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Numerical investigation of the energy saving potential of a semi-transparent photovoltaic double-skin facade in a cool-summer Mediterranean climate

机译:地中海夏季凉爽气候下半透明光伏双层外墙节能潜力的数值研究

摘要

This paper presents the annual overall energy performance and energy-saving potential of a ventilated photovoltaic double-skin facade (PV-DSF) in a cool-summer Mediterranean climate zone. A numerical simulation model based on EnergyPlus was utilized to simulate the PV-DSF overall energy performance, simultaneously taking into account thermal power and daylight. Based on numerical model, sensitivity analyses about air gap width and ventilation modes have been lead in Berkeley (California) with the aim to optimize unit's structure design and operational strategy of PV-DSF. Via simulation, the overall energy performance including thermal, power and daylighting of the optimized PV-DSF was evaluated using the typical meteorological year (TMY) weather data. It was found that per unit area of the proposed PV-DSF was able to generate about 65 kW h electricity yearly. If high efficiency cadmium telluride (CdTe) semi-transparent PV modules are adopted, the annual energy output could be even doubled. The PV-DSF studied, also featured good thermal and daylighting performances. The PV-DSF can effectively block solar radiation while still providing considerable daylighting illuminance. Due simply to excellent overall energy performance, a PV-DSF at Berkeley can reduce net electricity use by about 50% compared with other commonly used glazing systems. Efficiency improvements of semi-transparent PV modules would further increase the energy saving potential of a PV-DSF and thus making this technology more promising.
机译:本文介绍了在凉爽的夏季地中海气候区中通风的光伏双层皮肤外墙(PV-DSF)的年度总体能源性能和节能潜力。利用基于EnergyPlus的数值模拟模型来模拟PV-DSF的整体能源性能,同时考虑到火力和日光。基于数值模型,在加利福尼亚州伯克利市进行了有关气隙宽度和通风方式的敏感性分析,旨在优化PV-DSF的装置结构设计和运行策略。通过模拟,使用典型的气象年(TMY)气象数据评估了优化后的PV-DSF的总体能源性能,包括热量,功率和采光。已经发现,所提出的PV-DSF的每单位面积每年能够发电约65 kWh。如果采用高效碲化镉(CdTe)半透明光伏组件,年发电量甚至可能翻倍。研究的PV-DSF还具有良好的散热和采光性能。 PV-DSF可以有效地阻挡太阳辐射,同时仍提供可观的日光照度。仅仅由于出色的整体能源性能,与其他常用的玻璃系统相比,伯克利的PV-DSF可以减少约50%的净用电量。半透明光伏组件的效率提高将进一步提高PV-DSF的节能潜力,从而使该技术更具前景。

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