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On the evaluation of wind loads on solar panels: The scale issue

机译:关于评估太阳能电池板上的风荷载:规模问题

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Solar power can improve the quality of life and reduce dependency on traditional energies that are a significant source of pollution and global warming. Solar panels are common devices used for collecting solar energy. To balance between sustainability and resilience, it is essential to provide an accurate estimate of the design wind loads for the solar panels. Traditionally design wind loads for buildings and other structures are obtained using building codes and standards. The solar panels represent a relatively recent technology and indeed there is no complete guidance ready for codification of wind loads on these types of structures. Available wind tunnel data show discrepancies in wind loads on solar panels, owing to inconsistent model scales and test flows, among other factors. To eliminate such discrepancies in the test results and to allow for accurate wind load estimation, the current paper investigates the geometric scale and the inflow turbulence characteristics as potential causes of high uncertainties. Computational fluid dynamics (CFD) simulations are employed and results are compared with available wind tunnel data, as a complementary tool with a potential to simulate wind loads at full-scale. The results show that the geometric scale is a primary reason for the discrepancies in peak wind loads, which can be avoided by adapting the inflow turbulence and using a proper testing protocol. The results show an evidence of the correctness of a hypothesis that the lack of large-scale turbulence can dramatically affect peak wind loads on test objects. Consequently, recommendations are articulated regarding the best usage of the available wind load estimation tools. This is expected to lead to consistent and accurate results from wind tunnel testing and CFD simulations, a crucial step toward codification of wind loads on solar panels. (C) 2016 Elsevier Ltd. All rights reserved.
机译:太阳能可以改善生活质量并减少对传统能源的依赖,而传统能源是污染和全球变暖的重要来源。太阳能电池板是用于收集太阳能的常见设备。为了在可持续性和弹性之间取得平衡,必须准确估算太阳能电池板的设计风荷载。传统上,建筑物和其他结构的设计风荷载是使用建筑物规范和标准获得的。太阳能电池板代表了一种相对较新的技术,实际上还没有完整的指南来准备将这些类型的结构上的风荷载编码。现有的风洞数据显示,由于模型比例尺和测试流量不一致等原因,太阳能电池板上的风荷载存在差异。为了消除测试结果中的这种差异并进行准确的风荷载估算,当前的论文研究了几何标度和流入湍流特性,这是造成高度不确定性的潜在原因。使用计算流体动力学(CFD)模拟,并将结果与​​可用的风洞数据进行比较,以此作为一种补充工具,可以全面模拟风荷载。结果表明,几何比例尺是造成峰值风荷载差异的主要原因,可以通过调整流入湍流并使用适当的测试规程来避免这种几何比例。结果证明了以下假设的正确性:缺乏大的湍流会极大地影响测试对象的峰值风载荷。因此,提出了有关可用风负荷估算工具的最佳用法的建议。预计这将使风洞测试和CFD模拟产生一致且准确的结果,这是将太阳能面板上的风荷载编码的关键一步。 (C)2016 Elsevier Ltd.保留所有权利。

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