Podcast
Questions and Answers
Quelle est l'épaisseur du verre des panneaux FLASH et SPRING ?
Quelle est l'épaisseur du verre des panneaux FLASH et SPRING ?
Comment la technologie Shingle améliore-t-elle l'efficacité des panneaux solaires ?
Comment la technologie Shingle améliore-t-elle l'efficacité des panneaux solaires ?
Comment est fabriquée la technologie Shingle ?
Comment est fabriquée la technologie Shingle ?
Quel est l'effet du phénomène LID sur les panneaux solaires ?
Quel est l'effet du phénomène LID sur les panneaux solaires ?
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Comment calcule-t-on la quantité de chaleur produite par les panneaux SPRING de DualSun ?
Comment calcule-t-on la quantité de chaleur produite par les panneaux SPRING de DualSun ?
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Quel est le taux de dégradation typique des panneaux solaires lors de la première année d'utilisation ?
Quel est le taux de dégradation typique des panneaux solaires lors de la première année d'utilisation ?
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Comment les panneaux Shingle réduisent-ils le risque de points chauds ?
Comment les panneaux Shingle réduisent-ils le risque de points chauds ?
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Quelle est la capacité calorifique de l'eau-glycol ?
Quelle est la capacité calorifique de l'eau-glycol ?
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Study Notes
- The production of DualSun SPRING panels is directly linked to daily hot water consumption.
- DualSun's NOCT panels have improved photovoltaic characteristics in realistic test conditions.
- The glass thickness of FLASH and SPRING panels is 2.8mm and 3.2mm for other panels.
- Shingle technology in FLASH and SPRING panels provides better efficiency, resistance, and appearance.
- Shingle cells have a lower intensity per cell, reducing Joule losses and improving temperature performance.
- The Shingle manufacturing process involves laser cutting, cell placement, and string formation.
- Shingle panels have a unique circuit that reduces the risk of hotspots and improves efficiency in shading.
- The interconnection process in Shingle panels reduces internal mechanical stress.
- Traditional interconnection methods have a higher risk of cell cracking.
- Shingle technology uses a conductive adhesive that polymerizes at a lower temperature.
- The text discusses non-linear loss in value over time.
- During the first year of use, there is typically a degradation rate of 1 to 2.5%.
- This is primarily due to light-induced degradation.
- The LID phenomenon affects solar panels due to oxygen in the silicon wafer.
- The amount of heat provided by DualSun SPRING panels can be calculated using the formula Q=mCpT.
- The inputs required for the formula are the temperature difference, fluid volume, and fluid's calorific capacity.
- The formula calculates the amount of heat in joules.
- The mass of fluid is denoted by Dhutilisation.
- The calorific capacity of water-glycol is 3.5 J.kg-1.K-1, and water-salt or chlorine is 4 J.kg-1.K-1.
- The tension of impulse or shock resistance of FLASH Shingle 375 panels is 16,000V.
- The tension of impulse is also known as the tension of shock resistance.
- The LID phenomenon has been known in the industry for over 20 years.
- The LID phenomenon occurs in the first few hours of solar panel exposure to sunlight.
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Description
Test your knowledge on solar panel technology with this quiz! Learn about DualSun's innovative SPRING and FLASH panels, as well as the benefits of shingle technology. Discover the science behind light-induced degradation and how to calculate the amount of heat produced by SPRING panels. Challenge yourself with questions on shock resistance, interconnection methods, and more. Expand your understanding of solar panel technology with this informative quiz!