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Coating and carrier materials for plants for photovoltaic- and solar thermal generation, are applied on roofs of light-weight construction halls
Coating and carrier materials for plants for photovoltaic- and solar thermal generation, are applied on roofs of light-weight construction halls
The coating and carrier materials for plants for photovoltaic- and solar thermal generation, are applied on roofs of light-weight construction halls. The coating of the energy generation elements consists of mechanically stable, translucent and weather-resistant covering layers from native epoxy resins, which have no considerable self-absorption in the range of 320 = lambda = 1100 Nm. The carrier materials have lower specific masses of 0.9 = rho = 1.3 g/cm3 and low total mass of 2.4 = m = 8.1 kg/m2. The elements for generating thermal solar energy are embedded in the materials. The coating and carrier materials for plants for photovoltaic- and solar thermal generation, are applied on roofs of light-weight construction halls. The coating of the energy generation elements consists of mechanically stable, translucent and weather-resistant covering layers from native epoxy resins, which have no considerable self-absorption in the region of 320 = lambda = 1100 Nm. The carrier materials have lower specific masses of 0.9 = rho = 1.3 g/cm3 and low total mass of 2.4 = m = 8.1 kg/m2. The elements for generating thermal solar energy are embedded in the carrier materials, so that they are freely kept the plant and the total roof in the winter by warming. The photovoltaic elements are not necessarily covered with flat glass but through UV-hardening casting materials from native epoxides, which are highly hydrolysis resistant. The incorporation of the energy transducer in mechanically stable molds is realized by automatable casting techniques.
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机译:用于光伏和太阳能热发电的工厂的涂料和载体材料被应用于轻型建筑大厅的屋顶。能量产生元件的涂层由天然环氧树脂制成的机械稳定,半透明和耐候性覆盖层组成,它们在320 =λ= 1100 Nm的范围内没有明显的自吸收性。载体材料具有较低的比质量为0.9 = rho = 1.3g / cm 3和较低的总质量为2.4 = m = 8.1kg / m 2。用于产生热太阳能的元件被嵌入材料中。用于光伏和太阳能热发电的工厂的涂料和载体材料应用于轻型建筑大厅的屋顶。能量产生元件的涂层由天然环氧树脂制成的机械稳定,半透明和耐候性覆盖层组成,该覆盖层在320 =λ= 1100 Nm的范围内没有明显的自吸收性。载体材料具有较低的比质量为0.9 = rho = 1.3g / cm 3和较低的总质量为2.4 = m = 8.1kg / m 2。产生热太阳能的元素嵌入载体材料中,以便在冬季通过变暖自由地保存植物和整个屋顶。光电元件不一定要用平板玻璃覆盖,而是要通过紫外线固化的天然环氧树脂浇铸材料制成,这种材料具有很高的耐水解性。通过自动铸造技术将能量传感器结合到机械稳定的模具中。
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