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储能系统技术 ★ 5.0

集成相变材料储能的第五代区域供热供冷网络:一种动态热经济性分析

A 5th generation district heating cooling network integrated with a phase change material thermal energy storage: A dynamic thermoeconomic analysis

作者 Francesco Calis · Francesco Liberato Cappiello · L.Cimmin · F.P.Cuom · Maria Vicidomini
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 389 卷
技术分类 储能系统技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Novel layout integrating PCM and 5GDHC network and power to thermal strategy.
语言:

中文摘要

摘要 本研究提出了一种新型的第五代区域供热和供冷网络布局,该布局集成了基于相变材料的热能储存系统。所提出的布局包含两个中性环路、热泵以及一个光伏太阳能场,其运行基于一种有效的电转热策略。该系统为位于马德里附近莱加内斯的一个大型购物中心提供能源。其中一个主要创新点在于采用了一种混合储能策略:首先将多余的可再生电力用于充电锂离子电池系统;随后,进一步多余的可再生电力被供给热泵,通过所开发的电转热策略产生适合储存于基于相变材料的新型热储能系统中的热能或冷能。这种混合策略能够最大化可再生电力的自发自用率。仿真模型在TRNSYS环境中构建,依据逐时气象数据模拟系统全年的动态实际运行情况。所建立的模型包含了系统中所有组件的详细动态模型。在此框架下,一个针对相变材料储能装置的新模型被适当地集成到整体仿真模型中。所开发的动态模型还包含一种高效的控制策略,用于管理系统中多个组件的协调运行。此外,模型中引入了适当的热经济性分析方法,旨在计算所提出系统的投资成本、运行成本以及经济盈利能力指标。在该分析中,还考虑了碳税政策对所提出系统的影响。结果表明,该系统取得了令人关注的表现:可再生能源几乎满足了商场88%的负荷需求。然而,较高的初始投资成本导致经济盈利能力较差,投资回收期长达19年。但在实施碳税政策的情况下,这一结果可显著改善:事实上,当碳税水平超过0.21 €/kgCO₂,eq时,简单投资回收期将低于10年。

English Abstract

Abstract This research proposes a novel layout of a 5th generation district heating and cooling network, integrated with a thermal energy storage consisting of phase change materials . The proposed layout includes two neutral rings, heat pumps and a photovoltaic solar field and its operation is based on an effective power to thermal strategy. The proposed system supplies energy to a huge mall located in Leganes near Madrid. One of the main novelties consisting in the use of a hybrid storage strategy. The excess renewable electricity is first used to charge a system of lithium-ion batteries. Then, additional excess renewable electricity is supplied to the heat pumps, producing thermal or cooling energy suitably stored in the novel thermal storage system based on phase change materials, according to the developed power to thermal strategy. This hybrid strategy allows one to maximize the self-consumption of renewable electricity. The simulation model is developed in TRNSYS environment, mimicking the yearly dynamic real operation of the system, based on hourly weather data. The developed model includes detailed dynamic models for all the components included in the system. In this framework, a novel model for the phase change material storage was suitably implemented in the overall simulation model. The developed dynamic model also includes an efficient control strategy to manage the plurality of components included in the system. Finally, a suitable thermoeconomic is included in the model aiming at calculating capital costs, operating costs and economic profitability indexes for the proposed system. In this analysis, the effect of a carbon tax policy for the proposed system is also considered. The proposed system achieves interesting results: renewable energy matches almost 88 % of the load of the mall. On the other hand, the high capital costs determine a poor economic profitability is poor, with a payback period of 19 years. However, this result can be significantly enhanced in case of carbon taxes: in fact for carbon tax value greater than 0.21 €/kgCO 2,eq the simple payback period is lower than 10 years.
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SunView 深度解读

该5GDHC系统结合相变储能的混合策略对阳光电源ST系列储能变流器和PowerTitan系统具有重要参考价值。研究中88%可再生能源自消纳率验证了'电-热'协同策略的有效性,可应用于我司PCS与热泵联合调度场景。相变储能与锂电混合配置思路可启发我司开发多时间尺度储能解决方案,通过iSolarCloud平台实现电储能与热储能的智能协调控制,提升综合能源系统经济性,特别适用于商业综合体等冷热电三联供项目。