SOLAR MODULES WITH EXTENDED RATED WORK
https://doi.org/10.15518/isjaee.2015.19.007
Abstract
The laboratory of solar photovoltaic modules VIESH proposed the using in solar photovoltaic modules as a filler-sealer the polysiloxane gels, which are rarely linked structure formed during hydrosilyсation. Significant increasing the service life of solar modules at the level of the nominal power, their stable operation with concentrators and reduction of energy consumption is provided by using bicomponent polysiloxane compound as the aggregate material, which solidifies in the presence of a platinum catalyst to a state of low modulus gel. The paper deals with the technology and installation, developed in VIESH, for sealing of solar photovoltaic modules with the two-fold increased service life of solar modules at the level of the nominal power compared with the standard laminate solar modules.
About the Authors
D. S. StrebkovRussian Federation
DSc (engineering), the scientific director of the institute, VIESH
I. S. Persits
Russian Federation
Ph.D (engeneering)
References
1. Strebkov D.S., Persits I.S., Chirkov A.V., Kuznetsov K.V. Opytno-promyšlennaâ tehnologiâ proizvodstva fotoèlektričeskih modulej i komplekt oborudovaniâ dlâ eë realizacii. Trudy 7-j Meždunarodnoj naučno-tehničeskoj konferencii «Ènergoobespečenie i ènergosbereženie v selʹskom hozâjstve. P. 4. Vozobnovlâemye istočniki ènergii. Mestnye ènergoresursy. Èkologiâ» (Moscow, 18-19 May 2010). Moscow: GNU VIÈSH Publ., 2010, pp. 8792 (in Russ.).
2. Sitec Solar GmbH. Sitec: Module production using adhesive rather than EVA. Photon International, 2008, no. 6, p. 68 (in Eng.).
3. Christoph Podewils. Photovoltaic insulation glass. A German company has developed production equip-ment for module manufacturing without the need for encapsulation foils. Photon International, 2007, no. 7, pp. 2634 (in Eng.).
4. Christoph Podewils. A nice module. Apollon Solar presents its line for innovative module technology. Pho-ton International, 2008, no. 6, pp. 1826 (in Eng.).
5. Dow Corning Corp. Module encapsulation: Silicone rather than plastic. Photon International, 2009, no. 4, p. 108 (in Eng.).
6. Poulek V., Strebkov D.S., Persits I.S., Libra M. Towards 50 years lifetime of PV panels laminated with silicone gel technology. Solar Energy, 2012, vol. 86, pp. 31033108 (in Eng.).
7. Panchenko V.A. Review and applications of solar modules developed and produced by GNU VIESH. Re-search in Agricultural Electric Engineering, 2014, vol. 2, no. 3, pp. 8289 (in Eng.).
8. Strebkov D.S., Majorov V.A., Panchenko V.A. Solnečnyj teplofotoèlektričeskij modulʹ s parabo-lotoričeskim koncentratorom. International Scientific Journal «Alʹternativnaâ ènergetika i èkologiâ» (IS-JAEE), 2013, no. ½, pp. 3539 (in Russ.).
9. Strebkov D.S., Majorov V.A., Panchenko V.A, Osʹmakov M.I., Plohih S.A. Solnečnaâ ustanovka s matričnymi fotoèlementami i koncentratorom. Èlektro, 2013, no. 2. pp. 5052 (in Russ.).
10. Strebkov D.S., Kirsanov A.I., Irodionov A.E., Panchenko V.A., Majorov V.A. Krovelʹnaâ solnečnaâ panelʹ Patent no. 2557272 RF МПК E04D 13/18. Izo-bretenie, 2015, no. 20 (in Russ.).
11. Strebkov D.S., Kirsanov A.I., Irodionov A.E., Panchenko V.A.Solnečnyj modulʹ s koncentratorom (varianty) Rešenie o vydače patenta no. 2014121269/20 RF. Izobretenie, 2015 (in Russ.).
Review
For citations:
Strebkov D.S., Persits I.S. SOLAR MODULES WITH EXTENDED RATED WORK. Alternative Energy and Ecology (ISJAEE). 2015;(19):55-60. (In Russ.) https://doi.org/10.15518/isjaee.2015.19.007