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Dalei Jing

Researcher at University of Shanghai for Science and Technology

Publications -  43
Citations -  932

Dalei Jing is an academic researcher from University of Shanghai for Science and Technology. The author has contributed to research in topics: Microchannel & Slip (materials science). The author has an hindex of 17, co-authored 34 publications receiving 611 citations. Previous affiliations of Dalei Jing include Ohio State University & Queen Mary University of London.

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Optimal design and thermal modelling for liquid-cooled heat sink based on multi-objective topology optimization: An experimental and numerical study

TL;DR: A multi-objective optimization problem is developed in order to manage the tradeoff between the minimization of fluid power dissipation and the maximization of heat exchange and the results show that the optimized cooling channel can achieve a lower thermal resistance and a higher Nusselts number in comparison to the conventional parallel channel.
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The coupling of surface charge and boundary slip at the solid-liquid interface and their combined effect on fluid drag: A review.

TL;DR: A theoretical model incorporating the coupling relationship between surface charge and slip is used to discuss the combined effect of surface charge-induced electric double layer (EDL) and slip on fluid drag of pressure-driven flow in a one-dimensional parallel-plates microchannel.
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Electroosmotic flow in tree-like branching microchannel network

TL;DR: In this article, the optimal analysis of the tree-like branching microchannel network has been studied for microfluidic systems, however, the optimal performance of tree-l...
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Coalescence and Stability Analysis of Surface Nanobubbles on the Polystyrene/Water Interface

TL;DR: The results indicate that a viable stability mechanism for surface nanobubbles would be favored simultaneously by the contact line pinning, gas influx near the contactline from an interfacial gas enrichment (IGE), a thin "contaminant film" around the gas/liquid interface, and even the electrostatic effect.
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Electroviscous effect and convective heat transfer of pressure-driven flow through microtubes with surface charge-dependent slip

TL;DR: In this article, the effect of surface charge and surface charge-dependent slip on the electroviscous effect and convective heat transfer of the pressure-driven flow in a micro tube was investigated.