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混合热泵占比与建筑围护结构改造率对德国低压电网负荷渗透的影响
Impact of hybrid heat pump shares and building envelope retrofit rates on load penetration in German low-voltage grids
| 作者 | Fabian Wüllhorst · Sebastian Schwarz · Nico Fuchs · Laura Maier · Antonello Monti · Dirk Muller |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 388 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 | Comparison of three design methods to avoid low-voltage grid operation issues. |
语言:
中文摘要
摘要 本文探讨了低碳技术(如热泵、电动汽车、光伏装置和电池储能系统)在住宅领域日益广泛的应用对现有低压电网运行所带来的挑战。研究重点是采用空气源热泵实现建筑供暖系统的电气化,这在寒冷天气期间可能显著增加电力峰值负荷。为减轻电网加强的需求,本研究分析并讨论了两种关键策略:通过建筑围护结构改造以降低热负荷,以及采用配备化石燃料备用加热器的混合热泵以减少电力负荷。在此背景下,本文全面研究了在不同低碳技术渗透情景下,提高建筑围护结构改造率和混合热泵占比如何缓解典型德国郊区低压电网中电网加强的需求。作者将详细的建筑能源系统模拟与电力潮流计算相结合,以评估不同本地变电站/变压器规模下关键电网运行参数所受影响。为考虑低压电网内建筑和技术配置的不确定性,研究采用了大量的蒙特卡洛模拟方法。结果量化了建筑围护结构改造和混合热泵系统在减少变压器更换及其他电网加强需求方面的有效性。根据不同的低碳技术组合,当混合热泵占比和建筑围护结构改造率达到40%至100%时,即可满足所需最小变压器容量的要求。研究结果为未来能源政策制定和电网规划决策提供了有益参考,有助于以成本效益的方式将低碳技术整合到低压电网之中。
English Abstract
Abstract This paper addresses the challenges posed by the increasing deployment of low-carbon technologies—such as heat pumps, electric vehicles, photovoltaic units, and battery storage units—on the operation of existing low-voltage grids in the residential sector. The focus is on the electrification of building heating systems using air-source heat pumps that can significantly elevate electrical peak loads during cold weather periods. To mitigate the need for grid reinforcements, this research work analyzes and discusses two key strategies: building envelope retrofits to reduce thermal loads and the use of hybrid heat pumps with fossil-fuel backup heaters to reduce electrical loads. In this light, this study comprehensively investigates how increased building envelope retrofit rate and hybrid heat pump share can alleviate the need for grid reinforcements in typical suburban German low-voltage grids under various low-carbon technology penetration scenarios. The authors couple detailed building energy system simulations with electrical power flow calculations to assess the impact on key grid operation parameters for different local substation/transformer sizes. To account for uncertainties in building and technology assignments within the low-voltage grid, extensive Monte Carlo simulations are employed. The results quantify the efficacy of building envelope retrofits and hybrid heat pump systems in reducing the need for transformer replacement and further grid reinforcement. Depending on the low-carbon technology portfolio, hybrid heat pump shares and building envelope retrofit rates between 40 % and 100 % are sufficient to achieve the minimum required transformer size. The findings provide insights to guide future energy policy and grid planning decisions, enabling the cost-effective integration of low-carbon technologies into low-voltage grids.
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SunView 深度解读
该研究揭示低压配电网在热泵、光伏、储能协同场景下的负荷特性,对阳光电源ST系列储能变流器和PowerTitan系统具有重要价值。混合热泵削峰策略与我司储能系统形成互补:建筑改造降低热负荷,储能系统平抑光伏波动并承担电气削峰。建议在iSolarCloud平台集成建筑热负荷预测模型,结合GFM控制技术优化储能系统在冷热电联供场景的调度策略,为德国等欧洲市场提供光储充一体化解决方案,减少变压器增容需求,提升配电网低碳技术承载力。