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Numerical Analysis of Optimizing a Heat Sink and Nanofluid Concentration Used in a Thermoelectric Solar Still: an Economic and Environmental Stud

机译:优化热电太阳静止散热器和纳米流体浓度的数值分析:经济环境螺柱

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In this paper, mathematical modelling is performed for a group of fins in a heat sink in order to determine the optimum dimensionless thickness of the fins using 8 different types of cooling nanofluids including nanoparticles of aluminium, alumina, titanium, titanium dioxide, copper, copper oxide, iron and iron oxide (hematite) with water as the base fluid in a thermoelectric solar still. The heat sink is used to enhance thermoelectric cooling and heating to water. The flow crossing fins is considered laminar and fully developed. Copper with high thermal conductivity is considered as the material of flat plate fins. Different nanofluids with volume fractions of 1%, 3%, 5%, 7% and 9% with a nanoparticle diameter of 25, 50 and 75 nm are analyzed for fins with rectangular cross sections. Besides, the economic and environmental analysis is conducted on the thermoelectric solar still. It is also observed that the range of 3.65% to 3.95% is obtained for the optimum volume fraction in the used nanofluids. The carbon dioxide mitigation based on the environmental parameter and exergoenvironmental parameters in the solar still is about 23.78 tons of CO2 and 1.04 tons of CO2, respectively.
机译:在本文中,对散热器中的一组翅片进行数学建模,以确定使用8种不同类型的冷却纳米流体的鳍片的最佳无量纲厚度,包括铝,氧化铝,钛,二氧化钛,铜,铜,铜氧化物,铁和氧化铁(赤铁矿)用水作为热电太阳中的基础流体。散热器用于增强热电冷却和加热到水。流动穿越鳍片被认为是层流并完全发育。具有高导热率的铜被认为是平板翅片的材料。用矩形横截面分析用纳米颗粒直径为25,50和75nm的纳米颗粒直径为1%,3%,5%,7%和9%的不同纳米流体。此外,经济和环境分析仍在热电太阳能下进行。还观察到,在使用的纳米流体中的最佳体积分数中获得3.65%至3.95%的范围。基于环境参数和太阳能的exergoencironment参数的二氧化碳减缓仍然分别为23.78吨二氧化碳和1.04吨二氧化碳。

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