首页> 外文期刊>Slovak Journal of Civil Engineering >Long-Term Weather Data Measurements From A Danish Climate Station And The Weather’s Influence On The Thermal Performance Of Solar Collectors
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Long-Term Weather Data Measurements From A Danish Climate Station And The Weather’s Influence On The Thermal Performance Of Solar Collectors

机译:丹麦气候站的长期天气数据测量以及天气对太阳能收集器热性能的影响

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A weather data evaluation from a climate station in Lyngby, Denmark, was carried out. Twenty years of measurements show that the increase in global radiation was almost 3.5 kWh/m2 per year, corresponding to a growth of the yearly global radiation of 7 % for the last 20 years. The global radiation variation between the least sunny year to the sunniest year was 20%. The increase in diffuse radiation was 1.9 kWh/m2 per year, corresponding to 20 yearsa€? growth of up to 7 %. The annual diffuse radiation of nearly 19 % varied from the least cloudy year to the cloudiest year. A small increase was measured for the ambient air temperature. The measurements showed a yearly increase of 0.04 K per year. The average yearly ambient air temperature variation from the coldest to the warmest year was 3.1 K. According to the seasonal growth of the parameters measured, the ambient air temperature and diffuse radiation increased the most in the summer period, while the global radiation significantly increased in the spring months. The calculations of the solar collector's thermal performance in Lyngby showed that the energy output was mostly dependent on beam radiation. The ambient air temperature did not have a high influence on the thermal performance of the solar collectors compared to the influence of the total solar radiation.
机译:来自丹麦Lyngby的气候站进行了气象数据评估。二十年的测量表明,全球辐射的增长每年几乎达到3.5 kWh / m2,这与过去20年每年的全球辐射增长7%相对应。最低晴天到最晴天之间的全球辐射变化为20%。每年扩散辐射的增加量为1.9 kWh / m2,相当于20年。增长高达7%。从最低多云的年份到最多云的年份,近19%的年漫辐射有所不同。测量到环境空气温度略有增加。测量表明,每年增加0.04K。从最冷到最热的一年,年平均环境空气温度变化为3.1K。根据所测参数的季节性增长,在夏季,环境空气温度和弥散辐射增幅最大,而在2009年全球辐射显着增加。春天的几个月。对Lyngby中太阳能收集器的热性能的计算表明,能量输出主要取决于束辐射。与总太阳辐射的影响相比,环境空气温度对太阳能收集器的热性能没有很大的影响。

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