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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 >Influence of an insulation partition on a seeded directional solidification process for quasi-single crystalline silicon ingot for high-efficiency solar cells
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Influence of an insulation partition on a seeded directional solidification process for quasi-single crystalline silicon ingot for high-efficiency solar cells

机译:绝缘隔板对高效太阳能电池准单晶硅锭晶种定向凝固工艺的影响

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摘要

An insulation partition was designed in a seeded directional solidification (DS) furnace of industrial-size to produce quasi-single crystalline silicon ingot for solar cells of high efficiency. We used a transient global model to study the effects of the insulation partition block on the temperature and thermal stress fields in the solidified silicon ingot during the solidification process. We validated the transient global model by comparing the calculations with the experimental measurements. Simulation results show that an insulation partition block can significantly reduce the total heating power consumption and influence the temperature and velocity fields in the silicon melt. We also found that the melt-crystal interface (mc interface) shape changes from concave to convex to the melt with a larger crystal growth rate with an insulation partition, while it always remains flat with a smaller crystal growth rate without a partition block. The axial temperature gradient and thermal stress in the grown silicon crystal increased with a partition block. The solar cells from the grown quasi-single crystalline silicon ingot exhibited higher short-circuit current (Isc) and open-circuit voltage (Voc). The average conversion efficiency of solar cells is increased to 17.8% and about 1.2% more than that based on mc-Si ingot from the conventional furnace.
机译:在工业规模的定向定向凝固(DS)炉中设计了一个绝缘隔板,以生产用于太阳能电池的准单晶硅锭,从而提高了效率。我们使用瞬态全局模型研究了绝缘分隔块对凝固过程中凝固的硅锭中温度和热应力场的影响。我们通过将计算结果与实验测量结果进行比较来验证瞬态全局模型。仿真结果表明,绝缘隔板可以显着降低总的加热功率消耗,并影响硅熔体中的温度和速度场。我们还发现,熔体-晶体界面(mc界面)的形状从凹到凸变为熔体,具有较高的晶体生长速率并带有绝缘隔板,而它始终保持平坦且具有较小的晶体生长速率而没有隔板。生长的硅晶体中的轴向温度梯度和热应力随着分隔块的增加而增加。来自生长的准单晶硅锭的太阳能电池表现出更高的短路电流(Isc)和开路电压(Voc)。太阳能电池的平均转换效率提高到了17.8%,比传统熔炉的mc-Si锭提高了约1.2%。

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