Fluids and Thermal Engineering Research Group

Publications

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ZHANG, X., XU, X., WANG, J., WANG, C., YAN, Y., WU, A. and REN, Y., 2021. Public-health-driven microfluidic technologies: From separation to detection: Micromachines Micromachines. 12(4),

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REN, Y., CHEN, Q., HE, M., ZHANG, X., QI, H. and YAN, Y., 2021. Plasmonic Optical Tweezers for Particle Manipulation: Principles, Methods, and Applications: ACS Nano ACS Nano.

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JIANG, ZHIMIN, WEI, FANHUA, ZHANG, YUYING, WANG, TONG, GAO, WEIHUA, YU, SHUFANG, SUN, HONGLEI, PU, JUAN, SUN, YIPENG, WANG, MINGYANG, TONG, QI, GAO, CHENGJIANG, CHANG, KIN-CHOW and LIU, JINHUA, 2021. IFI16 directly senses viral RNA and enhances RIG-I transcription and activation to restrict influenza virus infection. Nature Microbiology. 6, 932-945

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ARSHAD, A., JABBAL, M., FARAJI, H., TALEBIZADEHSARDARI, P., BASHIR, M. A. and YAN, Y., 2021. Numerical study of nanocomposite phase change material-based heat sink for the passive cooling of electronic components: Heat and Mass Transfer/Waerme- und Stoffuebertragung Heat and Mass Transfer/Waerme- und Stoffuebertragung.

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ARSHAD, A., JABBAL, M., FARAJI, H., BASHIR, M. A., TALEBIZADEHSARDARI, P. and YAN, Y., 2021. Thermal process enhancement of HNCPCM filled heat sink: Effect of hybrid nanoparticles ratio and shape: International Communications in Heat and Mass Transfer International Communications in Heat and Mass Transfer. 125,

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QUAN, M., JIN, Y., YAN, S. and YAN, Y., 2021. Numerical simulation on combustion based on soft-measuring technique: Heat and Mass Transfer/Waerme- und Stoffuebertragung Heat and Mass Transfer/Waerme- und Stoffuebertragung.

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SHI, L., ZHANG, S., ARSHAD, A., HU, Y., HE, Y. and YAN, Y., 2021. Thermo-physical properties prediction of carbon-based magnetic nanofluids based on an artificial neural network: Renewable and Sustainable Energy Reviews Renewable and Sustainable Energy Reviews. 149,

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REN, Y., HUANG, Y., XIE, C., YAN, Y., WANG, J. and YAMAGUCHI, T., 2021. Thermal Effect on Deformation of Nanofluid-Encapsulated Double Emulsion Droplets Flowing in a Constricted Microchannel: Heat Transfer Engineering Heat Transfer Engineering.

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FU, R., ZHANG, H., HU, X., YAN, Y. and ZHOU, W., 2021. Effect of the hotter groove on the capillary flow enhancement with nanofluids in a microgrooves wick: International Communications in Heat and Mass Transfer International Communications in Heat and Mass Transfer. 127,
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Fluids and Thermal Engineering Research Group

Faculty of Engineering
The University of Nottingham
Nottingham, NG7 2RD

email:flute@nottingham.ac.uk