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Performance investigation of ground source heat exchanger with desiccant-based hybrid cooling system in humid climate

机译:潮湿气候中具有干燥剂的混合冷却系统地源热交换器的性能调查

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A desiccant-based hybrid cooling is among the most cost-effective air conditioning systems. The main purpose of this paper is the assessment of the potential of ground-assisted direct evaporative cooler together with a desiccant evaporative cooling cycle integrated with a ground source renewable energy for the pre-cooler process. Simulation results obtained using the TRNSYS software are compared with experimental data. The simulation of the mentioned systems are conducted in Bari (south of Italy), Palermo (south of Italy) and Ramsar (north of Iran) for the humid-mild climate of July. Assuming the low regeneration temperature (Treg) for the desiccant wheel is one of the highlights of this paper. Utilizing ground source heat exchanger (GSHE) will result in increase of the system potential in providing thermal comfort. The average thermal comfort achieves in Bari, Palermo and Ramsar in 95.72%, 93.94% and 93.15% of the time from 6 AM to 6 PM in July with utilizing the combination of GSHE and desiccant cooling system. The COP of this cycle is highly dependent on the Treg, and varies in the range of 0.35-0.53, 0.34-0.6 and 0.34-0.52 for the maximum Treg of 50 °C in Bari, Palermo and Ramsar, respectively.
机译:基于干燥剂的混合冷却是最具成本效益的空调系统之一。本文的主要目的是评估地面辅助直接蒸发冷却器的电位以及集成的干燥剂蒸发冷却循环,该冷却循环循环与地面源可再生能量进行预冷工艺。使用Trnsys软件获得的模拟结果与实验数据进行比较。提到的系统的仿真在巴里(意大利南部),巴勒莫(意大利南部)和伊朗北部的Ramsar(伊朗北)进行了潮湿的气候。假设干燥剂轮的低再生温度(Treg)是本文的亮点之一。利用地源热交换器(GSHE)将导致系统电位增加提供热舒适度。利用GSHE和干燥剂冷却系统的组合,在95.72%,巴利,巴勒莫和拉姆萨尔的平均热舒适达到了95.72%,93.94%和93.15%的时间。该循环的COP高度依赖于Treg,分别为50℃,巴勒莫和拉姆萨尔的最大Treg的0.35-0.53,0.34-0.6和0.34-0.52的范围。

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