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Study of an integrated radiant heating/cooling system with fresh air supply for household utilization

机译:带有供新鲜空气供家庭使用的集成辐射供暖/制冷系统的研究

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With the increasing demand for indoor thermal comfort in recent years, radiant heating & cooling systems have been very popular in China. However, for the household air-conditioning in hot-summer and cold-winter regions, an effective solution of heating and cooling source supply for radiant air-conditioning system remains to be developed. In this paper, an energy-efficient radiant heating/cooling system with fresh air supply is proposed and investigated for household utilization numerically. Under summer conditions, dehumidified fresh air supply is a tough problem in radiant cooling since the chilling water temperature for radiant cooling is much higher than traditional air-conditioning systems. In the proposed system, the fresh air handling unit is composed of both pre-cooling dehumidification coil and liquid desiccant dehumidifier, where high-temperature chilling water is used for cooling source and small part of condensing heat is used for liquid desiccant regeneration. The results indicated that the fresh air can be steadily supplied and sufficiently dehumidified for indoor air quality and humidity control. The chilling water flow rate in pre-cooling coil (m(w,coil)) and the solution flow rate from regenerator to dehumidifier (m(s,SS)) can be recognized as control parameters to reliably regulate the indoor air humidity. The load ratio of sensible heat to latent heat had no significant impact on COPsys, which means the system can operate with a steady energy efficiency despite of the indoor heat load. Satisfactory energy-saving potential was revealed in the proposed system with a COP improvement of 25.8%-30.1% compared to the conventional system under typical summer conditions in Nanjing.
机译:近年来,随着室内热舒适性需求的增长,辐射供热和制冷系统在中国非常受欢迎。然而,对于炎热和寒冷冬季地区的家用空调,仍需要开发一种有效的辐射空调系统供热和制冷源解决方案。本文提出了一种具有新鲜空气供应的节能辐射供热/制冷系统,并进行了数值研究,以供家庭使用。在夏季条件下,由于辐射冷却的冷却水温度比传统的空调系统高得多,因此在辐射冷却中,除湿的新鲜空气供应是一个难题。在所提出的系统中,新鲜空气处理单元由预冷除湿盘管和液体干燥剂除湿机组成,其中高温冷却水用作冷却源,而冷凝水的一小部分用于液体干燥剂的再生。结果表明,可以稳定地供应新鲜空气并充分除湿,以控制室内空气质量和湿度。预冷盘管中的冷却水流量(m(w,coil))和从再生器到除湿机的溶液流量(m(s,SS))可被视为控制参数,以可靠地调节室内空气湿度。显热与潜热的负载比对COPsys没有显着影响,这意味着尽管室内有热负载,系统仍可以稳定的能源效率运行。在南京典型的夏季条件下,拟议的系统显示出令人满意的节能潜力,与传统系统相比,COP改善了25.8%-30.1%。

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