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Effect Of Cloudless Sky Parameters On Global Spectral Solar Radiation Within 0.3-1.1 μm Region

机译:无云天空参数对0.3-1.1μm区域内全球光谱太阳辐射的影响

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The aim of this study is to evaluate the effect of cloudless sky parameters on global spectral solar radiation over the complete solar spectrum (0.3-1.1 μm) in Bangi, Malaysia using SPCTRAL2 parametric model written by MATLAB. The results show that there is a noticeable attenuation in the various spectral global solar irradiance regions when the solar zenith angle becomes larger than 50°. The global solar irradiance at a solar zenith angle 80° has a value of about 146 W m~(-2)μm at a wavelength of 0.46 μm but it increases to about 525 W m~(-2)μm~(-1) at a solar zenith angle 10° at the same wavelength. The impact of water vapor on spectral global solar radiation is clear in the visible and near infrared wavelengths between 0.55 and 1.0 μm does not affect the spectral UV. Whereas the ozone effect is especially within the wavelength ranged between (0.3-0.35 μm and 0.49-0.73 μm and there is a strong absorption in monochromatic wavelength 0.469, 0.610 and 0.645 μm. finally the turbidity parameter β has a strong influence on the spectral global solar radiation. The effect of the turbidity parameter β becomes strong when p is equal to 0.20 (turbid) or more and this is due to the increment in the air pollution in the atmosphere. However, the wavelength exponent α, has only a minor influence on spectral irradiance. The overall results of this case study show that the spectral global solar radiation is very influenced by an increment or decrement of cloudless sky parameters except the wavelength exponent α.
机译:这项研究的目的是使用MATLAB编写的SPCTRAL2参数模型来评估马来西亚班吉的完整太阳光谱(0.3-1.1μm)上无云的天空参数对全球光谱太阳辐射的影响。结果表明,当太阳天顶角大于50°时,各个光谱全局太阳辐照度区域都有明显的衰减。太阳天顶角为80°时的总太阳辐照度在0.46μm的波长下约为146 W m〜(-2)μm,但增加到约525 W m〜(-2)μm〜(-1)在相同波长下太阳天顶角为10°。在可见光和近红外波长(介于0.55和1.0μm之间)中,水蒸气对光谱整体太阳辐射的影响是显而易见的,不会影响光谱UV。臭氧效应尤其在(0.3-0.35μm和0.49-0.73μm之间)的波长范围内,并且单色波长0.469、0.610和0.645μm有很强的吸收率,最后浊度参数β对光谱的总谱有很大的影响。当p等于0.20(浊度)或更大时,浊度参数β的影响变强,这是由于大气中空气污染的增加,但是波长指数α仅具有很小的影响。该案例研究的总体结果表明,除了波长指数α之外,无云天空参数的增减极大地影响了全球光谱太阳辐射。

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