Soleymani Marzieh, Amrollahi Rezvaneh, Taghdir Samaneh, Barzegar Zahra
School of Architecture and Environmental Design, Iran University of Science a and Technology, Tehran, 16846, Iran.
School of Physics, Iran University of Science a and Technology, Tehran, 16846, Iran.
Sci Rep. 2024 Sep 14;14(1):21502. doi: 10.1038/s41598-024-72853-7.
Educational buildings have a large share and impact on urban development. While research shows a significant portion of non-industrial energy consumption in these buildings, obtaining optimal thermal comfort in educational buildings remains one of the main concerns in achieving the grounds to promote students' best performance and efficiency. Extensive research has been done in this field, however, this research presents a new approach to the diverse use of nanotechnology techniques which improve its properties and components in the buildings, aiming to reduce energy consumption and increase thermal comfort. In this paper, thermal comfort and energy consumption are evaluated in a 12-class elementary school located in Shiraz City. Aeropan and nano-Phase change materials (nano-PCMs) is used in the window glass and walls of the studied case. This evaluation presents the simulation and experimental analysis of thermal comfort (PMV) and energy consumption of three classroom alignments in the school building including the Linear-shape (LS), the Integrated Linear-shape (ILS), and the U-shaped (US) alignment. The simulation was performed using EnergyPlus 9.6 software, while the experimental data was collected using TESTO 425 device. The result of this research shows that after applying nano-PCM and Aeropan techniques in window glass and walls, the US alignment has the highest reduction in energy consumption (monthly average of 11.80%) compared to LS and ILS alignments. This alignment includes an energy consumption reduction of 12.03% in the coldest, and, 11.66% in the hottest day of the year in addition to increasing the monthly average thermal comfort of school by the use of nanomaterials.
教育建筑在城市发展中占比重大且影响深远。尽管研究表明这些建筑中非工业能源消耗占很大一部分,但在教育建筑中实现最佳热舒适度仍是促进学生最佳表现和效率的关键关注点之一。该领域已开展了大量研究,然而,本研究提出了一种新方法,即多样运用纳米技术来改善建筑的性能和组件,旨在降低能耗并提高热舒适度。本文对设拉子市一所拥有12间教室的小学的热舒适度和能耗进行了评估。在该研究案例的窗户玻璃和墙壁中使用了 Aeropan 和纳米相变材料(nano-PCM)。此评估展示了对该校建筑中三种教室布局(包括直线形(LS)、综合直线形(ILS)和U形(US)布局)的热舒适度(PMV)和能耗的模拟与实验分析。模拟使用 EnergyPlus 9.6 软件进行,而实验数据则使用 TESTO 425 设备收集。本研究结果表明,在窗户玻璃和墙壁中应用纳米相变材料和 Aeropan 技术后,与LS和ILS布局相比,U形布局的能耗降低幅度最大(月平均降低11.80%)。除了通过使用纳米材料提高学校的月平均热舒适度外,该布局在一年中最冷的日子能耗降低了12.03%,在最热的日子能耗降低了11.66%。