Preliminary CFD investigation for secondary coolant in molten salt reactor with alumina nanofluid considering FLiBe and FLiNaK as base fluid through a double pipe heat exchanger

J. Deb, Md. Mahidul Haque Prodhan, N. Hossain, G. S. Rakib
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Abstract

This work analyzes a computational fluid dynamics (CFD) methodology based on ANSYS to investigate the 3 % and 4 % volume fraction alumina (Al2O3) nanofluids with base fluids FLiBe (LiF(67)-BeF2(33) (mol%)) and FLiNaK (LiF(46.5)-NaF(11.5)-KF(42) (mol%) through a double pipe heat exchanger. The purpose of the paper is to choose better candidates as secondary coolants in molten salt reactors for better thermodynamics performances and heat transfer characteristics. Six secondary coolants with and without nanofluids and fuel salt as primary coolants are driven through the inner and outer pipe. Later overall heat transfer coefficient, outlet temperatures and pressure drops of the fluids, and LMTD are calculated. Thus, this work eventually recommends the best candidate as a secondary coolant by CFD methodology using ANSYS-FLUENT 18.1. J. Bangladesh Acad. Sci. 46(1); 45-55: June 2022
以FLiBe和FLiNaK为基液的氧化铝纳米流体熔盐堆二次冷却剂通过双管换热器的CFD初步研究
本文分析了基于ANSYS的计算流体动力学(CFD)方法,研究了体积分数为3%和4%的氧化铝(Al2O3)纳米流体与基液FLiBe (LiF(67)-BeF2(33) (mol%))和FLiNaK (LiF(46.5)-NaF(11.5)-KF(42) (mol%)通过双管换热器。本文的目的是为了在熔盐堆中选择更好的候选二次冷却剂,以获得更好的热力学性能和传热特性。六种二级冷却剂(含和不含纳米流体和燃料盐作为主冷却剂)通过内外管道输送。然后计算总换热系数、流体出口温度和压降以及LMTD。因此,本工作最终通过使用ANSYS-FLUENT 18.1.J的CFD方法推荐了最佳候选二次冷却剂。科学通报46(1);45-55: 2022年6月
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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