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首页> 外文期刊>Jordan Journal of Mechanical and Industrial Engineering >Solar Net Collective Flux and Conversion Efficiency of the Nickel-Pigmented Aluminium Oxide Selective Absorber Prepared by Alternate and Reverse Periodic Technique in Different Prototype Volumes
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Solar Net Collective Flux and Conversion Efficiency of the Nickel-Pigmented Aluminium Oxide Selective Absorber Prepared by Alternate and Reverse Periodic Technique in Different Prototype Volumes

机译:不同原型体积下交替和反向周期性技术制备的镍染氧化铝选择性吸收体的太阳能净通量和转化效率

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Different constructed prototypes of different volumes were used to test different nickel- pigmented aluminium oxide selective absorber samples for photo thermal conversion. Different types of solar net collective flux (average, accumulative, maximum, minimum) were calculated. We found that there is a good linear mathematical relationship between the solar net collective fluxes with the prototype volume in the range 500 – 8000 ± 1 cm~3. Comparison between aluminium alloy, copper sheet, and the nickel-pigmented aluminium oxide selective absorber for net collective flux with nickel content and prototype volume were done. The highest net collective flux is for the sample of nickel content 60μg/cm~2 where: during a day, the accumulative net collective flux is 5586±1 W/m~2; while the average net collective flux is 372.4±0.1 W/m~2 in prototype of volume 500±1 cm~3. The lowest net collective flux is for the sample of nickel content 92μg/cm~2, where: during a day, the accumulative net collective flux is 4393±1 W/m~2; the average net collective flux is 292.9±0.1 W/m~2 in prototype of volume 8000±1 cm~3 .The percent conversion efficiency and absorption of merit are constants for all samples in all prototypes. The maximum average percent conversion efficiency is for sample of nickel content 60μg/cm~2 which lies in the range (72.0-74.0±0.1) %. However the least average percent conversion efficiency is for the sample of nickel content 92μg/cm~2 which lies in the range of (61.0-69.0±0.1) %. The best mathematical relations between the net collective flux and prototype volume were calculated. The correlation coefficients squared for all calculations are 0.91 on average.
机译:使用不同体积的不同构造的原型来测试用于光热转换的不同镍颜料氧化铝选择性吸收剂样品。计算了不同类型的太阳能净集体通量(平均,累积,最大值,最小值)。我们发现,在原型体积为500 – 8000±1 cm〜3的范围内,太阳净集体通量之间存在良好的线性数学关系。进行了铝合金,铜板和镍颜料氧化铝选择性吸收剂之间的比较,这些吸收剂具有镍含量和原型体积的净集体焊剂。镍含量为60μg/ cm〜2的样品的最高净集体通量为:一天中的累积净集体通量为5586±1 W / m〜2;体积为500±1 cm〜3的样机的平均净集体通量为372.4±0.1 W / m〜2。镍含量为92μg/ cm〜2的样品的净净集体通量最低,其中:一天的累积净集体磁通量为4393±1 W / m〜2;样品体积为8000±1 cm〜3时,样品的平均净净通量为292.9±0.1 W / m〜2。所有样品中样品的转化效率和优点吸收率均为常数。镍含量为60μg/ cm〜2的样品的最大平均转化效率为(72.0-74.0±0.1)%。但是,镍含量为92μg/ cm〜2的样品的平均转化率最低,为(61.0-69.0±0.1)%。计算了净集体通量和原型体积之间的最佳数学关系。所有计算的相关系数的平方平均为0.91。

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