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Optimization of solar assisted heating system for electro-winning process in the copper complex

机译:铜厂电沉积过程中太阳能辅助加热系统的优化

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Through various solar assisted heating systems installed worldwide, large industrial scale applications include a very small fraction and further research is still needed in this area. Electrowinning in the copper complex is an industrial scale process that needs thermal energy for electrolyte heating. In this work, for the first time, the techno-economical assessment of using solar energy for this application is performed. Sarcheshmeh copper mine, Kerman, Iran is selected as the case study. System components are modeled and the annual performance is evaluated. To economically optimize the collector arrangement and sizes of storage tank and solar farm, a single-objective as well as a multi-objective genetic algorithm is used. Then, the effects of type and orientation of collector and heat transfer fluid on the system performance are studied. Results demonstrated that a system of 5000–6000 square meters of collectors (depending on the selected collector), facing south, 150–250 cubic meters of stratified storage tank with a height to diameter ratio of three can supply 40–78% of the total heat demanded. This leads to around a 970 tonnes reduction in carbon dioxide emissions each year, which is quite significant, especially in terms of reducing global warming. Payback period varies between 6 and 10 years.
机译:通过在全球范围内安装的各种太阳能辅助加热系统,大型工业规模的应用只占很小的一部分,在这一领域仍需要进一步的研究。铜络合物中的电解沉积是工业规模的过程,需要热能来加热电解质。在这项工作中,首次进行了将太阳能用于此应用的技术经济评估。案例研究选择了伊朗克尔曼的Sarcheshmeh铜矿。对系统组件进行建模并评估年度绩效。为了经济地优化储罐和太阳能发电场的收集器布置和尺寸,使用了单目标遗传算法和多目标遗传算法。然后,研究了集热器和传热流体的类型和方向对系统性能的影响。结果表明,一个5000-6000平方米的集水系统(取决于所选的集水器),朝南,150-250立方米的分层储罐,高度与直径的比率为3,可以提供总量的40-78%需要热量。这导致每年减少约970吨的二氧化碳排放,这非常重要,尤其是在减少全球变暖方面。投资回收期为6至10年。

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