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在非连续太阳跟踪条件下稳定发射激光功率。

Stable emission of solar laser power under non-continuous solar tracking conditions.

出版信息

Appl Opt. 2023 Apr 1;62(10):2697-2706. doi: 10.1364/AO.485158.

Abstract

Solar laser technology typically requires a highly accurate solar tracking system that operates continuously, which increases energy consumption and reduces the system's lifetime. We propose a multi-rod solar laser pumping approach to enhance solar laser stability under non-continuous solar tracking conditions. Using a heliostat, solar radiation is redirected toward a first-stage parabolic concentrator. At its focus, an aspheric lens further concentrates the solar rays onto five Nd:YAG rods positioned within an elliptical-shaped pump cavity. Numerical analysis using Zemax and LASCAD software showed that the tracking error width at 10% laser power loss for the five 6.5 mm diameter and 15 mm length rods was 2.20°, which is 50% higher than that of the solar laser in previous non-continuous solar tracking experiments. 2.0% solar-to-laser conversion efficiency was also attained.

摘要

太阳能激光技术通常需要一个高精度的太阳能跟踪系统,该系统需要持续运行,这会增加能源消耗并降低系统的寿命。我们提出了一种多棒太阳能激光泵浦方法,以增强在非连续太阳能跟踪条件下太阳能激光的稳定性。使用定日镜,将太阳辐射重新导向第一级抛物面聚光器。在其焦点处,非球面透镜进一步将太阳光线聚焦到五个位于椭圆形泵腔中的 Nd:YAG 棒上。使用 Zemax 和 LASCAD 软件进行的数值分析表明,对于五个直径为 6.5 毫米、长度为 15 毫米的棒,在 10%激光功率损失下的跟踪误差宽度为 2.20°,比以前的非连续太阳能跟踪实验中的太阳能激光高出 50%。还实现了 2.0%的太阳能到激光的转换效率。

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