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Adaptive full-range decoupled ventilation strategy and air-conditioning systems for cleanrooms and buildings requiring strict humidity control and their performance evaluation

机译:适用于需要严格控制湿度的洁净室和建筑物的自适应全范围解耦通风策略和空调系统,其性能评估

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摘要

The air-conditioning systems in buildings and spaces, such as cleanrooms, requiring strict space humidity control are usually energy intensive, where significant energy wastes often occur due to improper system design and control. Dedicated outdoor air ventilation strategy, as the most recommended solution today, offers good energy performance by fully decoupling the cooling and dehumidification process. But its energy saving potential is restricted to a range of working conditions, due to the excessive outdoor air intake, it cannot provide energy-efficient operation when the internal latent load and ambient enthalpy are high. This paper therefore proposes a novel "adaptive full-range decoupled ventilation strategy", which offers optimized energy-efficient operation by incorporating the advantages of different ventilation strategies and adopting an adaptive economizer. This study also addresses the design of the air-conditioning systems for the implementation of the proposed ventilation strategy. The energy performance and economic analysis of the air-conditioning systems adopting the proposed ventilation strategy are investigated and compared with most updated strategies available. Results show that the proposed ventilation strategy can offer superior energy performance over the full range of internal load and weather conditions while the initial cost is even lower than that for the most recommended ventilation strategy today. (C) 2018 Elsevier Ltd. All rights reserved.
机译:需要严格控制空间湿度的建筑物和空间中的空调系统(例如无尘室)通常是能源密集型的,由于系统设计和控制不当,经常会发生大量的能源浪费。专用室外空气通风策略是当今最推荐的解决方案,它通过将制冷和除湿过程完全脱开来提供良好的能源性能。但是由于过多的室外空气吸入,其节能潜力受限于一定的工作条件范围,当内部潜在负载和环境焓高时,它无法提供节能运行。因此,本文提出了一种新颖的“自适应全范围解耦通风策略”,该方法通过结合不同通风策略的优势并采用自适应节能器来提供优化的节能运行。这项研究还讨论了为实施拟议的通风策略而设计的空调系统。对采用建议通风策略的空调系统的能源性能和经济分析进行了调查,并与最新的可用策略进行了比较。结果表明,所建议的通风策略可在内部负载和天气条件的整个范围内提供出色的能源性能,而初始成本甚至低于当今最推荐的通风策略。 (C)2018 Elsevier Ltd.保留所有权利。

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