Environmental influences on thermal performance of direct absorption solar collector filled with nanofluid

IF 6.3 2区 材料科学 Q2 ENERGY & FUELS Solar Energy Materials and Solar Cells Pub Date : 2025-04-01 Epub Date: 2025-01-14 DOI:10.1016/j.solmat.2025.113409
Morteza Mohammadi
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Abstract

Direct absorption flat solar collectors (DAFSC) have been drawn much attention to many residential heating purposes. It has been shown that thermal efficiency of these thermal devices will be enhanced if appropriate amount of nanoparticles volume concentration is exploited in collector. In the present study, first of all, a determination procedure for finding optimum amount of arbitrary chosen nanoparticles volume fraction utilized in DAFSC was presented by use of general chart of solar-weighted absorption coefficients against optical thickness of nanofluids in which the nanofluids extinction coefficients were predicted by independent Rayleigh scattering approximation model. This is an important step preventing either undesirable larger value of thermal losses from collector or reducing construction cost of nanofluid-based DAFSC due to smaller exploitation of nanoparticle volume concentration which can be considered as a part of novelty of current study. In the next step, an important designing parameter of collector namely overall heat transfer coefficient was predicted by utilization of thermal resistance network of DAFSC from which thermal losses of collector can be computed. Finally, among various environmental parameters affecting thermal performance of collector, it was found that by increasing wind speed from 0.125 to 16.2 m/s, energy and exergy efficiencies of DAFSC were severely reduced up to 30 % and 51 %, respectively. Furthermore, higher ambient air temperature and relative humidity can boost up thermal efficiency of collector up to 14 % while the role of ambient air temperature, solely, at constant value of other affecting parameters was quite minor.

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环境对纳米流体直接吸收太阳能集热器热性能的影响
直接吸收式平板太阳能集热器(DAFSC)在住宅采暖领域受到广泛关注。研究表明,在集热器中加入适量的纳米颗粒体积浓度,可以提高热效率。在本研究中,首先利用纳米流体的太阳加权吸收系数与光学厚度的一般图,提出了一种确定DAFSC中任意选择的纳米颗粒体积分数的最佳用量的方法,其中纳米流体的消光系数由独立的瑞利散射近似模型预测。这是防止收集器产生较大的热损失值或降低基于纳米流体的DAFSC的建造成本的重要一步,因为纳米颗粒体积浓度的开发较少,可以被认为是当前研究的新颖性的一部分。其次,利用DAFSC的热阻网络,预测集热器的重要设计参数——总传热系数,并以此计算集热器的热损失。最后,在影响集热器热性能的各种环境参数中,风速从0.125 m/s增加到16.2 m/s, DAFSC的能量效率和火用效率分别下降了30%和51%。此外,较高的环境空气温度和相对湿度可使集热器热效率提高14%,而环境空气温度在其他参数恒定时的作用很小。
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来源期刊
Solar Energy Materials and Solar Cells
Solar Energy Materials and Solar Cells 工程技术-材料科学:综合
CiteScore
12.60
自引率
11.60%
发文量
513
审稿时长
47 days
期刊介绍: Solar Energy Materials & Solar Cells is intended as a vehicle for the dissemination of research results on materials science and technology related to photovoltaic, photothermal and photoelectrochemical solar energy conversion. Materials science is taken in the broadest possible sense and encompasses physics, chemistry, optics, materials fabrication and analysis for all types of materials.
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