Fan Shi

Ningbo University

China

SCHOLARLY PAPERS

5

DOWNLOADS

68

TOTAL CITATIONS

2

Scholarly Papers (5)

1.

Numerical Investigation of Surface Shape and Rotation Impacts on Flow Dynamics and Heat Transfer in Tandem Cylinders

Number of pages: 56 Posted: 25 Nov 2024
Ningbo University, Ningbo University, Ningbo University, Ningbo University and Ningbo University
Downloads 22 (1,141,225)

Abstract:

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Surface pattern, Rotating cylinder, heat transfer, Flow control, Sliding mesh

2.

Numerical Investigation of the Heat Transfer and Flow Pattern on Tandem Triangle-Grooved Cylinders

Number of pages: 37 Posted: 06 Feb 2024
Ningbo University, Ningbo University, Ningbo University, Ningbo University and Ningbo University
Downloads 17 (1,202,968)
Citation 1

Abstract:

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Tandem groove cylinder, heat transfer, Reynolds numbers, Angle of location

3.

Design and Dynamic Response Analysis of a 15 Mw Semi-Submersible Floating Wind Turbine

Number of pages: 33 Posted: 05 Apr 2025
Ningbo University, Ningbo University, Ningbo University, Ningbo University, Ningbo University, Sun Yat-sen University (SYSU) and International Hellenic University
Downloads 14 (1,238,601)

Abstract:

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Floating wind turbine, Innovative light-weight floater design, Intact stability, Fully-coupled analysis, Dynamic response analysis

4.

Thermal Fluid Dynamics Interaction between Dual Cylinders: Numerical Analysis of Groove Effects and Rotational Speed

Number of pages: 32 Posted: 17 May 2024
Ningbo University, Ningbo University, Ningbo University and Ningbo University
Downloads 14 (1,238,601)
Citation 1

Abstract:

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Tandem groove cylinder, Heat transfer, Rotation speed, Angle of location

5.

Numerical Study on the Effects of Surface Shape and Rotation on the Flow Characteristics and Heat Transfer Behavior of Tandem Cylinders in Laminar Flow Regime

Number of pages: 63 Posted: 16 May 2025
Ningbo University, Ningbo University, Ningbo University, Ningbo University and Ningbo University
Downloads 1 (1,339,882)

Abstract:

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Surface pattern, Rotating cylinder, Heat Transfer, Flow control, Sliding mesh