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Indoor Humidity Analysis of an Integrated Radiant Cooling and Desiccant Ventilation System

机译:一体化辐射冷却与干燥通风系统的室内湿度分析

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摘要

Radiant cooling is credited with improving energy efficiency and enhancing the comfort level as an alternative method of space cooling in mild and dry climates, according to recent research. Since radiant cooling panels lack the capability to remove latent heat, they normally are used in conjunction with an independent ventilation system, which is capable of decoupling the space sensible and latent loads. Condensation concerns limit the application of radiant cooling. This paper studies the dehumidification processes of solid desiccant systems and investigates the factors that affect the humidity levels of a radiantly cooled space. Hourly indoor humidity is simulated at eight different operating conditions in a radiantly cooled test-bed office. The simulation results show that infiltration and ventilation flow rates are the main factors affecting indoor humidity level and energy consumption in a radiantly cooled space with relatively constant occupancy. It is found that condensation is hard to control in a leaky office operated with the required ventilation rate. Slightly pressurizing the space is recommended for radiant cooling. The energy consumption simulation shows that a passive desiccant wheel can recover about 50% of the ventilation load.
机译:根据最近的研究,辐射冷却被认为可以提高能源效率并提高舒适度,作为在温和干燥气候下进行空间冷却的替代方法。由于辐射冷却面板缺乏去除潜热的能力,因此它们通常与独立的通风系统结合使用,该通风系统能够将空间敏感负载和潜在负载分离。冷凝问题限制了辐射冷却的应用。本文研究了固体干燥剂系统的除湿过程,并研究了影响辐射冷却空间湿度水平的因素。在辐射冷却的测试台办公室中,在八个不同的运行条件下模拟了每小时的室内湿度。仿真结果表明,在占用相对恒定的辐射冷却空间中,渗透和通风流速是影响室内湿度和能耗的主要因素。发现在以所需通风率操作的漏水办公室中,冷凝水很难控制。建议对空间稍加加压以进行辐射冷却。能耗模拟表明,被动式干燥剂轮可以恢复大约50%的通风负荷。

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  • 作者

    Gong X.; Claridge D. E.;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en_US
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