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

Experimental Evaluation of the High-to-Low Speed Transformation Process for a Highly Loaded Core Compressor Stage

View through CrossRef
A set of low speed blading has been designed to represent an embedded stage from the DERA C147 high speed research compressor. The aim of the design was to undertake a careful high-to-low speed transformation of the geometry of a high speed stage and evaluate the transformation process through comparing detailed flow measurements taken in both the high and low speed environments. The high-to-low speed transformation process involves compromises due to both geometric and aerodynamic constraints. Geometric constraints include the parallel annulus of the low speed compressor and also its size and power which restrict the Reynolds number that can be achieved. Aerodynamically the high speed blades have to be subsonic and the effects of Mach number on loss buckets and boundary layer development limit the extent to which a full high-to-low speed match is possible. The low speed blading has been tested at Cranfield University’s 4-stage research compressor facility. Detailed traverse measurements were taken at rotor and stator exit along with blade surface static pressure measurements and oil flow visualisation. These, along with previous traverse measurements from the C147 compressor, have been used to show that a good comparison of pressure, flow angle, and endwall loss distributions can be achieved despite the compromises inherent in the transformation process. However some interesting differences were apparent and these are discussed. In addition, 3D flow calculations have been performed on both the rotor and stator using measured inlet conditions. These predictions model the endwall corner flow well. However, further work is needed to obtain better modelling of the clearance flow of both blade rows.
American Society of Mechanical Engineers
Title: Experimental Evaluation of the High-to-Low Speed Transformation Process for a Highly Loaded Core Compressor Stage
Description:
A set of low speed blading has been designed to represent an embedded stage from the DERA C147 high speed research compressor.
The aim of the design was to undertake a careful high-to-low speed transformation of the geometry of a high speed stage and evaluate the transformation process through comparing detailed flow measurements taken in both the high and low speed environments.
The high-to-low speed transformation process involves compromises due to both geometric and aerodynamic constraints.
Geometric constraints include the parallel annulus of the low speed compressor and also its size and power which restrict the Reynolds number that can be achieved.
Aerodynamically the high speed blades have to be subsonic and the effects of Mach number on loss buckets and boundary layer development limit the extent to which a full high-to-low speed match is possible.
The low speed blading has been tested at Cranfield University’s 4-stage research compressor facility.
Detailed traverse measurements were taken at rotor and stator exit along with blade surface static pressure measurements and oil flow visualisation.
These, along with previous traverse measurements from the C147 compressor, have been used to show that a good comparison of pressure, flow angle, and endwall loss distributions can be achieved despite the compromises inherent in the transformation process.
However some interesting differences were apparent and these are discussed.
In addition, 3D flow calculations have been performed on both the rotor and stator using measured inlet conditions.
These predictions model the endwall corner flow well.
However, further work is needed to obtain better modelling of the clearance flow of both blade rows.

Related Results

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. ...
Root Cause Analysis of the Catastrophic Failure of a Propylene Recycle Compressor
Root Cause Analysis of the Catastrophic Failure of a Propylene Recycle Compressor
Abstract A 2-section, 6-stage propylene recycle compressor experienced a catastrophic failure that resulted in extensive damage to its internals. The compressor was ...
Compressor Piping Design Effect on Vibration Data
Compressor Piping Design Effect on Vibration Data
One of the systems for oil and gas production supports is the nitrogen compression system. Problem found that condition of the compressor has high vibration with the maximum overal...
Real-Time Torque Estimation of an Air Conditioner Compressor for the CO2 Emissions Reduction from an Engine Vehicle
Real-Time Torque Estimation of an Air Conditioner Compressor for the CO2 Emissions Reduction from an Engine Vehicle
Reducing the CO2 emissions from all new cars is essential to prevent a climate emergency. Even in the trend of accelerating the uptake of zero-emission models, the market forecasti...
Failure Evaluation of the Compressor Vanes of Combined Cycle Unit
Failure Evaluation of the Compressor Vanes of Combined Cycle Unit
A compressor blade failure was experienced on a 69 MW gas turbine of a combined cycle (C.C.) unit after four years operation since its last overhaul (January 2005). The unit accumu...
Inlet Distortion Studies on a Centrifugal Compressor
Inlet Distortion Studies on a Centrifugal Compressor
Abstract Centrifugal compressors can be subjected to non-uniformity in inlet flows due to complicated inlet pipe geometries arising from space constraints and the wa...
Centrifugal Compressor Design Considerations
Centrifugal Compressor Design Considerations
Initial design considerations of centrifugal compressor are commonly performed with experience base, although computer technology and numerical methods had made significantly progr...
Approach to Model Thermistor Based AC Compressor Cut-OFF/Cut-IN Phenomenon in 1D Simulation of Mobile Air Conditioning
Approach to Model Thermistor Based AC Compressor Cut-OFF/Cut-IN Phenomenon in 1D Simulation of Mobile Air Conditioning
<div class="section abstract"><div class="htmlview paragraph">This paper documents the approach followed to simulate the physical phenomenon of thermistor based AC comp...

Back to Top