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Energy Saving Potential of an Air-Conditioning System with Desiccant and Solar Assisted Ventilation

机译:具有干燥剂和太阳能辅助通风的空调系统节能潜力

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In this paper, a simulation analysis has been performed using Energy Plus software on the conventional vapor compression-based building cooling system for warm-humid climate. In order to achieve an energy efficient approach, decoupling of latent and sensible heat loads is done using a separate desiccant-assisted dedicated outdoor air system (DOAS). A solar collector system is installed to provide the required amount of heating energy for regenerating the desiccant. Further, an integrated evaporative cooling (IEC) arrangement in DOAS is used to improve the system performance. The performance of the system is evaluated using three distinct modes of operation. Results show that in comparison with the conventional compression operated system, desiccant-assisted DOAS in conjunction with IEC system saves 2.62% of electrical energy on an annual basis.
机译:在本文中,已经使用能量加软件对热湿润气候的传统蒸汽压缩建筑冷却系统进行了模拟分析。 为了实现能量有效的方法,使用单独的干燥剂辅助专用室外空气系统(DOA)来完成潜伏和明智的热负荷的去耦。 安装太阳能收集器系统以提供所需的加热能量,用于再生干燥剂。 此外,DOA中的集成蒸发冷却(IEC)布置用于改善系统性能。 使用三种不同的操作模式进行评估系统的性能。 结果表明,与传统的压缩操作系统相比,与IEC系统结合的干燥剂辅助DOA每年节省2.62%的电能。

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