直接蒸发冷却空调系统的改进:实验与理论研究

IF 1.5 Q2 ENGINEERING, MULTIDISCIPLINARY
Rasha Hayder Hashim, S. Hammdi, A. Eidan
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引用次数: 0

摘要

摘要空调(AC)目前更常用于住宅和商业建筑,以在夏季实现热舒适。由于外部温度高,冷凝器压力最高,最终导致高电力消耗。降低空调系统能耗和提高冷却能力的方法之一是利用蒸发冷却原理降低进入冷凝器的空气温度。本文介绍了一项实验和理论研究,旨在改善由直接蒸发冷却系统支撑的传统空调机组的性能,以提高其在炎热和干燥气候下的制冷能力并降低功耗。在实验中实现了窗口型交流单元,其中交流系统被调制以提供广泛的各种天气条件。结果表明,使用蒸发冷却辅助增强了系统,克服了制冷量在10-20%范围内增加的许多挑战。此外,结果显示,出口温度降低了6–10°C,功耗降低了约3%。使用MATLAB程序对获得的不同数据进行分析。该程序的输入参数是入口条件,如所在城市的天气条件,即室外干燥温度和室外相对湿度。根据正面空气速度和入口空气温度计算了有效性和冷却能力。实验和理论工作之间的比较显示出良好的一致性,因为相对差异小于9%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of air conditioning system using direct evaporative cooling: Experimental and theoretical investigation
Abstract Air conditioners (ACs) are more commonly used nowadays in residential and commercial buildings to achieve thermal comfort in the summer season. Due to the high outside temperature, condenser pressure was highest and ultimately resulted in high electricity consumption. One of the ways to reduce the energy consumption of AC systems and increase cooling capacity is by reducing air temperature entering the condenser by using the evaporative cooling principle. This article presents an experimental and theoretical investigation of improving the performance of the conventional air conditioning unit supported by a direct evaporative cooling system to increase the cooling capacity and reduce the consumption of power in hot and dry climates. A window-type AC unit was implemented in the experiment where the AC system is modulated to provide a wide range of various weather conditions. The results show that using evaporative cooling assist enhanced the system to overcome the many challenges by which the refrigeration capacity was increased in the range of 10–20%. Also, the results show a decrease in outlet temperature by 6–10°C, and the power consumption was reduced by about 3%. MATLAB program was used to analyze different data that were obtained. The input parameters for this program are the inlet conditions such as the weather conditions of the located city, namely the outdoor dry temperature and the outdoor relative humidity. The effectiveness and cooling capacity were calculated based on the frontal air velocity and the inlet air temperature. A comparison between the experimental and theoretical work showed a good agreement, as the relative difference is less than 9%.
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来源期刊
Open Engineering
Open Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
3.90
自引率
0.00%
发文量
52
审稿时长
30 weeks
期刊介绍: Open Engineering publishes research results of wide interest in emerging interdisciplinary and traditional engineering fields, including: electrical and computer engineering, civil and environmental engineering, mechanical and aerospace engineering, material science and engineering. The journal is designed to facilitate the exchange of innovative and interdisciplinary ideas between researchers from different countries. Open Engineering is a peer-reviewed, English language journal. Researchers from non-English speaking regions are provided with free language correction by scientists who are native speakers. Additionally, each published article is widely promoted to researchers working in the same field.
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