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A spatiotemporal indirect evaporative cooler enabled by transiently interceding water mist

机译:通过瞬时互动的水雾使能时尚间接蒸发冷却器

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摘要

The building sector consumes around half of the global energy produced and air-conditioning processes guzzle over 55% of building sector energy. The conventional refrigerant-based chillers, covering over 90% of the current cooling market, are not only energy-intensive but also have high ozone depletion and global warming potentials. Indirect evaporative coolers were introduced but they were difficult to commercialize due to their practical lower achievable temperature limits. All existing indirect evaporative coolers use hydrophilic interface to provide wet surfaces for evaporative potential. These hydrophilic surfaces not only increase heat transfer resistance but also provide excellent conditions, wet and damp surface, for mold formation. The treatment of mold is almost impossible as the height of the channel is only 3-5 mm and the fungus can be dangerous to health. Therefore, we proposed an innovative indirect evaporative cooling cycle in which there are no hydrophilic surfaces inside the system. The humidification of the working air is carried out before it is introduced into the wet channel. Also, the interface between dry and wet channel is only a thin aluminium foil that boosts heat transfer from supply air to working air in the transverse direction. A generic cell of 1800 mm long and 280 mm wide can produce 182.5 W cooling capacity. The measured coefficient of performance and effectiveness are 45 and 80% respectively for sensible cooling. This basic information of the proposed innovative indirect evaporative cooling system can be used to design a commercial unit as the total capacity is based on number of generic cells. (C) 2020 Elsevier Ltd. All rights reserved.
机译:建筑业消耗大约一半的全球能源生产和空调流程推出超过55%的建筑物能源。传统的制冷剂的冷却器覆盖了90%以上的电流冷却市场,不仅是能量密集而且具有高臭氧消耗和全球变暖潜力。引入间接蒸发冷却器,但由于其实际降低的可实现温度限制,它们难以商业化。所有现有的间接蒸发冷却器都使用亲水界面来提供湿表面以进行蒸发潜力。这些亲水性表面不仅增加传热电阻,而且还为模具形成提供优异的条件,湿润和潮湿的表面。由于通道的高度仅为3-5mm,真菌可能对健康有危险,但模具的处理几乎是不可能的。因此,我们提出了一种创新的间接蒸发冷却循环,其中系统内部没有亲水性表面。在将其引入湿信道之前进行工作空气的加湿。而且,干燥和湿沟道之间的界面仅是薄的铝箔,其沿横向从供应空气升高到工作空气。通用电池长1800毫米,宽280毫米,可以产生182.5W的冷却能力。对于明智的冷却,测量的性能和有效性系数分别为45%和80%。该拟议的创新间接蒸发冷却系统的这种基本信息可用于设计商业单位,因为总容量基于通用细胞的数量。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Energy》 |2021年第15期|119352.1-119352.13|共13页
  • 作者单位

    Northumbria Univ Dept Mech & Construct Engn Newcastle Upon Tyne NEI 8ST Tyne & Wear England;

    Univ Oxford Dept Engn Sci Oxford OX1 3PJ England;

    Northumbria Univ Dept Mech & Construct Engn Newcastle Upon Tyne NEI 8ST Tyne & Wear England;

    Northumbria Univ Dept Mech & Construct Engn Newcastle Upon Tyne NEI 8ST Tyne & Wear England;

    King Abdullah Univ Sci & Technol Water Desalinat & Reuse Ctr Thuwal 239556900 Saudi Arabia;

    King Abdullah Univ Sci & Technol Water Desalinat & Reuse Ctr Thuwal 239556900 Saudi Arabia;

    Bahauddin Zakariya Univ Dept Agr Engn Bosan Rd Multan 60800 Pakistan;

    Texas A&M Univ Dept Mech & Ind Engn Kingsville TX 78363 USA;

    King Abdullah Univ Sci & Technol Water Desalinat & Reuse Ctr Thuwal 239556900 Saudi Arabia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Air-conditioning; Chillers; Evaporative cooler; Coefficient of performance;

    机译:空调;冷却器;蒸发冷却器;性能系数;
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