ADJUSTMENT OF LARGE SOLAR OVEN FLAT HELIOSTAT HELIOSTATS
Abstract
This paper presents an improved method for adjusting individual mirrors –facets of heliostats of a Big Solar Furnace (BSF) with a heat output of 1000 kW in Uzbekistan. Due to the fact that a BSF consists of 22,790 pieces of individual mirrors, the adjustment - setting a specific geometric position of these mirrors is very important. The process of adjusting the mirrors is very time consuming and lengthy. Often exactly the adjustments are influenced by subjective factors by the aligners. In order to improve the performance and accuracy of the alignment, the facet of heliostats has applied the Technical Vision System (TVS), as well as improved the process of assessing the state of alignment and the processing of alignment data. The TVS consisting of a video camera, an interface, a personal computer and special software allows you to visually and accurately assess the alignment conditions of the heliostat facets before and after the alignment process. Allows you to save the data in computer memory for further processing and analysis. Allows you to create a database of the alignment status of each of the 62 heliostats of LSF. Special software developed by us allows you to quickly and accurately determine the deviations of the heliostat facets from the calculated geometric points in angular minutes. Based on the data obtained, you can build histograms, graphs, etc. for visual analysis of the heliostat alignment states before and after the alignment process.
References
Zakhidov R.A. Technology and testing of solar energy concentrating systems. Gujarat Energy Development Agency, Vadodara 1996. P. 186.
Yu.L. Bronshtejn. Geometriya i yustirovka krupnyh zerkalnyh sistem. M.: Iz-vo “DPK PRESS”, 2020 g. 818 s.
A.A.Kuchkarov, A. A.Kholmatov, Sh. A. Muminov, A. Abdurakmanov. Formation of Focusing Flat Composite Heliostats and Fresnel Mirror Concentrating Systems.International Journal of Advanced Research in Science, Engineering and Technology Vol. 6, Issue 10, October 2019.p. 1112011125.
Abdurahmanov i dr. Avtorskoe svidetelstvo №1815532. Sposob yustirovki geliostatov avtorefleksionnoj markoj. Zar. 11.10.1992.
Akbarov R.Y., Paizullakhanov M.S. Characteristic features of the energy modes of a large solar furnace with a capacity of 1000 kW. // Applied Solar Energy. 2018; 54(2): p. 99-109.
Kuchkarov A.A., Sobirov Yu.B., Kulakhmedov N.N., Mamatkosimov M.A., Akhadov Zh.Z., and Abdurakhmanov A.A. Adjustment of facets of flat and focusing heliostats, concentrators, and Fresnel mirror concentrzting systems. // Applied Solar Energy -USA. 2015. Vol. 51, No 2, pp. 151-155.
Abdurahmanov A.A. i dr. Sistema tehnicheskogo zreniya dlya operativnogo kontrolya energeticheskih harakteristik Bolshoj Solnechnoj Pechi // Geliotehnika. 1994. №6. S.30-32.
Abdurahmanov A. i dr. Metod izmereniya i kontrolya optiko-geometricheskih harakteristik zerkal i stekol // Geliotehnika. 2003. №1. S.72-75.
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