Enhanced heat transfer performance of silver Nanofluids as coolants in a helical Shell and tube heat exchanger: an experimental study

IF 1.7 4区 工程技术 Q3 MECHANICS Heat and Mass Transfer Pub Date : 2023-12-06 DOI:10.1007/s00231-023-03444-x
B. Devaraj Naik, Sivakumar Jaganathan, Srinivas Jayaraman, G. Muthu, Ratchagaraja Dhairiyasamy, Silambarasan Rajendran
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Abstract

Silver nanofluids have recently emerged as a promising coolant for enhancing heat transfer performance. This study experimentally investigates the heat transfer characteristics of silver nanofluid in a helical shell and tube heat exchanger. Spherical silver nanoparticles of 143 nm mean diameter were synthesized using a chemical reduction method and characterized comprehensively. The nanofluid was utilized as the tube-side coolant at volumetric concentrations of 1.5% and 2.5%, with its effectiveness compared to water. The impacts of concentration and fluid flow rate on heat transfer coefficient and effectiveness were evaluated under varying conditions. Results showed improved heat transfer performance using silver nanofluid, with the maximum enhancement at 2.5% concentration. The heat transfer coefficient and effectiveness increased with higher flow rate, demonstrating the importance of optimizing fluid flow conditions. This study provides new insights into harnessing silver nanofluids for thermal engineering applications and quantifies the effects of concentration and flow on the viability of silver nanofluids as efficient coolants in heat exchangers.

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增强螺旋管壳式热交换器中纳米银流体作为冷却剂的传热性能:一项实验研究
最近,纳米银流体已成为一种很有前途的冷却剂,可提高传热性能。本研究通过实验研究了银纳米流体在螺旋管壳式热交换器中的传热特性。采用化学还原法合成了平均直径为 143 nm 的球形银纳米粒子,并对其进行了全面表征。纳米流体被用作体积浓度为 1.5% 和 2.5% 的管侧冷却剂,其效果优于水。在不同条件下,评估了浓度和流体流速对传热系数和效率的影响。结果表明,纳米银流体的传热性能有所改善,浓度为 2.5%时传热性能增强最大。传热系数和传热效果随着流速的增加而提高,这表明优化流体流动条件的重要性。这项研究为利用纳米银流体进行热工程应用提供了新的见解,并量化了浓度和流量对纳米银流体在热交换器中作为高效冷却剂的可行性的影响。
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来源期刊
Heat and Mass Transfer
Heat and Mass Transfer 工程技术-力学
CiteScore
4.80
自引率
4.50%
发文量
148
审稿时长
8.0 months
期刊介绍: This journal serves the circulation of new developments in the field of basic research of heat and mass transfer phenomena, as well as related material properties and their measurements. Thereby applications to engineering problems are promoted. The journal is the traditional "Wärme- und Stoffübertragung" which was changed to "Heat and Mass Transfer" back in 1995.
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