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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
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نویسنده
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Wazwaz A. ,Salmi J. ,Bes R.
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منبع
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jordan journal of mechanical and industrial engineering - 2010 - دوره : 4 - شماره : 1 - صفحه:177 -192
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چکیده
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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 cm3. 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/cm2 where: during a day, the accumulative net collective flux is 5586±1 w/m2; while the average net collective flux is 372.4±0.1 w/m2 in prototype of volume 500±1 cm3. the lowest net collective flux is for the sample of nickel content 92μg/cm2, where: during a day, the accumulative net collective flux is 4393±1 w/m2; the average net collective flux is 292.9±0.1 w/m2 in prototype of volume 8000±1 cm3 .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/cm2 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/cm2 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.
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کلیدواژه
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Selective Absorber; Nickel-Pigmented Aluminium Oxide ,Prototype ,Net Collective Flux ,Conversion Efficiency ,Absorption of Merit
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آدرس
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Dhofar University, College of Engineering, Department of Chemical Engineering, Oman, Cap Delta - Parc Technologique Delta Sud, Marion Technologies Nanomaterials, Nanostructured Materials & Ceramic Powders, France, Université Paul Sabatier, CIRIMAT/LCMIE, France
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پست الکترونیکی
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arefwazwaz@hotmail.com
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Authors
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