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Applying a novel extra-low temperature dedicated outdoor air system for humidity control and energy efficiency

机译:应用一种新型的超低温专用室外空气系统,用于湿度控制和能源效率

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摘要

A novel dedicated outdoor air system consisting of a multi-stage direct expansion coil to generate extra-low temperature outdoor air to avoid moisture-related problems and for desirable air conditions and better energy efficiency is proposed for investigation. In this study, the proposed system's (extra-low temperature-dedicated outdoor air system) performance in achieving the desirable air conditions and better energy efficiency objectives is compared with a conventional direct expansion coil system with variable speed compressor and fan used for air conditioning of a typical office building in Hong Kong. Through hour-by-hour simulations, using equipment performance data of a pilot study and realistic building and system characteristics, it was found that the extra-low temperature-dedicated outdoor air system, as compared to the conventional system, could reduce the annual air-conditioning energy consumption by 22.6, the indoor discomfort hours by 31 and the condensation risk to zero hours. Root-mean-square error and standard deviation analysis of the resultant relative humidity confirmed that the extra-low temperature-dedicated outdoor air system could better achieve the desired relative humidity. The findings of this study confirm that the extra-low temperature-dedicated outdoor air system is better than the conventional system in terms of both energy consumption and the desirable air conditions when used in office buildings in Hong Kong.
机译:提出了一种由多级直接膨胀盘管组成的新型专用室外空气系统,该系统可产生超低温室外空气,以避免与湿气相关的问题,并具有理想的空气条件和更好的能源效率。本研究比较了所提出的系统(超低温专用室外空气系统)在达到理想空气条件和较佳能源效益目标方面的表现,并与香港典型写字楼空调用变速压缩机和风扇的传统直膨胀盘管系统进行了比较。通过逐小时模拟,利用试点研究的设备性能数据以及真实的建筑和系统特性,发现超低温专用室外空气系统与传统系统相比,可将空调年能耗降低22.6%,室内不适时间降低31%,冷凝风险降低至零小时。均方根误差和标准差分析证实了超低温专用室外空气系统可以更好地达到所需的相对湿度。这项研究的结果证实,在香港写字楼使用时,超低温专用室外空气系统在能源消耗和理想的空气条件方面都优于传统系统。

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