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储能系统技术 储能系统 ★ 5.0

热区的验证与概念化:一种高效利用钻孔储热系统的新方法

Validation and conceptualization of thermal zones: A new method of efficiently utilizing borehole thermal energy storage systems

作者 C.Milla · M.F.Lightston · J.S.Cotto
期刊 Energy Conversion and Management
出版日期 2025年1月
卷/期 第 346 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 Experimental and numerical comparison of single-zone and two-zone BTES field.
语言:

中文摘要

摘要 本研究展示了针对钻孔储热场热损失的调查结果。本工作的目标是探索一种新型的双区钻孔储热场,并将其热损失以及能量和㶲效率与典型的单区串联布置进行比较评估。研究方法包括实验与数值模拟,其中实验结果用于验证钻孔场的三维模型。数值模型进一步用于探究多区钻孔场的概念,量化通过顶部、侧部和底部边界的能量与㶲损失。结果表明,采用双区钻孔场运行方式,其中环形径向第二区以较低的入口温度运行,能够保持中心区域注入热量的品质。双区运行方式在维持较高热效率的同时,对高品质热量的需求更少。双区场的能量效率提高至81%,而典型的单区串联布置钻孔场的效率为60%。在㶲效率方面,双区钻孔场也表现出优势,达到13%,相比之下,典型钻孔场的㶲效率仅为6%。这些发现的意义在于突显了在对分区钻孔场进行充热时,所需高品质热量的减少。研究结果还强调了有必要进一步探索钻孔储热场内同心区域的独立运行,重点关注于维持储存温度的品质。

English Abstract

Abstract This study presents the results of an investigation into the thermal losses from borehole thermal energy storage fields. The objective of this work is to explore a novel two zone borehole thermal energy storage field and evaluate the thermal losses and both energy and exergy efficiencies in comparison to the typical single-zone series arrangement. The methodology includes experimental and numerical investigation, with experimental results used to validate three dimensional models of the borehole field. The numerical models are used to further explore the concept of multi-zone borehole fields, quantifying energy and exergy losses through the top, sides, and bottom boundaries. The results showed that operating a two-zone borehole field, with a concentric radial second zone operating at a lower inlet temperature, maintains the quality of the injected heat in the center zone. The two-zone operation also required less high-quality heat while maintaining an increased thermal efficiency. The energy efficiency of the two-zone field increased to 81 % whereas the typical single zone series arrangement borehole field saw an efficiency of 60 %. Advantages were also seen for the two-zone borehole field with an exergy efficiency of 13 %, compared to the 6 % exergy efficiency of the typical borehole field. These implications of these findings highlight the reduction in required high quality heat when charging a zonal borehole field. The results also highlight the need to explore independent operation of concentric zones within borehole thermal energy storage fields with focus on maintaining the storage temperature quality.
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SunView 深度解读

该双区钻孔热储能技术对阳光电源储能系统具有重要启示。研究显示通过分区温度管理,能量效率从60%提升至81%,㶲效率翻倍至13%。这一理念可应用于ST系列PCS的热管理优化:在PowerTitan等大型储能系统中,采用分区温控策略,核心区维持高温高效运行,外围区低温辅助散热,降低冷却能耗。结合iSolarCloud平台的温度场监测与预测性维护,可实现储能电池热管理的精细化控制,延长电池寿命,提升系统整体能效,减少高品质能量损耗。