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Retrofitting building fire service water tanks as chilled water storage for power demand limiting

机译:改造建筑物消防水箱作为冷冻水,以限制电力需求

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摘要

Peak demand cost usually contributes a large proportion of the total electricity bills in buildings. Using existing building facilities for power demand limiting has been verified as effective measures to reduce monthly peak demands and associated costs. Fire service water tanks exist in most commercial buildings. This paper presents a comprehensive study on how to effectively retrofit existing building fire service water tanks as chilled water storage for power demand limiting. Important technical and economic factors that may affect the implementation of the proposed retrofitting are addressed. Two retrofitting schemes, i.e. a small Delta T ( storage temperature difference) scheme and a large Delta T scheme are proposed for integrating the chilled water storage system into an existing all-air system and an existing air-water air conditioning system, respectively. Two optimal demand limiting control strategies, i.e. time-based control and demand-based control, are proposed for maximizing the monthly peak demand reduction of buildings with regular and variable peak occurring time, respectively. The cost-effectiveness of different retrofitting schemes in three real buildings in Hong Kong is analysed. Results show that substantial cost savings can be achieved with short payback periods (0.7-2.6 years) for the retrofits in these three buildings.
机译:高峰需求成本通常占建筑物总电费的很大一部分。使用现有建筑设施限制电力需求已被证明是减少每月高峰需求和相关成本的有效措施。大多数商业建筑中都有消防水箱。本文对如何有效地改造现有建筑物消防水箱作为冷冻水来限制电力需求进行了全面的研究。解决了可能影响拟议改造实施的重要技术和经济因素。为了将冷冻水存储系统分别集成到现有的全空气系统和现有的空气-水空调系统中,提出了两种改进方案,即小ΔT(存储温度差)方案和大ΔT方案。提出了两种最优的需求限制控制策略,即基于时间的控制和基于需求的控制,以分别最大化具有规则和可变峰值出现时间的建筑物的每月峰值需求减少量。分析了香港三座实际建筑物中不同改造方案的成本效益。结果表明,在这三座建筑物中进行改造的投资回收期短(0.7-2.6年),可以节省大量成本。

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