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Paper Publications
qicong,Tu, Jianglin,Ding, Zi,Wang, Yuxing,孙亮,Wang, Chengchao.Experimental study on the influence of bionic channel structure on waste heat utilization equipment,2021,v 16,n 5,
Ding, Zi,qicong,Luo, Tao,Wang, Yuxing,Tu, Jianglin,Wang, Chengchao.Numerical simulation of nanofluids forced convection in a corrugated double-pipe heat exchanger,2021
涂江林,qicong,李春阳,段康伟.光热转换系统中强化结构对纳米流体自然对流换热的影响,2021,2021年04期:60-72,13
王宇星,qicong,丁子,涂江林,赵睿.Numerical simulation of flow and heat transfer characteristics of nanofluids in built-in porous twisted tape tube,2021,392: 570-586
李春阳,qicong,丁子,王成超,Han Dongtai.Lattice Boltzmann simulation on thermal management of electronic components with nonuniform temperature based on nanofluids,2021,45: 16667-16690
qicong,孙亮,王宇星,王成超,chengenglin.Thermo-hydraulic performance of nanofluids in a bionic fractal microchannel heat sink with traveling-wave fins,2021,38(8): 1592-1607
qicong,王宇星,丁子,涂江林,朱梦馨.Application of superhydrophobic surface on boiling heat transfer characteristics of nanofluids,2021,118(4):825-852
Chen, Tiantian,qicong,Tang, Jinghua,王桂卿,Yan, Yuying.Numerical and experimental study on optimization of CPU system cooled by nanofluids,2021,卷: 24
qicong,李可傲,李春阳.微肋结构对纳米流体绕流圆柱热性能的影响,2020,2021年04期:2006-2017,12
翟新锋,qicong,杨矞琦,王江云.Thermo-hydraulic performance of nanofluids under adjustable magnetic field,2020,186: 116491