垂直双面光伏装置的设计考虑

IF 2.1 4区 工程技术 Q3 ENERGY & FUELS Journal of Solar Energy Engineering-transactions of The Asme Pub Date : 2023-04-12 DOI:10.1115/1.4062323
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引用次数: 1

摘要

垂直双面太阳能电池板阵列的预期年能量输出是着眼于阵列设计属性如何影响输出而建模的。我们考虑了模块高度、单元密度(单排或双排)、行间距和逆变器连接(模块排连接在一起或单独连接),以及包括旁路二极管。我们观察到,这些设计选择对每模块和每英亩的年能源产量有很大影响。我们根据太阳和相邻模块行的位置对瞬时亮度和阴影进行了建模,由于行间阴影效应,导致辐照度不均匀。根据辐照度,我们计算了不同设计策略全年的电流、电压和功率值。双高货架使用两个垂直堆叠的面向景观的模块,每英亩的功率增加值得注意,行间遮光仅略有增加。当模块设计中包括旁路二极管并使用改进的逆变器接线时,由于行间遮光造成的大部分损失得到了缓解,每英亩的总功率输出几乎翻了一番,20英尺的行间距使模块每英亩的功率增加了80%,40英尺的间距使模块的每英亩功率增加了90%以上)。
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Design Considerations for Vertical Bifacial Agrivoltaic Installations
The expected annual energy output of vertical bifacial solar panel arrays was modelled with an eye on how array design attributes affect the output. We considered module height, cell density (single- or double-high racking), inter-row spacing, and inverter connection (rows of modules wired together or separately), and the inclusion of bypass diodes. We observed that these design choices have a substantial impact on the annual energy yield on a per-module basis and per-acre basis. We modeled the instantaneous brightness and shading based on the position of the sun and adjacent rows of modules, which caused non-uniform irradiance due to inter-row shading effects. Based on the irradiance, we calculated current, voltage, and power values throughout a year for different design strategies. Double-high racking, which uses two landscape-oriented modules stacked vertically, offers noteworthy power gains per acre with only a modest increase of inter-row shading. When bypass diodes are included in the module design and improved inverter wiring is used, much of the loss due to inter-row shading is mitigated, and the total power output per acre is nearly doubled, with modules seeing an 80% power increase per acre for 20 ft row spacing, and over 90% power increase per acre for 40 ft spacing).
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来源期刊
CiteScore
5.00
自引率
26.10%
发文量
98
审稿时长
6.0 months
期刊介绍: The Journal of Solar Energy Engineering - Including Wind Energy and Building Energy Conservation - publishes research papers that contain original work of permanent interest in all areas of solar energy and energy conservation, as well as discussions of policy and regulatory issues that affect renewable energy technologies and their implementation. Papers that do not include original work, but nonetheless present quality analysis or incremental improvements to past work may be published as Technical Briefs. Review papers are accepted but should be discussed with the Editor prior to submission. The Journal also publishes a section called Solar Scenery that features photographs or graphical displays of significant new installations or research facilities.
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