AxSTREAM for Centrifugal Compressor and Radial Turbine Design
Day 1 |
| Part I. Introduction: The Role of AxSTREAM in the Design of Turbomachinery |
- Introduction – role of AxSTREAM in turbomachinery design
- Workflow of Turbomachinery Flow path Design
- AxSTREAM Turbomachinery conceptual design suite - Features, Functions & Applications
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| Part II. AxSTREAM - Centrifugal Compressor |
Design & Analysis of a Centrifugal Compressor
- Preliminary design dialogue features
- Compressor calculation in design point and off-design maps generation
- Flow path optimization using Design of Experiment engine
- Centrifugal compressor profiling and 3D blade design
- Express structural and flow analysis of centrifugal compressor
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Day 2 |
| Part III. AxSTREAM – Radial Turbine |
Design & Analysis of a Radial Turbine
- Preliminary design dialogue features
- Turbine calculation and map generation
- Flow path optimization using Design of Experiment engine
- Radial turbine profiling and 3D blade design
- Express structural and flow analysis of radial turbine
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Day 3 |
| Part IV. AxSTREAM – Exercises |
- Centrifugal Compressor with total-total pressure ratio 3.25 Design Exercise
- 600 kW Radial Turbine Design Exercise
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| PART VI. Summary & Re-cap |
- Advanced AxSTREAM features for XXI century turbomachinery design: counter-rotating turbine, compressor and fan; Mixed flow turbine and compressors
- Questions & Discussion
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Day 4 |
| Part VII. Advanced CAD Modeling for Blade Design – Part 1 |
- Basic assembly modeling
- Mating conditions
- Define parametric relationships
- Capturing design intent
- Create primitive and swept solids
- Solids information
- Introduction to sketcher
- Create and edit drawings
- Freeform modeling
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Day 5 |
| Part VII. Advanced CAD Modeling for Blade Design – Part 2 |
- Basic assembly modeling
- Mating conditions
- Define parametric relationships
- Capturing design intent
- Create primitive and swept solids
- Solids information
- Introduction to sketcher
- Create and edit drawings
- Freeform modeling
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