interseasonal solar-powered absorption [energy storage system](https://www.sciencedirect.com/topics/engineering/energy-storage-system "Learn more about energy storage system from ScienceDirect's AI-generated Topic Pages"). |
语言:
中文摘要
摘要 在太阳能应用领域,可靠且高效的储能系统的进步对于协调太阳能供应与实际用能需求具有关键作用。基于吸收式储能原理,本研究设计了一种季节性太阳能吸收式储能供暖系统(ISAES)。该系统将夏季太阳能储存用于冬季室内供暖,减少夏季太阳能的浪费,实现削峰填谷。本文详细阐述了ISAES系统的构成及工作原理,建立了各组件的MATLAB模型,分析了系统的动态特性,并基于生命周期评价(LCA)理论,对系统开展了全面的生命周期分析,重点考察其可持续性影响与资源利用情况。分析过程中,将ISAES系统与燃气锅炉(GFB)系统在生产、运输、运行和废弃四个阶段进行了对比。研究结果表明,该系统实现了150.78 kWh/m³的储能密度和0.165的结晶率。相较于传统的显热储能和潜热储能方式,该系统的储能密度分别提高了1.88~5倍和1.82倍。此外,在整个生命周期内,与GFB系统相比,ISAES系统使环境影响降低了37.87%,能源消耗减少了62.85%。具体而言,全球变暖潜值(GWP)下降了63.18%,酸化潜值(AP)降低了35.2%,可吸入颗粒物排放潜值(REP)减少了25.12%。进一步对两种系统的综合效益进行分析表明,ISAES系统具有更优的整体效益。
English Abstract
Abstract In the realm of solar energy applications, the advancement of reliable and efficient energy storage systems plays a pivotal part in aligning solar energy availability with consumption requirements. Based on the principle of absorption energy storage, this study designs an interseasonal solar absorption energy storage heating system (ISAES). The system stores summer solar energy for winter indoor heating, reducing solar energy wastage during summer and achieving peak-shaving and valley-filling. This paper elaborates on the composition and working principles of the ISAES system, establishes MATLAB models of its components, and analyzes the dynamic characteristics, and performs comprehensive life cycle analyses, focusing on sustainability impacts and resource usage, grounded in the principles of Life Cycle Assessment (LCA) theory. The analysis compares the ISAES system with a gas-fired boiler (GFB) system across the stages of production, transportation, operation, and disposal. The findings indicate the system attains a storage capacity for energy of 150.78 kWh/m 3 and a crystallization rate of 0.165. Compared with conventional sensible heat storage and latent heat storage , the storage density of the system is increased by 1.88 ∼ 5 times and 1.82 times, respectively. In addition, over the lifecycle, compared to the GFB system, the ISAES system reduces environmental impact by 37.87 % and energy consumption by 62.85 %. Specifically, global warming potential (GWP) decreases by 63.18 %, acidification potential (AP) by 35.2 %, and respirable particulate matter potential (REP) by 25.12 %. Furthermore, an analysis of the comprehensive benefits of both systems reveals that the ISEAS system boasts superior overall benefits.
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SunView 深度解读
该跨季节太阳能吸收储能系统(ISAES)对阳光电源ST系列储能变流器和PowerTitan储能系统具有重要参考价值。其150.78 kWh/m³的储能密度较传统显热/潜热储能提升1.82-5倍,为我司开发高密度长时储能解决方案提供新思路。系统实现夏季太阳能跨季存储用于冬季供暖,配合SG系列光伏逆变器可构建季节性能源管理系统,全生命周期较燃气锅炉减少62.85%能耗和37.87%环境影响,契合我司iSolarCloud平台的全生命周期碳追踪功能,可拓展至工商业储能削峰填谷场景应用。