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ESTIMATION OF THE ENERGY OUTPUT OF A PHOTOVOLTAIC POWER PLANT IN THE AUSTRIAN ALPS

机译:奥地利阿尔卑斯山光伏电站的能量输出估算

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摘要

An output simulation is one of the first steps in planning a photovoltaic power plant (PVP) at a certain location. Various computer codes already exist to assess the energy output of a PVP, when fed with the relevant meteorological data. For the alpine area, however, there is no appropriate data considering the altitude of the site available. A computer code has been written to check the available raw data for plausibility and to fill in missing data synthetically. On the basis of 6 yr of measured data a test reference year (TRY) has been developed for the town of Leonding and the summit Loser. They are located just 80 km apart but have a 1250 m difference in their altitudes. For comparison, these new TRYs, together with other already existing TRYs from different places in a surrounding area of about 300 km, are used for calculation of the expected energy output of a PVP. A clear increase of energy yield with higher altitude can be observed. The summit Loser (1550 m), with the highest altitude investigated in this study, proved to be the most productive location. Besides the clearer sky and snow reflection, the lower temperature as well as better cooling of the panels by the wind in the Alps contribute to the higher amount of energy output.
机译:输出仿真是在特定位置规划光伏电站(PVP)的第一步。当馈入相关的气象数据时,已经存在各种计算机代码来评估PVP的能量输出。但是,对于高寒地区,没有考虑到可用场地高度的适当数据。编写了计算机代码,以检查可用的原始数据的合理性,并综合填充丢失的数据。根据6年的测量数据,已为Leonding镇和Loser峰制定了测试基准年(TRY)。它们相距仅80公里,但高度相差1250 m。为了进行比较,将这些新的TRY以及周围300公里周围不同地方的其他已经存在的TRY一起用于计算PVP的预期能量输出。可以观察到,随着海拔的升高,能量产量会明显增加。研究中调查的最高海拔的Loser峰(1550 m)被证明是生产力最高的地区。除了更清晰的天空和雪反射之外,较低的温度以及阿尔卑斯山的风能更好地冷却面板,也有助于提高能量输出量。

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