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Numerical investigation of a novel vacuum photovoltaic curtain wall and integrated optimization of photovoltaic envelope systems

机译:新型真空光伏幕墙的数值研究及光伏包络系统的集成优化

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This study presents a comprehensive investigation of the thermal and power performance of a novel vacuum photovoltaic insulated glass unit (VPV IGU) as well as an integrated design optimization of photovoltaic envelope systems. A prototype office building model with a curtain wall design is first constructed in EnergyPlus to compare the heat gain, heat loss, thermal load, lighting energy and PV generation for different curtain walls. The comparative analysis proves the excellent thermal insulating performance of VPV IGU, which can reduce up to 81.63% and 75.03% of the heat gain as well as 31.94% and 32.03% of the heat loss in Hong Kong (HK) and Harbin (HB) respectively. With the application of VPV IGU in all available facades of the prototype building, net energy savings of 37.79% and 39.82% can be achieved in diverse climatic conditions. Furthermore, screening and variance based sensitivity analyses are conducted to prioritize building integrated photovoltaic design parameters with respect to specific weather conditions. The selected important design parameters are then optimized with the non-dominated sorting genetic algorithm-II (NSGA-II), by which the optimum building design can achieve a net energy consumption reduction of 48.72% and 60.80% compared to benchmarking designs in Hong Kong and Harbin. Such an integrated design optimization can successfully improve computation efficiency with an acceptable solution accuracy, and assist the incorporation of PV envelop systems with passive architectural designs. The novel VPV IGU is determined to be more suitable for cold areas where the curtain wall design should also be avoided for energy conservation.
机译:这项研究对新型真空光伏中空玻璃组件(VPV IGU)的热和功率性能以及光伏外壳系统的集成设计优化进行了全面研究。首先在EnergyPlus中构建具有幕墙设计的办公楼原型模型,以比较不同幕墙的热量获取,热量损失,热负荷,照明能量和PV生成。对比分析表明,VPV IGU具有出色的隔热性能,可减少香港(HK)和哈尔滨(HB)的热量吸收分别达81.63%和75.03%,以及热损失分别减少31.94%和32.03%分别。通过在原型建筑物的所有可用外墙中使用VPV IGU,可以在各种气候条件下分别实现净节能37.79%和39.82%。此外,进行了基于筛选和方差的敏感性分析,以针对特定的天气条件确定建筑物的集成光伏设计参数的优先级。选定的重要设计参数然后使用非主导的排序遗传算法-II(NSGA-II)进行优化,与香港的基准设计相比,通过优化的建筑设计可以实现净能耗分别降低48.72%和60.80%和哈尔滨。这样的集成设计优化可以以可接受的解决方案精度成功提高计算效率,并有助于将PV信封系统与无源体系结构设计结合在一起。新型VPV IGU被确定为更适合寒冷地区,在这些寒冷地区也应避免采用幕墙设计以节约能源。

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