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The role of nanomaterials in the enhancement of non-concentrating solar collectors technology

机译:纳米材料在增强非集中式太阳能收集器技术中的作用

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摘要

The comparison of various nanomaterials' effects on the performance of solar flat-plate collectors has not been drawn thoroughly in the reported literature. In this paper, modeling of a solar flat-plate collectors working with the mixture of water and different non-metallic and metallic nanomaterials has been carried out by means of MATLAB coding. A more appropriate exergy factor of solar radiation has been applied for exergy analysis; the pressure loss in collectors manifolds has been considered as well. Results show that uncommonly used cerium oxide, hybrid magnesium oxide/silver, and titanium carbide nanomaterials in flat-plate collector and commonly used ones such as copper oxide, nickel, iron, and copper have the potential to increase the heat transfer coefficient of the collector understudy. The value has been reported by the present study to be 90% for cerium oxide case. Accordingly, an improvement in energy efficiency up to 73% has been achieved at 4 vol.%. As another outcome, the application of these nanoparticles enhances the exergy destruction within the collector. Therefore, it would be advantageous for the environment by paying attention to the environmental impacts of exergy loss. Thus, employing nanomaterial science would help to advance the solar flat-plate collector engineering technology through higher energy productivity and lower environmental destructive impacts.
机译:在所报道的文献中,尚未对各种纳米材料对太阳能平板集热器性能的影响进行比较。在本文中,通过MATLAB编码对水和不同的非金属和金属纳米材料的混合物工作的太阳能平板集热器进行了建模。太阳辐射的更合适的火用因子已用于火用分析。收集器歧管中的压力损失也已被考虑。结果表明,平板集热器中不常用的氧化铈,混合氧化镁/银和碳化钛纳米材料以及诸如氧化铜,镍,铁和铜等常用材料有可能增加集热器的传热系数研究不足。本研究报道该值对于氧化铈而言为90%。因此,在4vol。%下已经实现了高达73%的能量效率的提高。作为另一结果,这些纳米粒子的应用增强了收集器内的(火用)破坏。因此,关注火用损失的环境影响对环境将是有利的。因此,采用纳米材料科学将通过更高的能源生产率和更低的环境破坏性影响来帮助推进太阳能平板集热器工程技术。

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