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用于沉浸式冷却应用的作为传热液体的粘弹性纳米流体的原子研究。

Atomistic Investigation of Viscoelastic Nanofluids as Heat Transfer Liquids for Immersive-Cooling Applications.

作者信息

Ravikumar Bharath, Karathanassis Ioannis K, Smith Timothy, Gavaises Manolis

机构信息

School of Science and Technology, City, University of London, EC1 V 0HB London, U.K.

Lubrizol European Research and Development Centre, Nether Lane, Hazelwood, DE56 4AN Derbyshire, U.K.

出版信息

Ind Eng Chem Res. 2024 Nov 21;63(48):21023-21037. doi: 10.1021/acs.iecr.4c01832. eCollection 2024 Dec 4.

Abstract

A comparative assessment of the thermal properties and heat transfer coefficients achieved by viscoelastic nanofluids suitable for immersion cooling is presented, with the candidate samples exhibiting distinct differences based on the nanoparticle chemistry and shape. Molecular dynamics simulations of different nanoparticles such as copper nanosphere, two-dimensional pristine graphene, and single-walled carbon nanotube (CNT) dispersed in PAO-2 of concentrations of approximately equal to 2.6% by weight are performed in the present investigation. While carbon-based nanoparticles increase the specific heat capacity of the nanofluids, copper-based nanofluids show a decrease in the corresponding values. Moreover, the heat conduction in copper-based nanofluids is dependent on the higher degree of phonon density of states (DOS) matching between the copper and solvent atoms, whereas the high intrinsic thermal conductivity of graphene and CNT compensates for the lower degree of DOS matching. The addition of an OCP polymer chain to impart viscoelasticity in the nanofluids exhibits a heat transfer coefficient enhancement of more than 80% during Couette flow as a result of chain expansion, indicating their suitability for immersive-cooling applications.

摘要

本文对适用于沉浸式冷却的粘弹性纳米流体的热性能和传热系数进行了比较评估,候选样品因纳米颗粒的化学性质和形状不同而表现出明显差异。本研究对不同纳米颗粒进行了分子动力学模拟,这些纳米颗粒包括铜纳米球、二维原始石墨烯和单壁碳纳米管(CNT),它们分散在浓度约为2.6%(重量)的PAO-2中。虽然碳基纳米颗粒会增加纳米流体的比热容,但铜基纳米流体的相应值却有所下降。此外,铜基纳米流体中的热传导取决于铜原子与溶剂原子之间更高程度的声子态密度(DOS)匹配,而石墨烯和碳纳米管的高本征热导率弥补了较低程度的DOS匹配。在纳米流体中添加OCP聚合物链以赋予其粘弹性,由于链的膨胀,在库埃特流期间传热系数提高了80%以上,这表明它们适用于沉浸式冷却应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bbc/11622246/8b78b85ac320/ie4c01832_0001.jpg

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