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DEVELOPMENT AND ANALYSIS OF THE HELIOSTAT FOCUSING AND CANTING ENHANCEMENT TECHNIQUE FOR FULL HELIOSTAT ALIGNMENTS

机译:完全定日镜对准的定日镜聚焦和增强技术的开发与分析

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Central receiver power towers are regarded as a proven concentrating solar power (CSP) technology for generating utility-scale electricity. In central receiver systems, improper alignment (canting and focusing) of heliostat facets results in beam spillage at the receiver and leads to significant degradation in performance. As a result, proper alignment of heliostats is critical for increasing plant efficiency. Past tools used for analyzing and correcting heliostat alignment at the National Solar Thermal Test Facility (NSTTF) have proven to be laborious and inaccurate, sometimes taking up to six hours per heliostat. In light of these drawbacks, Sandia National Labs (SNL) and New Mexico Tech (NMT) have created the Heliostat Focusing and Canting Enhancement Technique (H-FACET). H-FACET uses a high-resolution digital camera to observe the image of a stationary target reflected by a heliostat facet. By comparing this image to a theoretical image generated via a custom software package, technicians can efficiently identify and correct undesirable deviations in facet orientation and shape. Previous tests have only proven the viability of H-FACET for canting heliostats. As a result, SNL and NMT have expanded H-FACET's capabilities and analyzed the system's ability to simultaneously cant and focus heliostats. Initial H-FACET focusing test results have shown improved beam sizes and shapes for single facets. Furthermore, simulations of these tests revealed an approximated system accuracy of better than 1.80 milliradians. This accuracy accounted for technician, position, and additional error sources, suggesting that H-FACET was capable of focusing facets to an even greater accuracy than those seen in the initial tests. When implemented for simultaneous canting and focusing of heliostats, H-FACET has demonstrated its capability to increase peak flux and decrease beam size. These full alignment test results demonstrated an average total system accuracy of 1.17 milliradians on five heliostats. As before, this accuracy included multiple error sources which cannot be corrected by H-FACET. Additionally, these tests revealed that H-FACET can align heliostats in about 1 hour and 30 minutes. Finally, two heliostats aligned with H-FACET maintained average accuracies 1.46 and 1.24 milliradians over a four hour window centered about solar noon. This implies that H-FACET is capable of aligning heliostats to a true off-axis alignment over NSTTF's operating window. In light of these results, SNL has implemented both the focusing and canting portions of H-FACET at the NSTTF.
机译:中央接收器电塔被视为一种成熟的聚光太阳能(CSP)技术,用于产生公用事业规模的电力。在中央接收器系统中,定日镜小平面的不正确对准(倾斜和聚焦)会导致光束在接收器处溢出,并导致性能显着下降。结果,定日镜的正确对准对于提高工厂效率至关重要。事实证明,过去在国家太阳能热测试设施(NSTTF)上用于分析和校正定日镜对准的工具费力且不准确,有时每个定日镜最多要花费6个小时。鉴于这些缺点,桑迪亚国家实验室(SNL)和新墨西哥理工大学(NMT)已创建了定日镜聚焦和倾斜增强技术(H-FACET)。 H-FACET使用高分辨率数码相机观察定日镜小平面反射的静止目标的图像。通过将该图像与通过定制软件包生成的理论图像进行比较,技术人员可以有效地识别和纠正刻面方向和形状方面的不良偏差。先前的测试仅证明了H-FACET对定日镜倾斜的可行性。结果,SNL和NMT扩展了H-FACET的功能,并分析了系统同时倾斜和聚焦定日镜的能力。最初的H-FACET聚焦测试结果表明,单面的光束尺寸和形状有所改善。此外,对这些测试的仿真显示出近似的系统精度优于1.80毫弧度。这种准确性说明了技术人员,位置和其他错误来源,这表明H-FACET能够将刻面聚焦到比初始测试中更高的准确度。当用于同时定日镜的倾斜和聚焦时,H-FACET已证明其具有增加峰值通量和减小光束大小的能力。这些完全对准测试结果表明,五个定日镜的平均总系统精度为1.17毫弧度。和以前一样,此精度包括多个错误源,而这些错误源无法通过H-FACET进行纠正。此外,这些测试表明,H-FACET可以在大约1小时30分钟内对准定日镜。最后,两个与H-FACET对准的定日镜在以太阳正午为中心的四个小时内保持了平均精确度1.46和1.24毫弧度。这意味着H-FACET能够在NSTTF的操作窗口上将定日镜对准真正的离轴对准。根据这些结果,SNL已在NSTTF实施了H-FACET的聚焦和倾斜部分。

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