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Shuisheng He

Researcher at University of Sheffield

Publications -  109
Citations -  3029

Shuisheng He is an academic researcher from University of Sheffield. The author has contributed to research in topics: Turbulence & Heat transfer. The author has an hindex of 27, co-authored 103 publications receiving 2599 citations. Previous affiliations of Shuisheng He include University of Manchester & Robert Gordon University.

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Schizophrenia-Related Neural and Behavioral Phenotypes in Transgenic Mice Expressing Truncated Disc1

TL;DR: Disrupted-in-Schizophrenia-1 transgenic mice exhibit increased immobility and reduced vocalization in depression-related tests, and impairment in conditioning of latent inhibition, consistent with findings in severe schizophrenia.
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Phase-field-based lattice Boltzmann model for incompressible binary fluid systems with density and viscosity contrasts.

TL;DR: Comparisons with momentum-based models indicate that the newly proposed velocity-based model can better satisfy the incompressible condition in the flow fields, and eliminate or reduce the velocity fluctuations in the higher-pressure-gradient region and, therefore, achieve a better numerical stability.
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Assessment of performance of turbulence models in predicting supercritical pressure heat transfer in a vertical tube

TL;DR: In this article, the performance of low-Reynolds number turbulence models in predicting mixed convection heat transfer to fluids at supercritical pressure, especially paying attention to the features which enable them to respond to the modifications of the turbulence field due to influences of flow acceleration and buoyancy, was evaluated.
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Experimental Investigation of Convection Heat Transfer of CO2 at Super-Critical Pressures in Vertical Mini Tubes and in Porous Media

TL;DR: In this article, the effects of inlet temperature, mass flow rate, and heat flux on convection heat transfer in the mini-tube and the porous tube were investigated experimentally.
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A study of turbulence under conditions of transient flow in a pipe

TL;DR: In this article, a detailed investigation of fully developed transient flow in a pipe has been undertaken using water as the working fluid, and a dimensionless delay parameter τ+[= √2τUτ0/D] is proposed to describe it.