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基于热泵的能源系统热性能分析以满足住宅建筑供暖与制冷需求
Thermal performance analysis of a heat pump-based energy system to meet heating and cooling demand of residential buildings
| 作者 | Arslan Sal · Carlos Ernesto Ugalde Loo |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 383 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 户用光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | A dynamic model of a heat pump-based energy supply technology is developed. |
语言:
中文摘要
摘要 建筑领域对温室气体排放具有显著影响,因此实现供暖与制冷系统的脱碳对于达成碳中和目标至关重要。通过用可逆式热泵(HP)等低碳替代技术取代传统的化石燃料技术,并结合集成热能储存系统,可在高峰时段降低热负荷需求,从而提供运行灵活性,并带来经济效益。鉴于此,本文提出了一种基于可逆式热泵并集成热储能装置的能源系统的详细动态模型。所采用的系统配置不仅旨在满足寒冷季节的供热需求,还兼顾夏季制冷需求,而根据气候预测,未来几年夏季制冷需求预计将不断上升。研究采用多区域建模方法对住宅建筑进行模拟,并在模型中引入了由电器、照明及人员作息所带来的内部得热量,以更准确地反映建筑围护结构内各区域的温度控制情况。文中对比了采用可逆式热泵的能源系统与燃气锅炉系统的性能,展示了低碳技术在一年不同季节满足热需求的能力。此外,还评估了热泵系统在极端天气条件下的运行性能。结果表明,相较于锅炉系统,热泵配置在满足热需求方面的月均能耗降低了1.15至2.34倍。同时,内部得热量的引入对系统能耗具有显著影响,在基于热泵的能源系统中,其导致的月均能耗增幅最高达63.5%。
English Abstract
Abstract The building sector significantly impacts greenhouse gas emissions, making decarbonisation of heating and cooling essential for achieving carbon neutrality. Replacing conventional fossil fuel technologies with low-carbon alternatives like reversible heat pumps (HPs), alongside integrating thermal energy storage systems, can provide flexibility by reducing thermal demand during peak hours—which could also be reflected in economic savings. In view of this, the detailed dynamic model of an energy system based on a reversible HP integrated with thermal stores is presented in this paper. The adopted configuration has been designed to meet not only heat demand during cold months, but also cooling demand over summer, which is expected to increase in future years according to climate projections. A multi-zone modelling approach was employed to simulate a residential building. Internal heat gains due to appliances, lighting, and occupancy schedules were incorporated in the model to accurately represent the zonal temperature level control in the thermal envelope. The performance of the energy system utilising the reversible HP was compared to when a gas boiler is used, demonstrating the capabilities of low-carbon technologies to meet thermal demand during different seasons of the year. Moreover, the performance of HP-based system under extreme weather conditions was evaluated. The HP configuration consumed 1.15–2.34 times less monthly energy to meet the thermal needs compared to the boiler-based system. The inclusion of internal heat gains showed a considerable effect, with a monthly energy consumption increment of up to 63.5 % observed for the HP-based energy system.
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SunView 深度解读
该热泵储能系统研究对阳光电源户用储能解决方案具有重要参考价值。文中热泵配合储热系统削峰填谷的思路,与我司ST系列储能变流器及PowerTitan系统的能量管理策略高度契合。可将研究中的多区域建模方法应用于iSolarCloud平台,优化户用光储系统的热电联供控制算法。特别是极端天气下热泵性能评估,可指导我司开发适配冷热电三联供场景的混合储能系统,结合SG系列光伏逆变器实现建筑零碳化,拓展户用能源管理业务边界。