Suppr超能文献

用于直接太阳能热吸收的等离子体纳米壳混合纳米流体的光热特性

Photothermal properties of plasmonic nanoshell-blended nanofluid for direct solar thermal absorption.

作者信息

Duan Huiling, Chen Rongjie, Zheng Yuan, Xu Chang

出版信息

Opt Express. 2018 Nov 12;26(23):29956-29967. doi: 10.1364/OE.26.029956.

Abstract

The excitation of localized surface plasmon at the metal nanoparticles can significantly enhance the absorption of solar energy. However, the absorption peak is sharp at the resonant frequency. To achieve a broadband absorption, the blended nanofluid formed by SiO/Ag nanoshells of different core size and shell thickness is employed. The blended nanofluid has a good solar absorption property, whose extinction spectrum matches the solar spectrum well. The transient temperature response of the nanofluid is simulated. It is found that the photothermal performance of the solar thermal collector is related to the geometric parameters and operation conditions of the solar collector, and the optical and thermophysical properties of nanofluid. As the flow velocity increases, the outlet temperature is gradually reduced. But, the collector efficiency is increased since less heat is lost to the environment via convection as nanofluid flows fast in the channel. In order to obtain a large outlet temperature at high velocity, it can be considered to elongate the channel length. Due to the strong extinction properties of the blended nanofluid, the required volume fraction can be significantly reduced, only 1/10 of that of Ag nanofluid for an equal temperature increases.

摘要

金属纳米颗粒处局域表面等离子体的激发能够显著增强太阳能的吸收。然而,在共振频率处吸收峰很尖锐。为了实现宽带吸收,采用了由不同核尺寸和壳厚度的SiO/Ag纳米壳形成的混合纳米流体。该混合纳米流体具有良好的太阳能吸收性能,其消光光谱与太阳光谱匹配良好。对纳米流体的瞬态温度响应进行了模拟。研究发现,太阳能集热器的光热性能与太阳能集热器的几何参数和运行条件以及纳米流体的光学和热物理性质有关。随着流速增加,出口温度逐渐降低。但是,由于纳米流体在通道中快速流动时通过对流散失到环境中的热量较少,集热器效率提高。为了在高速下获得较高的出口温度,可以考虑延长通道长度。由于混合纳米流体具有很强的消光特性,所需的体积分数可以显著降低,在相同温度升高的情况下,仅为Ag纳米流体的1/10。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验