Abstract
Zhichao Dong, Yiwen Guan, Ba Yan, Zilong Wang
Abstract
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Experimental investigation of surface roughness on flow around forward-skewed compressor blade
2020
Influence of geometric parameters of discrete roughness elements on hypersonic boundary layer instability
10.1016/j.ast.2024.109387 · 2024
Roughness effect on shock wave boundary layer interaction area in compressor fan blades passage
10.1016/j.ast.2018.12.006 · 2019
Numerical investigation of surface roughness effects on non-equilibrium flow in expansion section of rocket nozzle
10.1016/j.ast.2022.107523 · 2022
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Nozzle ablation on flow field and performance of solid rocket motor
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Flow categorization in supersonic flows with large roughness heights
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An experimental and numerical analysis of the influence of surface roughness on supersonic flow in a nozzle under atmospheric and low-pressure conditions
10.3390/technologies13040160 · 2025
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Exponential roughness layer and analytical model for turbulent boundary layer flow over rectangular-prism roughness elements
10.1017/jfm.2015.687 · 2016
A review on turbulent flow over rough surfaces: fundamentals and theories
2021
Experimental investigation into the relationship between the roughness height in use with Nikuradse or Colebrook roughness functions and the internal wall roughness profile for commercial steel pipes
10.1115/1.4032601 · 2016
Study on heat transfer model of roughness wall in supersonic two-phase flow of solid rocket motor
2022
Experiments with fluid friction in roughened pipes
10.1098/rspa.1937.0150 · 1937
Friction factors for pipe flow
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Evaluation of a universal transitional resistance diagram for pipes with honed surfaces
10.1063/1.2145753 · 2005
Flow in a commercial steel pipe
10.1017/s0022112007009305 · 2008
Review of hydraulic roughness scales in the fully rough regime
10.1115/1.4001492 · 2010
Evolutionary optimization of Colebrook’s turbulent flow friction approximations
10.3390/fluids2020015 · 2017
Performance loss of modern steam-turbine plant due to surface roughness
10.1243/pime_proc_1966_181_038_02 · 1966
Loss sources and magnitudes in axial-flow compressors
10.1115/1.3446202 · 1976
Influences of manufacturing tolerances and surface roughness of blades on the performance of turbines
10.1115/1.3446107 · 1976
Skin-friction behavior in the transitionally-rough regime
10.1016/j.ijheatfluidflow.2016.05.008 · 2016
Skin friction measurements of systematically-varied roughness: probing the role of roughness amplitude and skewness
10.1007/s10494-019-00077-1 · 2020
Characterization and laboratory simulation of turbine airfoil surface roughness and associated heat transfer
10.1115/1.2841411 · 1998
The limitations of using “Ra” to describe surface roughness
10.1115/1.4032280 · 2016
Gas turbine endwall film cooling and heat transfer characteristics with a multi-cavity slash face gap design
10.1016/j.ast.2022.108076 · 2023
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2021
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2007
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2010
Effects of wall roughness on pressure-driven liquid flow in microchannels
2015
Simulation of flow and heat transfer in micro-channels with triangular rough cells
2008
Influence of right triangular prism rough beds on hydraulic jumps
10.3390/app14020594 · 2024
Research on the impact of local roughness on hypersonic nonequilibrium boundary layer flow
2026
Exploring effect of particles on ablation performance of C/C material
2012
Ablative surface evolution of solid rocket motor composite nozzles based on fluid-solid coupling
2024
Functional importance of surface texture parameters
10.3390/ma14185326 · 2021
Index of resolution quality for large eddy simulations
10.1115/1.1990201 · 2005
Index of resolution quality for large eddy simulations
10.1115/1.1990201 · doi-reference
Functional importance of surface texture parameters
10.3390/ma14185326 · doi-reference
Influence of right triangular prism rough beds on hydraulic jumps
10.3390/app14020594 · doi-reference
Gas turbine endwall film cooling and heat transfer characteristics with a multi-cavity slash face gap design
10.1016/j.ast.2022.108076 · doi-reference
The limitations of using “Ra” to describe surface roughness
10.1115/1.4032280 · doi-reference
Characterization and laboratory simulation of turbine airfoil surface roughness and associated heat transfer
10.1115/1.2841411 · doi-reference
Skin friction measurements of systematically-varied roughness: probing the role of roughness amplitude and skewness
10.1007/s10494-019-00077-1 · doi-reference
Skin-friction behavior in the transitionally-rough regime
10.1016/j.ijheatfluidflow.2016.05.008 · doi-reference
Influences of manufacturing tolerances and surface roughness of blades on the performance of turbines
10.1115/1.3446107 · doi-reference
Loss sources and magnitudes in axial-flow compressors
10.1115/1.3446202 · doi-reference
Performance loss of modern steam-turbine plant due to surface roughness
10.1243/pime_proc_1966_181_038_02 · doi-reference
Evolutionary optimization of Colebrook’s turbulent flow friction approximations
10.3390/fluids2020015 · doi-reference
Review of hydraulic roughness scales in the fully rough regime
10.1115/1.4001492 · doi-reference
Flow in a commercial steel pipe
10.1017/s0022112007009305 · doi-reference
Evaluation of a universal transitional resistance diagram for pipes with honed surfaces
10.1063/1.2145753 · doi-reference
Experiments with fluid friction in roughened pipes
10.1098/rspa.1937.0150 · doi-reference
Experimental investigation into the relationship between the roughness height in use with Nikuradse or Colebrook roughness functions and the internal wall roughness profile for commercial steel pipes
10.1115/1.4032601 · doi-reference
Exponential roughness layer and analytical model for turbulent boundary layer flow over rectangular-prism roughness elements
10.1017/jfm.2015.687 · doi-reference
An experimental and numerical analysis of the influence of surface roughness on supersonic flow in a nozzle under atmospheric and low-pressure conditions
10.3390/technologies13040160 · doi-reference
Numerical investigation of surface roughness effects on non-equilibrium flow in expansion section of rocket nozzle
10.1016/j.ast.2022.107523 · doi-reference
Roughness effect on shock wave boundary layer interaction area in compressor fan blades passage
10.1016/j.ast.2018.12.006 · doi-reference
Influence of geometric parameters of discrete roughness elements on hypersonic boundary layer instability
10.1016/j.ast.2024.109387 · doi-reference