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Analysis on the performance of a flat-plate volumetric solar collector using blended plasmonic nanofluid

机译:混合等离子纳米流体平板体积太阳能收集器的性能分析

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In this paper, thermal performance of a flat-plate volumetric solar collector using a blended plasmonic nanofluid as its heat transfer fluid was investigated. The blended plasmonic nanofluid used in the experiment was manufactured based on three different aspect ratios of gold nanorods (AuNRs), and it was designed to have broad-band absorption over the visible and near-infrared spectrum. The conversion process of solar radiation to heat in the blended plasmonic nanofluid was verified experimentally by measuring the temperature distribution inside the nanofluid under illumination of a tungsten halogen lamp and by comparing it with the simulation result. Through the theoretical investigation of a flat-plate volumetric solar collector, effects of channel depth, channel length, mass flow rate, and the magnitude absorption coefficient of the blended plasmonic nanofluid were characterized in order to establish a basic design. The results of this study will facilitate the development of highly efficient solar thermal collectors using plasmonic nanofluids. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了混合等离子纳米流体作为传热流体的平板体积太阳能收集器的热性能。实验中使用的混合等离激元纳米流体是根据金纳米棒(AuNRs)的三种不同长宽比制造的,并且设计为在可见光谱和近红外光谱中具有宽带吸收。通过在卤化钨灯的照射下测量纳米流体内部的温度分布并将其与模拟结果进行比较,通过实验验证了掺混等离子体纳米流体中太阳辐射向热的转化过程。通过对平板式太阳能集热器的理论研究,表征了通道深度,通道长度,质量流率以及混合等离子体纳米流体的量吸收系数的影响,以建立基本设计。这项研究的结果将促进使用等离激元纳米流体的高效太阳能集热器的开发。 (C)2016 Elsevier Ltd.保留所有权利。

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