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A Novel Design of Triple-Hybrid Absorption Radiant Building Cooling System With Desiccant Dehumidification

机译:一种小型混合吸收辐射建筑冷却系统的新颖设计,干燥剂除湿

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In air-conditioning, strategy of decoupling cooling and ventilation tasks has stimulated considerable interest in radiant cooling systems with dedicated outdoor air system (DOAS). In view of this, current paper presents a simulation study to describe energy saving potential of a solar, biogas, and electric heater powered hybrid vapor absorption chiller (VAC) based radiant cooling system with desiccant-coupled DOAS. A medium office building under warm and humid climatic condition is considered. To investigate the system under different operational strategies, ENERGYPLUS simulations are done. In this study, a novel design involving solar collectors and biogas fired boiler is proposed for VAC and desiccant regeneration. Three systems are compared in terms of total electric energy consumption: conventional vapor compression chiller (VCC) based radiant cooling system with conventional VCC-DOAS, hybrid VAC-based radiant cooling system with conventional VCC-DOAS, and hybrid VAC-based radiant cooling system with desiccant-assisted VCC-DOAS. The hybrid VAC radiant cooling system and desiccant-assisted VCC-DOAS yields in 9.1% lesser energy consumption than that of the VAC radiant cooling system with conventional VCC-DOAS. Results also show that up to 13.2% energy savings can be ensured through triple-hybrid VAC radiant cooling system and desiccant-assisted VCC-DOAS as compared to that of the conventional VCC-based radiant system. The return on investment is observed to be 14.59 yr for the proposed system.
机译:在空调中,去耦和通风任务的策略在具有专用室外空气系统(DOA)的辐射冷却系统中刺激了相当大的兴趣。鉴于此,目前的论文提出了一种模拟研究,用于描述基于太阳能,沼气和电加热器动力混合蒸气吸收压力机(VAC)的辐射冷却系统的仿真研究,具有干燥剂耦合的DOA。考虑了温暖和潮湿的气候条件下的中型办公楼。要在不同的运营策略下调查系统,完成了能量应用模拟。在这项研究中,提出了一种涉及太阳能收集器和沼气烧制锅炉的新颖设计,用于Vac和干燥剂再生。在总电能消耗方面进行比较三种系统:具有传统VCC-DOA的传统蒸汽压缩冷水机(VCC)辐射冷却系统,具有传统VCC-DOA的混合VAC基辐射冷却系统,以及混合VAC基辐射冷却系统用干燥剂辅助的Vcc-Doa。 Hybrid Vac辐射冷却系统和干燥剂辅助Vcc-DoAs产量比具有传统Vcc-DoAs的VAC辐射冷却系统的能耗较低的9.1%。结果还表明,与传统的VCC基辐射系统相比,通过三杂交VAC辐射冷却系统和干燥剂辅助VCC-DOA可以确保高达13.2%的能量节省。拟议系统的投资回报率为14.59年。

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