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Photovoltaic cell electrical heating system for removing snow on panel including verification

机译:用于在包括验证的面板上消除积雪的光伏电池电加热系统

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Small photovoltaic plants in private ownership are typically rated at 5 kW (peak). The panels are mounted on roofs at a decline angle of 20 degrees to 45 degrees. In winter time, a dense layer of snow at a width of e.g., 10 cm keeps off solar radiation from the photovoltaic cells for weeks under continental climate conditions. Practically, no energy is produced over the time of snow coverage. Only until outside air temperature has risen high enough for a rather long-time interval to allow partial melting of snow; the snow layer rushes down in an avalanche. Following this proposal, snow removal can be arranged electrically at an extremely positive energy balance in a fast way. A photovoltaic cell is a large junction area diode inside with a threshold voltage of about 0.6 to 0.7 V (depending on temperature). This forward voltage drop created by an externally driven current through the modules can be efficiently used to provide well-distributed heat dissipation at the cell and further on at the glass surface of the whole panel. The adhesion of snow on glass is widely reduced through this heating in case a thin water film can be produced by this external short time heating. Laboratory experiments provided a temperature increase through rated panel current of more than 10 degrees C within about 10 min. This heating can initiate the avalanche for snow removal on intention as described before provided the clamping effect on snow at the edge of the panel frame is overcome by an additional heating foil. Basics of internal cell heat production, heating thermal effects in time course, thermographic measurements on temperature distribution, power circuit opportunities including battery storage elements and snow-removal under practical conditions are described.
机译:在私有制小型光伏植物通常额定功率为5千瓦(峰值)。所述板在20度的角度下降到45度安装在屋顶。在冬季,在例如一个宽度的雪的致密层,10厘米挡从所述光伏电池为大陆气候条件下周的太阳辐射。实际上,没有能量在雪覆盖的时候产生的。只有直到外部空气温度上升高足够一个相当长的时间间隔,以允许雪部分熔融;雪层中的雪崩冲了下来。根据这一建议,除雪可电在一个快速的方式一个非常积极的能量平衡安排。光伏电池是一个大的接合面积二极管内用约0.6至0.7 V(取决于温度)的阈值电压。通过外部驱动电流通过模块创建此正向电压降可以被有效地用于提供关于在整个面板的玻璃表面在细胞均匀分布的散热,并进一步。的雪在玻璃上的粘附是通过该加热的情况下的薄水膜能够通过该外部短时间的加热来制造广泛减少。实验室实验提供约10分钟内通过超过10摄氏度额定面板电流的温度上升。如所描述的前设置在所述面板框架的所述边缘在雪地上的夹紧作用由附加加热箔克服这一加热可以发起针对除雪上意图雪崩。内部细胞产热的基本原理,在加热时间过程热效应,上温度分布热成像测量,功率电路的机会,包括在实际条件下电池的存储元件和除雪中描述。

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