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首页> 外文期刊>Solar Energy >Continuous oscillation of a compact solar-pumped Cr, Nd-doped YAG ceramic rod laser for more than 6.5 h tracking the sun
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Continuous oscillation of a compact solar-pumped Cr, Nd-doped YAG ceramic rod laser for more than 6.5 h tracking the sun

机译:紧凑的太阳能泵浦的Cr掺杂Nd的YAG Cr陶瓷棒激光器连续振荡超过6.5小时,以追踪太阳

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摘要

Remaining key challenges for solar-pumped lasers (SPLs) to be applied for terrestrial solar energy utilization are (1) improvement of energy conversion efficiency and (2) ability of continuous laser oscillation during the day time. To address the latter challenge (2), a compact SPL employing a rigid 76.2 mm caliber paraboloidal mirror and a 10 mm-long, 1 mm diameter Cr, Nd-doped YAG ceramic rod was developed to realize more stable oscillation performance by introducing rapid cooling by freeatural air convection and increased mechanical stability during wind exposure in contrast to the conventional large solar pumped lasers (SPLs) employing typically a 2 m size conversing lens or mirror. Arrays of the compact SPLs could be used for harvesting sunlight across a large area. Outdoor, solar tracking experimentation with the compact SPL yielded continuous oscillation exceeding 6.5 h, improving upon previously determined maximum continuous oscillation times of 11 min. This is an indispensable experimental step if SPLs are to be applied to terrestrial solar energy utilization.
机译:用于地面太阳能利用的太阳能泵浦激光器(SPL)仍然面临的主要挑战是(1)提高能量转换效率和(2)白天连续激光振荡的能力。为了应对后一个挑战(2),开发了一种紧凑的SPL,该透镜采用76.2 mm刚性口径抛物面镜和10 mm长,直径1 mm的Cr掺杂Nd YAG陶瓷棒,通过引入快速冷却来实现更稳定的振荡性能与通常使用2 m大小的转换透镜或反射镜的常规大型太阳能泵浦激光器(SPL)相比,在自然风中自由/自然空气对流和增加的机械稳定性非常有利。紧凑型SPL阵列可用于大面积收获阳光。紧凑型SPL在户外进行的太阳跟踪实验产生的连续振荡超过6.5小时,与之前确定的11分钟最大连续振荡时间相比有所改善。如果将SPL应用于地面太阳能利用,则这是必不可少的实验步骤。

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