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Dive into the research topics where Cong Qi is active.

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Featured researches published by Cong Qi.


Nanoscale Research Letters | 2017

Experimental Study on the Flow and Heat Transfer Characteristics of TiO 2 -Water Nanofluids in a Spirally Fluted Tube

Cong Qi; Chunyang Li; Guiqing Wang

The flow and heat transfer characteristics of TiO2-water nanofluids with different nanoparticle mass fractions in a spirally fluted tube and a smooth tube are experimentally investigated at different Reynolds numbers. The effects of pH values and doses of dispersant agent on the stability of TiO2-water nanofluids are discussed. The effects of nanoparticle mass fractions and Reynolds numbers on Nusselt numbers and frictional resistance coefficients in the spirally fluted tube and the smooth tube are also investigated. It is found that TiO2-water nanofluids in the spirally fluted tube have a larger enhancement than that in the smooth tube. The heat transfer enhancement and the increase in frictional resistance coefficients of TiO2-water nanofluids in the spirally fluted tube and the smooth tube for laminar flow and turbulent flow are compared. It is found that there are a larger increase in heat transfer and a smaller increase in frictional resistance coefficients for turbulent flow than that for laminar flow of TiO2-water nanofluids in the spirally fluted tube. The comprehensive evaluations for the thermo-hydraulic performance of TiO2-water nanofluids in the smooth tube and spirally fluted tube are also discussed.


International Journal of Heat and Mass Transfer | 2016

Study on the flow and heat transfer of liquid metal based nanofluid with different nanoparticle radiuses using two-phase lattice Boltzmann method

Cong Qi; Lin Liang; Zhonghao Rao


International Journal of Heat and Mass Transfer | 2017

Two-phase lattice Boltzmann simulation of the effects of base fluid and nanoparticle size on natural convection heat transfer of nanofluid

Cong Qi; Guiqing Wang; Liyuan Yang; Yongliang Wan; Zhonghao Rao


Journal of Heat Transfer-transactions of The Asme | 2016

Numerical and Experimental Investigation Into the Effects of Nanoparticle Mass Fraction and Bubble Size on Boiling Heat Transfer of TiO2–Water Nanofluid

Cong Qi; Yongliang Wan; Lin Liang; Zhonghao Rao; Yimin Li


International Journal of Heat and Mass Transfer | 2017

Experimental and numerical research on the flow and heat transfer characteristics of TiO2-water nanofluids in a corrugated tube

Cong Qi; Yongliang Wan; Chun-Yang Li; Dongtai Han; Zhonghao Rao


Applied Thermal Engineering | 2018

Experimental study on thermo-hydraulic performances of TiO2-H2O nanofluids in a horizontal elliptical tube

Cong Qi; Liyuan Yang; Tiantian Chen; Zhonghao Rao


Energy Conversion and Management | 2017

Experimental study on thermo-hydraulic performances of CPU cooled by nanofluids

Cong Qi; Jinding Hu; Maoni Liu; Leixin Guo; Zhonghao Rao


International Journal of Heat and Mass Transfer | 2018

Effects of half spherical bulges on heat transfer characteristics of CPU cooled by TiO 2 -water nanofluids

Cong Qi; Ning Zhao; Xin Cui; Tiantian Chen; Jinding Hu


Nanoscale Research Letters | 2017

Numerical Study on Convective Heat Transfer Enhancement in Horizontal Rectangle Enclosures Filled with Ag-Ga Nanofluid

Cong Qi; Liyuan Yang; Guiqing Wang


Nanoscale Research Letters | 2017

Experimental Research on Stability and Natural Convection of TiO2-Water Nanofluid in Enclosures with Different Rotation Angles

Cong Qi; Guiqing Wang; Yifeng Ma; Leixin Guo

Collaboration


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Zhonghao Rao

China University of Mining and Technology

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Guiqing Wang

China University of Mining and Technology

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Lin Liang

China University of Mining and Technology

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Liyuan Yang

China University of Mining and Technology

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Maoni Liu

China University of Mining and Technology

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Tao Luo

China University of Mining and Technology

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Yongliang Wan

China University of Mining and Technology

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Yuhang Pan

China University of Mining and Technology

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Chunyang Li

China University of Mining and Technology

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Jinding Hu

China University of Mining and Technology

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