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Performance analysis of domed roof integrated with earth-to-air heat exchanger system to meet thermal comfort conditions in buildings

机译:地球换热器系统集成圆顶屋顶的性能分析,以满足建筑物的热舒适条件

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In the present study, an integrated cooling system consisting an earth-to-air heat exchanger (EAHE) and a domed roof is investigated numerically to meet the thermal comfort conditions and supply the cooling demand for a building. Simulation of airflow in the EAHE and a test room with the domed roof is performed with ANSYS FLUENT software three-dimensionally, and the thermal behavior of the system is modeled with the code developed in MATLAB software. Furthermore, for verifying the numerical results of EAHE modeling, an experimental study is conducted. The impact of both geometric and environmental parameters on the system performance is also investigated. The obtained results reveal that the system is capable of providing thermal comfort conditions, according to adaptive thermal comfort standard (ATCS), for the test room with a maximum cooling demand of about 1000 W alone and without consuming electric energy by using three pipes with a length of 35 m and a diameter of 0.4 m. The application of the proposed system instead of the split inverter air conditioner and the evaporative cooler to provide a similar cooling load can reduce the electrical energy consumption up to 0.360 kW h, and 0.200 kW h, respectively. In addition, the environmental analysis indicates that the utilization of this system instead of the split inverter air conditioner and evaporative air cooler with similar capacities leads to respective 361.89 kg and 216.06 kg reduction in CO2 emissions for summer months. Finally, the application of the proposed integrated system for a two-story building with domed roof is evaluated. The results show the ability of the system to provide thermal comfort for the two-story building with a maximum cooling demand of approximately 300 W for each floor using two pipes with a length of 35 m and a diameter of 0.4 m. (c) 2021 Elsevier Ltd. All rights reserved.
机译:在本研究中,在数控上研究了由地球 - 空气热交换器(EAHE)和圆顶屋顶的集成冷却系统,以满足热舒适条件,并为建筑物提供冷却需求。三维ANSYS流畅的软件对eAHE和圆顶屋顶的测试室中的气流模拟,并且系统的热行为与MATLAB软件中开发的代码进行建模。此外,为了验证EAHE建模的数值结果,进行了实验研究。还研究了几何和环境参数对系统性能的影响。所得结果表明,该系统能够根据自适应热舒适标准(ATCS)提供热舒适条件,用于测试室,单独的最大冷却需求约为1000W,并且通过使用三个管道而不消耗电能长度为35米,直径为0.4米。所提出的系统代替分开的逆变器空调和蒸发冷却器以提供类似的冷却负荷的应用可以将电能消耗降低至0.360千瓦H,0.200 kW h。此外,环境分析表明,利用该系统而不是分体式逆变器空调和具有相似容量的蒸发空气冷却器,以相应的361.89kg和216.06kg减少夏季的二氧化碳排放量。最后,评估了拟议的综合系统对带圆顶屋顶的两层建筑的应用。结果表明,该系统为两层楼建筑提供热舒适性,每个楼层的最大冷却需求大约300 W,使用长度为35米,直径为0.4米。 (c)2021 elestvier有限公司保留所有权利。

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