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Dong Liang

Hong Kong University of Science & Technology (HKUST)

SCHOLARLY PAPERS

6

DOWNLOADS

618

TOTAL CITATIONS

12

Scholarly Papers (6)

1.

Design, Flow Characteristics and Performance Evaluation of Bioinspired Heat Exchangers Based on Triply Periodic Minimal Surfaces

Number of pages: 26 Posted: 23 Jul 2022
Hong Kong University of Science & Technology (HKUST), affiliation not provided to SSRN, City University of Hong Kong (CityU), Sichuan University and University of Pittsburgh
Downloads 221 (356,192)
Citation 12

Abstract:

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TPMS structure, Heat exchanger, Additive manufacturing, Flow characteristics, Heat transfer performance

Similarity Analysis of Flow and Heat Transfer for Triply Periodic Minimal Surface Structures

Number of pages: 21 Posted: 08 Feb 2024
Dong Liang, Longqing Lei, Wei Chen and Shuhuai Yao
Hong Kong University of Science & Technology (HKUST), Sichuan University, Sichuan University and Hong Kong University of Science & Technology (HKUST) - Department of Mechanical and Aerospace Engineering
Downloads 106 (668,983)

Abstract:

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Triply periodic minimal surface, Heat exchanger, Similarity analysis, Simulation model simplification

Similarity Analysis of Flow and Heat Transfer for Triply Periodic Minimal Surface Structures

Number of pages: 21 Posted: 22 Mar 2024
Dong Liang, Longqing Lei, Wei Chen and Shuhuai Yao
Hong Kong University of Science & Technology (HKUST), Sichuan University, Sichuan University and Hong Kong University of Science & Technology (HKUST) - Department of Mechanical and Aerospace Engineering
Downloads 71 (879,563)

Abstract:

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Triply periodic minimal surface, heat exchanger, Similarity analysis, Simulation model simplification

The Effects of Geometric Parameters and Gradient Design on the Transpiration Cooling Performance of I-WP (A) Structures

Number of pages: 37 Posted: 03 Dec 2025
affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, Hong Kong University of Science & Technology (HKUST), Sichuan University and University of Pittsburgh
Downloads 38 (1,267,060)

Abstract:

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Triply periodic minimal surface (TPMS), Transpiration cooling, Effects of geometric parameters, Gradient designs

The Effects of Geometric Parameters and Gradient Design on the Transpiration Cooling Performance of I-WP (A) Structures

Number of pages: 37 Posted: 03 Dec 2025
affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, Hong Kong University of Science & Technology (HKUST), Sichuan University and University of Pittsburgh
Downloads 29 (1,371,100)

Abstract:

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Triply periodic minimal surface (TPMS), Transpiration cooling, Effects of geometric parameters, Gradient designs

4.

The Effect of Unit Size on the Flow and Heat Transfer Performance of the “Schwartz-D” Heat Exchanger

Number of pages: 19 Posted: 17 Apr 2023
Hong Kong University of Science & Technology (HKUST), affiliation not provided to SSRN, Southeast University, Sichuan University and University of Pittsburgh
Downloads 63 (942,565)

Abstract:

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Heat Exchanger, TPMS structure, Unit size, Flow ratio, Additive manufacturing

5.

Investigations on Flow and Heat Transfer Characteristics in a Trailing Edge Channel Inserted with Lattice Structures

Number of pages: 21 Posted: 16 Feb 2022
Dong Liang, Wei Chen, Wang Xu and Minking K. Chyu
Hong Kong University of Science & Technology (HKUST), Sichuan University, affiliation not provided to SSRN and University of Pittsburgh
Downloads 56 (1,000,027)

Abstract:

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Lattice structure, Wedge-shaped channel, turbine blade, Heat transfer, Transient liquid crystals

6.

Study on the Flow and Heat Transfer Enhancement Mechanism of TPMS Lattices Based on Large Eddy Simulation

Number of pages: 24 Posted: 08 May 2026
Sichuan University, AVIC Chengdu Aircraft Design and Research Institute, AVIC Chengdu Aircraft Design and Research Institute, AVIC Chengdu Aircraft Design and Research Institute, Hong Kong University of Science & Technology (HKUST) and Sichuan University
Downloads 34 (1,318,317)

Abstract:

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TPMS lattices, LES, Unsteady Flow characteristics, heat transfer enhancement mechanism, Vortex dynamics