Dynamic simulation and analysis of ancillary service demand response strategies for variable air volume HVAC systems

David H. Blum, L. Norford
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引用次数: 29

Abstract

Output variability and low generating inertia associated with solar and wind electric power generation resources increase the requirement of grid-scale ancillary service capacity and add strain to existing firm generators that provide these services. Buildings consume the majority of electricity in the United States and can play a significant role in helping to meet these challenges by using their HVAC systems as a link to thermal energy storage. However, predicting a building's ancillary service demand response performance continues to be a challenge, particularly for complex multi-zone systems, such as the variable air volume. A dynamic model of a representative variable air volume system was developed and simulated to investigate the response of the system to implementation of four common demand response strategies over a range of cooling loads and implementation intensities: zone air dry-bulb temperature adjustment, duct static pressure adjustment, supply air temperature adjustment, and chilled water temperature adjustment. Curves are presented that map power reduction as a function of cooling load and implementation intensity on a 10-min spinning reserve timescale. A study of these maps along with simulated data reveal that terminal unit damper position is a significant determining factor of performance effectiveness for each strategy.
变风量HVAC系统辅助服务需求响应策略的动态仿真与分析
与太阳能和风能发电资源相关的输出可变性和低发电惯性增加了对电网规模辅助服务能力的需求,并增加了提供这些服务的现有公司发电机的压力。在美国,建筑物消耗了大部分电力,通过使用HVAC系统作为热能储存的链接,可以在帮助应对这些挑战方面发挥重要作用。然而,预测建筑物的辅助服务需求响应性能仍然是一个挑战,特别是对于复杂的多区域系统,例如可变风量。开发并模拟了一个具有代表性的变风量系统的动态模型,以研究系统对四种常见需求响应策略(区域空气干球温度调节、管道静压调节、送风温度调节和冷冻水温度调节)在一系列冷负荷和实施强度下的响应。给出了在10分钟旋转备用时间尺度上,功率降低作为冷负荷和执行强度的函数的曲线。对这些地图以及模拟数据的研究表明,终端单元阻尼器位置是每种策略性能有效性的重要决定因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
HVAC&R Research
HVAC&R Research 工程技术-工程:机械
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