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Simulation dataset on fenestration and shading device variation on ventilation and energy performance of an office in cooling and heating seasons

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doi.org2025-01-15 收录
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http://doi.org/10.17632/rbn5hypgp6.1
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This dataset describes the simulation data generated from the variation of fenestration and shading devices (F&SD) on energy and ventilation performance of an office unit across heating and cooling seasons. This dataset serves as a support of the published paper: “Investigations into Impacts of Fenestration and Shading Variation on Ventilation and Energy Performance of an Office in Cooling and Heating Seasons which can be accessed via: https://doi.org/10.1016/j.solener.2024.112646. The simulation of the office was carried out using the free-running physical model of International Energy Agency’s (IEA) Building Energy Simulation Test (BESTEST) Case 600FF and Shanghai ewp format weather file from the EnergyPlus website. The considered F&SD configurations include window-facing orientation (WFO), window-to-wall ratio (WWR), shading device types (SDT), number of shadings (SDN), shading device depths (SDD), and shading device tilt angle (SDA). WWR variations were achieved by changing the window height (WDH) to floor ratio. The outputs include the building environmental performance (BP) parameters [i.e. zone mean radiant temperature (°C), zone ventilation volume density flowrate (m3/s), daylight illuminance at reference point (lux), and annual glare hours (hrs)] and the energy demand (ED) in kWh/m2 performance related parameters [free-running cooling energy demands (CED), heating energy demands (HED), total energy demands (TED=CED+HED), and electricity energy use (EEU, lighting and equipment energy use)].

本数据集详细描述了通过对办公室单元的窗户和遮阳装置(F&SD)的变异性进行模拟,对供暖和制冷季节内能源和通风性能的影响。该数据集作为已发表论文《探究窗户和遮阳装置变异性对办公建筑通风与能源性能影响的研究》的补充材料,该论文可通过以下链接访问:https://doi.org/10.1016/j.solener.2024.112646。办公室的模拟采用国际能源署(IEA)建筑能源模拟测试(BESTEST)案例600FF的自由运行物理模型,并结合来自EnergyPlus网站上的上海ewp格式气象文件进行。所考虑的F&SD配置包括窗户朝向(WFO)、窗墙比(WWR)、遮阳装置类型(SDT)、遮阳数量(SDN)、遮阳装置深度(SDD)和遮阳装置倾斜角度(SDA)。通过改变窗户高度(WDH)与楼板面积的比例来实现WWR的变化。输出内容包括建筑环境性能(BP)参数[即区域平均辐射温度(°C)、区域通风体积密度流量(m3/s)、参考点日光照度(lux)和年度眩光小时(小时)]以及能源需求(ED)的kWh/m2性能相关参数[自由运行冷却能源需求(CED)、供暖能源需求(HED)、总能源需求(TED=CED+HED)和电力能源使用(EEU,照明和设备能源使用)]。
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Mendeley Data
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