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An open-source CFD model for computing thermal effect in the context of laser-induced semiconductor processing in photovoltaic applications

机译:用于在光伏应用中的激光诱导半导体加工中计算热效应的开源CFD模型

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Thermal treatment by means of lasers enables to process industry compatible photovoltaic solar cells by improving its materials' physical, optical, and chemical properties. In order to achieve a high-quality processing result as well as optimisation and characterisation, a detailed understating on the laser-induced photovoltaic solar cells processing is absolutely necessary, which arguably may not be possible using the experimental techniques. Hence, this contribution presents a numerical model within the open-source CFD platform, known as OpenFOAM, for simulating laser-induced heat transfer and phase change phenomena in the context of photovoltaic solar cells processing. Upon development, the model was implemented to simulate three relevant and available experimental cases of photovoltaic solar cells processing: (1) laser annealing of silicon wafer with fixed continuous wave (CW) laser beam, (2) CW diode laser annealing of silicon thin-film deposited on glass substrate, and (3) nanosecond pulse laser-induced melting and solidification of silicon wafer. In all of the cases, an excellent agreement was observed between the numerical and experimental results, which not only demonstrate the accuracy but also the capability of the model to capture and explain the required thermal phenomena in processing photovoltaic solar cells. Therefore, the present contribution may simply be used as a state-of-the-art of modelling and optimisation of the considered process, and indeed other related laser-processing fabrication steps, when the correct model options are chosen. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过激光进行热处理,可以通过改善其材料的物理,光学和化学特性,来处理与工业兼容的光伏太阳能电池。为了获得高质量的处理结果以及优化和表征,绝对需要对激光诱导的光伏太阳能电池的处理进行详细说明,而使用实验技术可能无法做到这一点。因此,此贡献提供了一个称为OpenFOAM的开源CFD平台内的数值模型,用于在光伏太阳能电池处理的情况下模拟激光诱导的热传递和相变现象。开发后,该模型得以实施,以模拟光伏太阳能电池处理的三个相关且可用的实验案例:(1)使用固定连续波(CW)激光束对硅晶片进行激光退火,(2)对硅薄的CW二极管激光退火,薄膜沉积在玻璃基板上,以及(3)纳秒脉冲激光诱导的硅晶片熔化和固化。在所有情况下,在数值和实验结果之间都观察到了极好的一致性,这不仅证明了准确性,而且还证明了该模型捕获和解释处理光伏太阳能电池所需的热现象的能力。因此,当选择正确的模型选项时,当前的贡献可以简单地用作所考虑的过程以及其他相关激光加工制造步骤的建模和优化的最新技术。 (C)2019 Elsevier B.V.保留所有权利。

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