Study of Vertically Oriented Solar Battery by Exposure of Concentrated Solar Radiation

A. K. Esman, G. L. Zykov, V. A. Potachits, V. K. Kuleshov
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Abstract

Solar power is one of the largest sectors of the global electric and heat power industry. In search of new energy sources, scientists and engineers around the world are increasingly turning their attention to solar batteries, which can be a suitable replacement for non-renewable energy sources. Vertically oriented solar batteries will generate electricity throughout the daylight hours, which eliminates use of additional equipment. The paper proposes a 3D model of a solar battery with a vertical orientation of its modules, as well as the calculation and evaluation of temperature characteristics and the range of efficiency variations obtained under conditions of both the diurnal and seasonal changes in ambient temperature, and the power density changes of concentrated solar radiation, the maximum values of which were chosen equal to 1; 5 and 10 kW/m 2 . The dependences of the maximum values of the solar battery temperature and the temperature gradient inside it, as well as the dependences of the minimum, average and maximum values of the radiative heat flux to the solar battery surface in the presence and absence of temperature stabilization of the heat sink backside versus the time of day in the middle of January and July have been plotted. As calculations have shown, at the solar radiation concentration of 10 kW/m 2 , the efficiency in July is increased by more than 2 times due to the use of thermoelectric converters in the battery. Moreover, according to the obtained results, when the solar modules are oriented vertically, temperature gradients and, consequently, the total efficiency of the solar battery and power generation time will be greater compared to the horizontal position of the solar modules, which will reduce operational costs.
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聚光辐照垂直定向太阳能电池的研究
太阳能发电是全球电力和热能工业中最大的部门之一。在寻找新能源的过程中,世界各地的科学家和工程师越来越多地将注意力转向太阳能电池,它可以成为不可再生能源的合适替代品。垂直方向的太阳能电池将在白天产生电力,从而消除了额外设备的使用。本文建立了组件垂直方向的太阳能电池三维模型,计算和评价了环境温度日变化和季节变化以及太阳集中辐射功率密度变化(取最大值为1)下的温度特性和效率变化范围;5和10千瓦/米2。绘制了1月中旬和7月太阳电池温度最大值与电池内部温度梯度的关系,以及散热器背面有无温度稳定时太阳电池表面辐射热通量的最小值、平均值和最大值与时间的关系。计算表明,在太阳辐射浓度为10 kW/m 2时,由于在电池中使用热电转换器,7月份的效率提高了2倍以上。此外,根据所获得的结果,当太阳能组件垂直放置时,温度会发生梯度,因此太阳能电池的总效率和发电时间会比太阳能组件水平放置时更大,这将降低运行成本。
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