Numerical Study of Improving Solar Chimney Performance by using Energy Storage

Tuqa Abduljabbar, Abbas J. Jubear, Batool M. Mardan
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Abstract

In this study, a simulation for two story building associated with a vertical solar chimney was made by using ANSYS 2022/R1. The study conducted under the climatic conditions of Al-kut city/ Iraq on 5/8/2016. The study involved a comparison between the ventilation performance of SC before and after adding Energy Storage. Al-dura, RT-42, and block-shaped paraffin wax were the three types of PCM that were studied in order to find the optimum ES. The numerical results showed that the best Paraffin wax was Al-dura depending on the average Air Change per Hour (ACH), average indoor temperature, and the ventilation period after sunset. Comparing with the 1st model (without ES), After adding Al-dura wax, the ACH increased by 18.3 % and 9.95 % for 1st and 2nd floor, respectively. whereas, the indoor temperature was reduced by 1.17 k and 0.68 k on the 1st and 2nd floor, respectively. As for the ventilation period, it was  lasted for 5 h after sunset.  
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利用储能技术改善太阳能烟囱性能的数值研究
本研究采用ANSYS 2022/R1软件对两层建筑的垂直太阳能烟囱进行了模拟。该研究于2016年8月5日在伊拉克Al-kut市的气候条件下进行。本研究对添加储能前后的SC通风性能进行了比较。研究了Al-dura、RT-42和块状石蜡三种类型的PCM,以寻找最佳的ES。数值结果表明,受平均小时换气量(ACH)、室内平均温度和日落后通风时间的影响,最佳石蜡为Al-dura。与未加ES的模型相比,添加硬膜蜡后,1层和2层的乙酰胆碱含量分别提高了18.3%和9.95%。1楼和2楼的室内温度分别降低了1.17 k和0.68 k。通风时间为日落后5 h。
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