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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Use of digital image correlation technique to determine thermomechanical deformations in photovoltaic laminates: Measurements and accuracy
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Use of digital image correlation technique to determine thermomechanical deformations in photovoltaic laminates: Measurements and accuracy

机译:使用数字图像相关技术确定光伏层压板的热机械变形:测量和精度

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摘要

An experimental technique to measure the deformation of solar cells in transparent PV modules is presented. This method uses the digital image correlation technique with a stereo camera system. Deformations resulting from thermal loading, where rather small deformations occur compared to tensile or bending experiments, are measured by viewing through the window of a climate chamber. We apply this method to measure the thermomechanical deformation of the gap between two crystalline silicon solar cells by viewing through the transparent back sheet of the laminate. Two PV laminates are prepared, each with three crystalline silicon solar cells that are embedded in transparent polymer sheets on a glass substrate. The first laminate (A) contains non-interconnected cells while the second laminate consists of a standard-interconnected cell string (B). We find the gap between two solar cells to deform 66.3±2 μm between 79.6 and -17.3 °C (laminate A) and 66.4±2 μm (laminate B) between 84.4 and -39.1 °C. We determine an accuracy of 1 μm in displacement for the gap experiment by measuring free expansion of a copper strip and averaging displacement values over regions with homogeneous deformation. Furthermore, the relative error contribution in strain due to the optical influence of the layers on top of the object surface is less than 1×10~(-6) for one camera. This is proven by a geometrical consideration.
机译:提出了一种测量透明光伏组件中太阳能电池变形的实验技术。该方法将数字图像相关技术与立体相机系统结合使用。通过观察气候室的窗户,可以测量热负荷导致的变形,与拉伸或弯曲实验相比,变形要小得多。我们通过观察层压板的透明背板,应用此方法来测量两个晶体硅太阳能电池之间的间隙的热机械变形。制备两个PV层压板,每个层压板都具有三个晶体硅太阳能电池,这些太阳能电池嵌入玻璃基板上的透明聚合物片中。第一层压板(A)包含非互连的电池,而第二层压板由标准互连的电池串(B)组成。我们发现两个太阳能电池之间的间隙在79.6和-17.3°C(A层)和66.4±2μm(B 4.4层)在84.4和-39.1°C之间变形。我们通过测量铜带的自由膨胀并在具有均匀变形的区域上平均位移值来确定间隙实验的位移精度为1μm。此外,对于一台摄像机,由于物体表面顶部各层的光学影响而引起的应变中的相对误差贡献小于1×10〜(-6)。几何上的考虑证明了这一点。

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