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Gang Yang

University of Science and Technology Beijing

SCHOLARLY PAPERS

4

DOWNLOADS

135

TOTAL CITATIONS

0

Scholarly Papers (4)

1.

Bidirectional Heat-Fluid-Structure Coupling Model: Investigating the Effects of Aortic Stenosis on Atherosclerosis Risks

Number of pages: 20 Posted: 05 Dec 2025
University of New South Wales (UNSW), Peking University, affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, Peking University, affiliation not provided to SSRN, affiliation not provided to SSRN, Sechenov University, University of Science and Technology Beijing and University of Science and Technology Beijing
Downloads 66 (907,769)

Abstract:

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multi physics coupling, hemodynamics, Computational fluid dynamics, aortic valve stenosis, risk assessment of complications

2.

Numerical Investigation of Synergistic Interactions between Fill Ratio and Inclination Angle in Nanofluid Heat Pipes

Number of pages: 30 Posted: 11 Mar 2025
University of Science and Technology Beijing, Peking University, University of Science and Technology Beijing, Southern University of Science and Technology, Peking University, University of New South Wales (UNSW), University of New South Wales (UNSW), Sechenov University, Munzur University, University of Science and Technology Beijing and University of Science and Technology Beijing
Downloads 46 (1,133,231)

Abstract:

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CFD simulation, Heat pipe, Nanofluid, Inclination angle, Fill ratio

3.

Optimization of TiO2 Nanofluid Heat Pipes for Thermal Energy Storage and Management Systems: Independent and Coupled Effects of Filling Ratio and Inclination Angle

Number of pages: 21 Posted: 10 Feb 2026
University of Science and Technology Beijing, University of Science and Technology Beijing, affiliation not provided to SSRN, affiliation not provided to SSRN and affiliation not provided to SSRN
Downloads 13 (1,526,714)

Abstract:

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Thermal resistance, heat pipe, Inclination angle, Filling ratio, Heat transfer coefficient

4.

Mass-momentum synergistic transport criterion in gravity-controlled closed phase-change systems: Numerical validation using nanofluid-enhanced heat pipes

Number of pages: 33 Posted: 11 Jun 2026
University of Science and Technology Beijing, University of Science and Technology Beijing, University of Science and Technology Beijing, University of Science and Technology Beijing, Peking University, University of Science and Technology Beijing, University of Science and Technology Beijing, affiliation not provided to SSRN, Munzur University and University of Science and Technology Beijing
Downloads 10

Abstract:

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Dimensionless transport criterion, Closed phase-change system, Geometric reconfiguration, Synergistic mechanism, Vorticity magnitude