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用于增强双管换热器对流换热性能的新型二维层状MXene纳米流体

Novel 2D Layered MXene Nanofluids for Enhancing the Convective Heat Transfer Performance of Double-Pipe Heat Exchangers.

作者信息

Kumar Kodi Rajesh, Shaik Aabid Hussain

机构信息

Colloids and Polymers Research Group School of Chemical Engineering, Vellore Institute of Technology, Vellore 632014, India.

出版信息

ACS Omega. 2024 Sep 23;9(40):41758-41775. doi: 10.1021/acsomega.4c06080. eCollection 2024 Oct 8.

Abstract

This paper proposes a new class of novel 2D layered structured materials, such as MXene (MX), for the synthesis of innovative nanofluids as coolants to evaluate the convective heat transfer performance of a double-pipe heat exchanger (DPHE). Convective heat transfer experiments were successfully conducted in lab-scale fabricated DPHE using low-concentration MXene nanofluids by varying the volume concentration of MXene nanoparticles (0.01-0.05 vol %) in different base fluids. The influence of the MXene nanofluids on various convective heat transfer parameters, such as LMTD, Nusselt number, heat transfer coefficient, and heat transfer rate without using any inserts in the DPHE was experimentally investigated. The results of the experiments revealed that the heat transfer coefficient and Nusselt number increase with increasing Reynolds number (Re) and concentration of MXene nanoparticles in the base fluids. Maximum enhancement in heat transfer coefficient (126%) was achieved for methanol-based MXene nanofluids at 0.05 vol %. Moreover, the Nusselt number exhibits a maximum enhancement of ∼50% for methanol- and water-based MXene nanofluids. In contrast, the thermal performance factor was also estimated, and it was observed that water- and methanol- based MXene nanofluids showed higher values than castor oil- and silicone oil-based MXene nanofluids. Finally, the LMTD and heat transfer coefficients were successfully validated using Aspen HYSYS 12.1 software.

摘要

本文提出了一类新型的二维层状结构材料,如MXene(MX),用于合成创新型纳米流体作为冷却剂,以评估双管换热器(DPHE)的对流换热性能。通过在不同基础流体中改变MXene纳米颗粒的体积浓度(0.01 - 0.05 vol%),使用低浓度MXene纳米流体在实验室规模制造的DPHE中成功进行了对流换热实验。在不使用DPHE中任何插入物的情况下,实验研究了MXene纳米流体对各种对流换热参数的影响,如对数平均温差(LMTD)、努塞尔数、传热系数和传热速率。实验结果表明,传热系数和努塞尔数随着雷诺数(Re)以及基础流体中MXene纳米颗粒浓度的增加而增加。对于体积浓度为0.05 vol%的甲醇基MXene纳米流体,传热系数实现了最大增强(126%)。此外,甲醇基和水基MXene纳米流体的努塞尔数最大增强约50%。相比之下,还估算了热性能因子,观察到水基和甲醇基MXene纳米流体的值高于蓖麻油基和硅油基MXene纳米流体。最后,使用Aspen HYSYS 12.1软件成功验证了LMTD和传热系数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c26c/11465281/3b70f217aa43/ao4c06080_0001.jpg

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