空调与蒸发式空气冷却器集成的数值模拟

Haider Mumtaz, Salman Hammdi
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引用次数: 0

摘要

夏季,商业和住宅建筑越来越多地使用空调来提供热舒适度。在干燥、炎热的气候条件下,高环境温度造成的冷凝器压力升高导致耗电量大幅增加。因此,本文介绍了通过应用直接蒸发冷却系统来提高传统空调设备性能的可行性数值模拟调查结果。目的是在提高制冷量的同时降低功耗。该程序使用了一台小型窗式空调,模拟了各种天气条件。数值结果表明,采用蒸发冷却辅助设备提高了系统克服重重困难的能力,使制冷能力提高了 10-20%。此外,耗电量降低了约 3%,排放温度下降了 6-10°C 。对居住者热条件的预测平均投票标准(PMV)结果良好(正常类型)。尽管在炎热的夏季五个月中气候条件十分恶劣,但制水效果良好,尤其是在九月份。
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Numerical simulation of integrating an air conditioner with an evaporative air cooler
During the summer, air conditioning is increasingly used in commercial and residential structures to provide thermal comfort. The elevated condenser pressure caused by high ambient temperatures has led to a significant increase in electricity consumption in dry, hot climates. Therefore, this article presents the results of a numerical simulation investigation into the feasibility of enhancing the performance of a conventional air conditioning unit by applying a direct evaporative cooling system. The objective is to increase the cooling capacity while decreasing power consumption. The program used a small window-type air conditioner configured to simulate various weather conditions. The numerical findings indicate that incorporating evaporative cooling aids improved the system's ability to overcome numerous obstacles, resulting in a 10–20% increase in refrigeration capacity. Additionally, power consumption was reduced by approximately 3%, and the discharge temperature fell by 6–10°C. The predicted mean vote standard (PMV) for thermal conditions for human occupants yielded favorable outcomes (normal-type). Despite the challenging climate conditions prevailing during the five sweltering summer months, water production demonstrated good results, particularly in September.
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