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利用纳米材料提升熔盐储热性能的研究进展
Research progress on improving the thermal storage performance of molten salt by nanomaterials
| 作者 | H.C.Wan · J.W.Ta · Y.K.Wan · Y.D.Wan · Y.S.Li |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 299 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 | 熔盐热储能技术 可扩展性 长循环寿命 安全稳定性 储能解决方案 |
语言:
中文摘要
摘要 由于具有可扩展性、长循环寿命以及固有的安全性和稳定性,熔盐储热技术被广泛认为是先进储能解决方案中的领先候选技术。该技术在余热利用、区域供热系统、火电机组调频与削峰填谷以及太阳能热发电等多种应用中已展现出显著潜力。熔盐储热系统的商业化因其优异的热性能和独特的热物理特性,能够提高能源利用效率与可持续性,从而推动能源解决方案的创新。将纳米颗粒分散到熔盐中以增强其储热能力,形成可提高储能应用效率的熔盐纳米流体,这一方法近年来吸引了越来越多的研究关注。本文系统综述了熔盐纳米流体的制备技术以及常用熔盐体系的热物理特性。除了详细阐述用于探究这些性能提升机制的分子动力学模拟外,我们还阐明了当前关于熔盐热物理性能改善的最新作用机理。本文还重点围绕三种典型纳米材料在提升熔盐热性能方面的研究进展进行了评述,特别强调了这些材料对导热系数和比热容的影响。最后,我们分析了该领域目前面临的主要挑战,并对未来的发展趋势和研究方向进行了展望。
English Abstract
Abstract Due to its scalability, long cycle life, and inherent safety and stability, molten salt thermal storage technology is widely regarded as a leading candidate for advanced energy storage solutions . This technique has demonstrated significant potential in various applications, including waste heat utilization, district heating systems , frequency regulation and peak shaving for thermal power units, and solar thermal energy generation. The commercialization of molten salt thermal storage systems enhances energy efficiency and sustainability due to their superior thermal performance and unique thermophysical characteristics, driving innovation in energy solutions. Dispersing nanoparticles into molten salt enhances thermal storage capacity, creating molten salt nanofluids that improve efficiency in energy storage applications , and this issue has attracted more and more study interest. In this paper, we give a thorough rundown of the production techniques for molten salt nanofluids as well as the thermophysical characteristics of commonly utilized molten salt systems. Along with a thorough explanation of molecular dynamics simulations that look into these enhancements, we also clarify the most recent mechanisms underlying the improvement of thermophysical characteristics in molten salts. The review also examines the advancements made in enhancing the thermal characteristics of molten salts using three typical nanomaterials , with an emphasis on how these materials affect thermal conductivity and specific heat capacity . We conclude by examining the difficulties that this sector is currently facing and provide a prediction for future development trends and research avenues.
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SunView 深度解读
纳米材料强化熔融盐储热技术对阳光电源ST系列储能系统及PowerTitan产品具有重要应用价值。通过纳米流体提升比热容和导热系数,可优化储能系统热管理性能,提高能量密度和循环效率,特别适用于调峰调频场景。该技术与阳光电源PCS热控制策略结合,可提升系统安全性和长周期运行稳定性,为大规模储能电站和光热发电配套储能提供技术创新方向,支撑iSolarCloud平台的热管理预测性维护功能开发。