Noble MXene nanofluids' impact on solar collector effectiveness enhancement: a CFD numerical evaluation

Kaniz Farhana, Abu Shadate Faisal Mahamude, Kumaran Kadirgama, Rajan Jose
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Abstract

The thermal flat plate solar collector (FPSC) is a versatile solar harvesting system that may be integrated into various designs and base fluids. This study presents a novel investigation of using nanofluids to transfer thermal energy in an FPSC system. Using the governing equations in CFD simulations, the performance of an FPSC is studied numerically. The base fluid has been defined as a 60:40 blend of ethylene glycol and water. The effects of three distinct volume fractions of MXene nanofluids in the 0.01–0.1% range on the efficiency are investigated. The numerical findings revealed that employing MXene nanofluid increases outlet temperature efficiency by about 5.83%, 6.06%, and 6.31% when 0.01%, 0.05%, and 0.1% volume fractions of nanofluids are used, respectively. The research aims to create a validated numerical model that can be used to assess the effectiveness of FPSC utilizing ethylene glycol and water or other nanofluids of any mass fraction as a working fluid. To examine the overall effectiveness of the FPSC, a numerical model was created using Solidworks software and ANSYS ICEM CFD. The numerical findings revealed that (i) increasing the proportion of MXene nanofluid in the FPCS enhances efficiency to 0.1% volume fraction, and (ii) MXene nanoparticles may be used in the solar collector to improve efficiency.
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贵金属 MXene 纳米流体对提高太阳能集热器效率的影响:CFD 数值评估
热平板太阳能集热器(FPSC)是一种多功能太阳能收集系统,可集成到各种设计和基础流体中。本研究对使用纳米流体在 FPSC 系统中传输热能进行了新颖的调查。利用 CFD 仿真中的控制方程,对 FPSC 的性能进行了数值研究。基础流体被定义为 60:40 的乙二醇和水的混合物。研究了三种不同体积分数(0.01%-0.1%)的 MXene 纳米流体对效率的影响。数值研究结果表明,当纳米流体的体积分数为 0.01%、0.05% 和 0.1% 时,使用 MXene 纳米流体可使出口温度效率分别提高约 5.83%、6.06% 和 6.31%。该研究旨在创建一个经过验证的数值模型,用于评估利用乙二醇和水或其他任何质量分数的纳米流体作为工作流体的 FPSC 的有效性。为了检查 FPSC 的整体效果,使用 Solidworks 软件和 ANSYS ICEM CFD 创建了一个数值模型。数值研究结果表明:(i) 提高 MXene 纳米流体在 FPCS 中的比例可将效率提高到 0.1% 的体积分数;(ii) MXene 纳米粒子可用于太阳能集热器以提高效率。
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