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A Comprehensive Approach for Modelling Horizontal Diffuse Radiation, Direct Normal Irradiance and Total Tilted Solar Radiation Based on Global Radiation under Danish Climate Conditions

机译:基于全球辐射的丹麦气候条件下水平漫射辐射,直接法向辐射和总倾斜太阳辐射建模的综合方法

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A novel combined solar heating plant with flat plate collectors (FPC) and parabolic trough collectors (PTC) was constructed and put into operation in Taars, 30 km north of Aalborg, Denmark in August 2015. To assess the thermal performance of the solar heating plant, global radiation, direct normal irradiance (DNI) and total radiation on the tilted collector plane of the flat plate collector field were measured. To determine the accuracy of the measurements, the calculated solar radiations, including horizontal diffuse radiation, DNI and total tilted solar radiation with seven empirical models, were compared each month based on an hourly time step. In addition, the split of measured global radiation into diffuse and beam radiation based on a model developed by DTU (Technical University of Denmark) and the Reduced Reindl correlation model was investigated. A new method of combining empirical models, only based on measured global radiation, was proposed for estimating hourly total radiation on tilted surfaces. The results showed that the DTU model could be used to calculate diffuse radiation on the horizontal surface, and that the anisotropic models (Perez I and Perez II) were the most accurate for calculation of total radiation on tilted collector surfaces based only on global radiation under Danish climate conditions. The proposed method was used to determine reliable horizontal diffuse radiation, DNI and total tilted radiation with only the measurement of global radiation. Only a small difference compared to measured data, was found. The proposed method was cost-effective and needed fewer measurements to obtain reliable DNI and total radiation on the tilted plane. This method may be extended to other Nordic areas that have similar weather.
机译:2015年8月,在丹麦奥尔堡以北30公里的塔尔(Taars)建造了一座带有平板集热器(FPC)和抛物槽集热器(PTC)的新型组合式太阳能采暖厂。该太阳能采暖厂投入运营。在平板收集器场的倾斜收集器平面上,测量了总体辐射,直接法向辐照度(DNI)和总辐射。为了确定测量的准确性,每个月都基于小时时间步长比较计算出的太阳辐射,包括水平漫射辐射,DNI和总倾斜太阳辐射以及七个经验模型。此外,还研究了基于DTU(丹麦技术大学)开发的模型和Reduced Reindl相关模型将测得的总辐射分为散射辐射和束辐射。提出了一种仅基于实测总辐射量结合经验模型的新方法,以估算倾斜表面上的每小时总辐射量。结果表明,DTU模型可用于计算水平面上的漫辐射,而各向异性模型(Perez I和Perez II)对于仅基于总辐射下的倾斜收集器表面上的总辐射的计算最为准确。丹麦的气候条件。所提出的方法仅通过对整体辐射的测量即可确定可靠的水平漫射辐射,DNI和总倾斜辐射。与测量数据相比,仅发现很小的差异。所提出的方法具有成本效益,并且需要较少的测量来获得可靠的DNI和倾斜平面上的总辐射。该方法可以扩展到天气类似的其他北欧地区。

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