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首页> 外文期刊>International Journal of Refrigeration >Development of a steady-state physical-based mathematical model for a direct expansion based enhanced dehumidification air conditioning system
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Development of a steady-state physical-based mathematical model for a direct expansion based enhanced dehumidification air conditioning system

机译:基于直膨胀的增强除湿空调系统的基于稳态物理数学模型的研制

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摘要

It is challenging and difficult for a conventional On-Off controlled single evaporator direct expansion (DX) air conditioning (A/C) system to deal with the variable latent load, unless complicated and costly supplementary measures to supply variable dehumidification ability are provided. Therefore, based on multi-evaporator air conditioning technology, a standalone DX based enhanced dehumidification air conditioning (EDAC) system with two evaporators was proposed to provide variable dehumidification ability. This paper reports on the development of a steady-state physical-based mathematical model for such an EDAC system. Firstly, a detailed description on the configuration of the EDAC system is presented, followed by reporting the development and experimental validation of the steady-state model for EDAC system. Thirdly, using the validated EDAC model, a follow-up detailed modeling study was carried out to both demonstrate that the EDAC system was able to provide variable dehumidification ability and optimize the sizing of the two evaporators used in the EDAC system. The modeling study results indicated that the EDAC system could produce variable dehumidification capacity. The modeling study results also suggested that a lower ratio of surface areas for the two evaporators in an EDAC system was beneficial to enlarging its variation ranges of both total cooling capacity (TCC) and equipment sensible heat ratio (E SHR).
机译:对于传统的开关控制单蒸发器直接膨胀(DX)空调(A / C)系统来处理可变潜在负荷是具有挑战性的,除非提供了用于提供可变除湿能力的复杂且昂贵的补充措施。因此,基于多蒸发器空调技术,提出了具有两个蒸发器的独立DX的增强除湿空调(EDAC)系统,以提供可变除湿能力。本文报告了这种EDAC系统的稳态物理数学模型的发展。首先,提出了关于EDAC系统配置的详细描述,然后报告了EDAC系统稳态模型的开发和实验验证。第三,使用经过验证的EDAC模型,对两者进行了后续详细建模研究表明,EDAC系统能够提供可变的除湿能力,并优化EDAC系统中使用的两个蒸发器的尺寸。建模研究结果表明,EDAC系统可以产生可变的除湿能力。建模研究结果还表明,EDAC系统中两种蒸发器的表面区域的较低比例有利于扩大其总冷却能力(TCC)和设备的变化范围和设备明智的热比(E SHR)。

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