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- W2369133066 abstract "This paper describes an hourly incident solar radiation model under actual weather and terrain conditions,which could be used to calculate the long term global radiation,direct radiation and diffuse radiation flux in large regions,with high spatial and temporal resolution.Based on the parameterized radiation transfer theory,the model just uses NCEP/NCAR data and the topographical data,such as the DEM data,hill slope data and hill aspect data.The model was successfully used to calculate the hourly solar radiation with a spatial resolution of 1km 1km of the Heihe river basin with a catchment area 13×10~(4) km~(2)in the whole 2002.The coordinate is set up on Alberts projection.Because the model is based on the parameterized radiation transfer theory,there is no adjustable parameter,and the global radiation is calculated from the diffuse and direct radiation flux.But there are only global radiation data observed at the 3 automatic stations,thus we just use global radiation to calibrate the model.The 3 automatic stations respectively lie in mountainous area(named Xishui),oasis area(named Linze),and desert area(named Erjinaqi) of the Heihe river basin.The relationship between the observed hourly global radiation and the calculated series is not high at the Xishui station,with the correlation coefficient R~(2)=0.71,and at the Linze and the Erjinaqi station,R~(2)=0.90 and R~(2)=0.91,respectively.However,there are some calculated global radiation data is different largely from the observed data.The main reason of the result are not good is that the total cloud percent data from the NCEP/NCAR have not the high spatial and temporal resolution as the task required;another reason is that the spatial resolution of the observed data disagrees with that of the calculated ones." @default.
- W2369133066 created "2016-06-24" @default.
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- W2369133066 date "2006-01-01" @default.
- W2369133066 modified "2023-09-23" @default.
- W2369133066 title "Hourly Incident Solar Radiation Model under Actual Weather and Terrain Conditions:A Case Study in Heihe River Basin" @default.
- W2369133066 hasPublicationYear "2006" @default.
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