Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Enhancement of Aerodynamic Performance of High Speed Train Through Nose Profile Design: A Computational Fluid Dynamics Approach

View through CrossRef
Aerodynamic drag of fast-moving train has significant impact on its fuel consumption and design safety. To improve aerodynamic performance, the drag forces on the train surfaces must be reduced. Train’s front-end nose design has boundless geometrical variations that can be applied for improved performance. Three geometric characteristics were used in present research: A-pillar roundness, nose length that controls its shrinking, and nose bluntness. Latin-Hypercube based random sampling method was used to determine appropriate values of these parameters for specific range. Using Computational Fluid Dynamics (CFD), a numerical approach was used to analyze train aerodynamic performance based on selected factors and operating conditions. Comparisons based on analysis of the base design and proposed design models were made and evaluated for enhanced performance. CFD analysis of the base design and iterative improvements in modified designs indicate drag reduction through change in A-pillar roundness and bluntness of nose to be 10% and 22%, respectively. The increase in nose length which controls nose shrinkage causes the drag to increase by 35%. Similarly, the boundary layer and pressure distribution on the front end of train were also considered and analyzed for performance improvement. It was concluded that the length controlling nose shrinkage of proposed train design is the key factor among the selected geometric parameters that has more influence on drag on high-speed train surface in comparison to other parameters considered. This research effort offers a modification, analysis and comparison of front-end nose geometry of high-speed train to improve aerodynamic performance and consequently fuel consumption.
Title: Enhancement of Aerodynamic Performance of High Speed Train Through Nose Profile Design: A Computational Fluid Dynamics Approach
Description:
Aerodynamic drag of fast-moving train has significant impact on its fuel consumption and design safety.
To improve aerodynamic performance, the drag forces on the train surfaces must be reduced.
Train’s front-end nose design has boundless geometrical variations that can be applied for improved performance.
Three geometric characteristics were used in present research: A-pillar roundness, nose length that controls its shrinking, and nose bluntness.
Latin-Hypercube based random sampling method was used to determine appropriate values of these parameters for specific range.
Using Computational Fluid Dynamics (CFD), a numerical approach was used to analyze train aerodynamic performance based on selected factors and operating conditions.
Comparisons based on analysis of the base design and proposed design models were made and evaluated for enhanced performance.
CFD analysis of the base design and iterative improvements in modified designs indicate drag reduction through change in A-pillar roundness and bluntness of nose to be 10% and 22%, respectively.
The increase in nose length which controls nose shrinkage causes the drag to increase by 35%.
Similarly, the boundary layer and pressure distribution on the front end of train were also considered and analyzed for performance improvement.
It was concluded that the length controlling nose shrinkage of proposed train design is the key factor among the selected geometric parameters that has more influence on drag on high-speed train surface in comparison to other parameters considered.
This research effort offers a modification, analysis and comparison of front-end nose geometry of high-speed train to improve aerodynamic performance and consequently fuel consumption.

Related Results

[RETRACTED] Rhino XL Male Enhancement v1
[RETRACTED] Rhino XL Male Enhancement v1
[RETRACTED]Rhino XL Reviews, NY USA: Studies show that testosterone levels in males decrease constantly with growing age. There are also many other problems that males face due ...
Design
Design
Conventional definitions of design rarely capture its reach into our everyday lives. The Design Council, for example, estimates that more than 2.5 million people use design-related...
Design Work of a Compressor Stage Through High-To-Low Speed Compressor Transformation
Design Work of a Compressor Stage Through High-To-Low Speed Compressor Transformation
Low-speed model testing has advantages such as great accuracy and low cost and risk, so it is widely used in the design procedure of the high pressure compressor (HPC) exit stage. ...
Aerodynamic braking device for high-speed trains: Design, simulation and experiment
Aerodynamic braking device for high-speed trains: Design, simulation and experiment
This paper proposes the design of an aerodynamic braking device for a high-speed train. The design is based on the parameters of the high-speed train and the working principles of ...
Performative Microforests
Performative Microforests
The design of office buildings can substantially improve the building, social, and ecological performance of office building projects. However, existing research on improving the p...
Sensitivity Analysis of Impeller Blade Parameters to Compressor Performance and Aerodynamic Noise
Sensitivity Analysis of Impeller Blade Parameters to Compressor Performance and Aerodynamic Noise
Abstract The effects of a series of impeller blade parameters on compressor performance and aerodynamic noise are numerical analyzed in this paper. The inversed impe...
Automatic Driving Research of Cloud Model High-Speed Train based on Genetic Algorithm Optimization
Automatic Driving Research of Cloud Model High-Speed Train based on Genetic Algorithm Optimization
High-speed train is a complex nonlinear system with strong coupling, which is easily disturbed by uncertain factors. The traditional model of single-mass point train does not consi...
Research on urban rail train control system based on train to train communication
Research on urban rail train control system based on train to train communication
Abstract The new train control system VBTC based on train to train communication adopts the idea of on-board centralization, regards switches and sections as tracksi...

Back to Top