Numerical assessment of meshless method for studying nanofluid natural convection in a corrugated wall square cavity

Youssef Es-Sabry, Mohammed Jeyar, Elmiloud Chaabelasri, Dris Bahia
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Abstract

This study aims to investigate the impact of various factors, such as wall shape, Rayleigh number, and volume fraction of nanoparticles, on natural convection in a square cavity that is filled with a mixture of Al2O3 solid particles and liquid water. The research employs numerical simulations based on the radial basis function meshless method and the artificial compressibility technique. The results of the study showed that the temperature distribution in the cavity was mostly uniform, except in the vicinity of the hot wall, while the flow was primarily dominated by convection as the Rayleigh number increased. Furthermore, the heat transfer rate increased with the volume fraction of nanoparticles, indicating the significance of nanoparticles in improving the thermal performance of the system. Additionally, the study found that the average Nusselt number, which characterizes the heat transfer efficiency, was highest when the cavity had a wavy wall. For single and double wavy walls, there were respective enhancements of 32% and 6% compared to a regular wall. Additionally, the Nusselt number increased as the volume fraction of nanoparticles, indicating a significant influence of nanoparticle concentration and wall geometry on the fluid flow and heat transfer characteristics in the square cavity. Consequently, this study's outcomes provide crucial insights into designing and optimizing thermal management systems, particularly those utilizing nanofluids.
无网格法研究方形波纹壁腔内纳米流体自然对流的数值评价
本研究旨在研究各种因素,如壁面形状、瑞利数和纳米颗粒的体积分数,对填充Al2O3固体颗粒和液态水混合物的方形腔内自然对流的影响。研究采用基于径向基函数无网格法和人工压缩技术的数值模拟。研究结果表明:除热壁附近外,腔内温度分布基本均匀,随着瑞利数的增加,流动主要以对流为主。此外,传热速率随纳米颗粒体积分数的增加而增加,表明纳米颗粒在改善体系热性能方面具有重要意义。此外,研究发现,表征换热效率的平均努塞尔数在具有波浪壁面的空腔中最高。对于单波浪墙和双波浪墙,与普通墙相比,分别有32%和6%的增强。此外,Nusselt数随着纳米颗粒体积分数的增加而增加,表明纳米颗粒浓度和壁面几何形状对方形腔内流体流动和传热特性有显著影响。因此,这项研究的结果为设计和优化热管理系统,特别是那些利用纳米流体的热管理系统提供了重要的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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