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Investigation on effect of indoor air distribution strategy on solar air-conditioning systems

机译:室内空气分配策略对太阳能空调系统影响的研究

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Stratum ventilation (SV), a new indoor air distribution strategy, has been promoted for applications-in different building premises in recent years. Compared to the conventional mixing ventilation (MV), the prominent advantage of SV is that indoor thermal comfort can be satisfied with a relatively high supply air temperature, hence less energy consumption in refrigeration. In solar air-conditioning, the energy performance can also be facilitated by high-temperature cooling. As such, the potential of SV to be involved in solar air-conditioning was evaluated. In this study, the solar air-conditioning systems included solar absorption cooling system (SAbCS), solar adsorption cooling system (SAdCS), solar desiccant cooling system (SDCS), hybrid solar absorption-desiccant cooling system (HSAbDCS) and hybrid solar adsorption-desiccant cooling system (HSAdDCS). Their performances using SV and MV were determined through year-round dynamic simulation. Compared to the counterpart using MV, SAbCS, SAdCS, SDCS, HSAbDCS and HSAdDCS associated with SV could have 35%, 54%, 59%, 29% and 44% saving in the annual primary energy consumption for building in subtropical climate respectively. Benchmarked with the conventional air-conditioning system, they could have primary energy saving up to 30%. Consequently, solar air-conditioning and SV can have synergetic merit in building application in hot and humid city. (C) 2018 Elsevier Ltd. All rights reserved.
机译:近年来,层间通风(SV)是一种新的室内空气分配策略,已在不同的建筑物中推广应用。与传统的混合通风(MV)相比,SV的显着优势在于,可以通过较高的送风温度满足室内的热舒适性,从而减少制冷能耗。在太阳能空调中,高温冷却还可以提高能量性能。这样,就评估了SV参与太阳能空调的潜力。在这项研究中,太阳能空调系统包括太阳能吸收冷却系统(SAbCS),太阳能吸收冷却系统(SAdCS),太阳能干燥剂冷却系统(SDCS),混合太阳能吸收剂干燥剂冷却系统(HSAbDCS)和混合太阳能吸收剂-干燥剂冷却系统(HSAdDCS)。通过全年动态模拟确定了它们使用SV和MV的性能。与使用MV的同行相比,与SV关联的SAbCS,SAdCS,SDCS,HSAbDCS和HSAdDCS可以分别在亚热带气候中每年节省建筑一次能源消耗的35%,54%,59%,29%和44%。以常规空调系统为基准,它们可以节省多达30%的一次能源。因此,太阳能空调和SV可以在湿热城市的建筑应用中发挥协同作用。 (C)2018 Elsevier Ltd.保留所有权利。

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