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

An Integrated Product Team Approach to the Development of a Complex Rotor System

View through CrossRef
This paper details development efforts for the Turbine Research Facility (TRF) rotor system at the U. S. Air Force Research Laboratory (AFRL). In some previous test programs, the prior TRF rotor drive system was known to experience instances of excessive vibration during spin-up, limiting the robustness of the facility to execute its primary mission of developing advanced turbine aerothermal technologies; this paper will cover redesign and validation of the TRF rotor system to allow that mission to resume safely. First, a brief summary of the root cause investigation of historical rotordynamic issues at the facility is given; this pointed the way for the primary redesign path. Next, rotor system redesign elements will be covered and these are interspersed with design, manufacturing and assembly considerations for rotordynamics trades. This is followed by a discussion of rotordynamics analysis methodologies including the coupling of a one-dimensional beam element code with three-dimensional finite element analyses and laboratory component data to produce high fidelity rotordynamics predictions. In conclusion, test validation specifically concentrating on proximity probe and accelerometer data is presented along with a comparison to design intent. The purpose of this paper is to present an integrated product team (IPT) approach to the development of a complex rotor system solution.
Title: An Integrated Product Team Approach to the Development of a Complex Rotor System
Description:
This paper details development efforts for the Turbine Research Facility (TRF) rotor system at the U.
S.
Air Force Research Laboratory (AFRL).
In some previous test programs, the prior TRF rotor drive system was known to experience instances of excessive vibration during spin-up, limiting the robustness of the facility to execute its primary mission of developing advanced turbine aerothermal technologies; this paper will cover redesign and validation of the TRF rotor system to allow that mission to resume safely.
First, a brief summary of the root cause investigation of historical rotordynamic issues at the facility is given; this pointed the way for the primary redesign path.
Next, rotor system redesign elements will be covered and these are interspersed with design, manufacturing and assembly considerations for rotordynamics trades.
This is followed by a discussion of rotordynamics analysis methodologies including the coupling of a one-dimensional beam element code with three-dimensional finite element analyses and laboratory component data to produce high fidelity rotordynamics predictions.
In conclusion, test validation specifically concentrating on proximity probe and accelerometer data is presented along with a comparison to design intent.
The purpose of this paper is to present an integrated product team (IPT) approach to the development of a complex rotor system solution.

Related Results

Team Monitoring, Does it Matter for Team Performance? Moderating role of Team Monitoring on Team Psychological Safety and Team Learning
Team Monitoring, Does it Matter for Team Performance? Moderating role of Team Monitoring on Team Psychological Safety and Team Learning
Introduction: The use of work teams is a strategy that allows organizations to move faster and more proactively. Team performance is an interesting issue that needs to be studied m...
Modular Rotor Single Phase Field Excited Flux Switching Machine with Non-Overlapped Windings
Modular Rotor Single Phase Field Excited Flux Switching Machine with Non-Overlapped Windings
This paper aims to propose and compare three new structures of single-phase field excited flux switching machine for pedestal fan application. Conventional six-slot/three-pole sali...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Highly-efficient Aerodynamic Design of Rotor with High Performance
Highly-efficient Aerodynamic Design of Rotor with High Performance
To design helicopter rotor efficiently, an adjoint-based and RBF surrogate model coupled method is applied for aerodynamic design of hovering rotor with high aerodynamic performanc...
Prediction of Structural Supports Influence on Rotating Machinery Dynamics
Prediction of Structural Supports Influence on Rotating Machinery Dynamics
Rotor lifetime and safety primarily depend on the level of rotor vibration. In order to avoid unwanted consequences for the plant due to rotor damage and to meet the highest requir...
Team reflections, team mental models and team performance over time
Team reflections, team mental models and team performance over time
Purpose Although previous research proved positive impacts of team reflection on team outcomes, especially team performance and innovation, there are only a few insights in to whic...
Analysis of Unbalance Response and Vibration Reduction of an Aeroengine Gas Generator Rotor System
Analysis of Unbalance Response and Vibration Reduction of an Aeroengine Gas Generator Rotor System
To ensure the vibration safety of rotor support systems in modern aeroengines, this study develops a dynamic model of the aeroengine gas generator rotor system and analyzes its com...
Flow Dynamics of a Subsonic Axial Compressor Rotor With Leaned Tandem Blades
Flow Dynamics of a Subsonic Axial Compressor Rotor With Leaned Tandem Blades
Abstract For higher diffusion, tandem blading has demonstrated performance superiority over a conventional blade. Modern compressor blades are often designed with th...

Back to Top