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作 者:陈刚 武巧 蒋胜蓝 文帅 刘雅鸣 CHEN Gang;WU Qiao;JIANG Shenglan;WEN Shuai;LIU Yaming(School of Civil Engineering,University of South China,Hengyang,Hunan 421001,China)
出 处:《南华大学学报(自然科学版)》2024年第3期24-31,共8页Journal of University of South China:Science and Technology
基 金:湖南省重点研发计划资助项目(2020WK2012)。
摘 要:为提高换热器性能,在雷诺数Re为500~3000范围内,通过数值模拟方法研究三角翼涡流发生器的15种不同布置方式对平直翅片管式换热器的传热和流阻特性影响。结果表明:在涡流发生器布置排数相同时,涡流发生器越靠近迎风侧,换热因子j提升幅度越大;所研究的15种排列j/j_(R)均随Re数的增大而增大。大部分情况下的f/f_(R)随着Re数的增大而增大。换热器迎风侧前两排加装涡流发生器(即case B1布置方式)的翅片管式换热器的α_(JF)(评价系数JF)提高了10.15%~11.12%,综合性能最佳。In order to improve the heat exchanger performance,the effects of 15 different arrangements of delta-wing vortex generators on the heat transfer and flow resistance characteristics of a flat finned tube heat exchanger are investigated by numerical simulation in the range of Reynolds number 500-3000.The results show that the closer the vortex generator is to the windward side,the higher the Colburn factor j is when the number of rows of vortex generators is the same,and the j/j_(R) of the 15 arrangements under study increases with the increase of the number of Re.The f/f_(R) in most cases increases with increasing Re number.The fin-and-tube heat exchanger with the first two rows on the windward side of the heat exchanger retrofitted with vortex generators(i.e.,case B1 arrangement)has the best overall performance with an increase in α_(JF)(evaluation coefficient JF)of 10.15%to 11.12%.
关 键 词:翅片管式换热器 三角翼涡流发生器 强化传热 数值模拟
分 类 号:TK124[动力工程及工程热物理—工程热物理]
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