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Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics, China September 10, 2014 2nd International Conference and Exhibition on Mechanical & Aerospace Engineerin September 08-10, 2014 Philadelphia, US

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Page 1: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump

Bin WangNanjing University of Aeronautics and Astronautics, ChinaSeptember 10, 2014

2nd International Conference and Exhibition on Mechanical & Aerospace Engineering September 08-10, 2014 Philadelphia, USA

Page 2: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

2Mech Aero-2014

Contents

Overview of vapor core pump1

Numerical model

Governing equations and flow model

Numerical results of the vapor core

Experimental verification

Conclusions and prospects

2

3

4

5

6

Page 3: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

3Mech Aero-2014

Overview of vapor core pump

Nozzle controller of a turbofan engine

VCP

Page 4: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

4Mech Aero-2014

Vapor core pump

Dismantled components of VCP

Overview of vapor core pump

Page 5: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

5Mech Aero-2014

Overview of vapor core pump

sevro piston throttle valve runing impeller

VCP Schematic

Page 6: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

6Mech Aero-2014

Vapor core photo

blade

vapor core region

interface layer

liquid fuel

Flow media in impeller

Overview of vapor core pump

How it occurs?How could it be simulated and analized?

Page 7: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

7Mech Aero-2014

Numerical model

Geometric Model of Vapor Core Pump Structure of the Impeller

Page 8: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

8Mech Aero-2014

Numerical model

Opening of the inlet throttle valve

2 mm 5 mm 8 mm

Page 9: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

9Mech Aero-2014

Numerical model

Grid model for numerical calculation

Page 10: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

10Mech Aero-2014

Governing equations and flow model

(1) Equation for vapor-liquid mixing flow

(2) momentum conservation

(3) TF Equation for vapor volume fraction distribution

Page 11: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

11Mech Aero-2014

Governing equations and flow model

i k eff k b M ki j j

kk ku G G Y S

t x x x

2

1 3 2

i effi j j

k b

ut x x x

C G C G C R Sk k

RNG k-ε

1 23 if

3v vv l v

e vm B l

P PR P P

R

1 23 if

3v vv l v

c vm B l

P PR P P

R

1/30(3 / (4π (1 )))B v vR n

Schnerr-Sauer

Page 12: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

12Mech Aero-2014

Numerical results of the vapor core

Vapor volume fraction distribution at different outlet pressure

Page 13: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

13Mech Aero-2014

Numerical results of the vapor core

Performance comparison of the pump at different outlet pressure

Page 14: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

14Mech Aero-2014

Numerical results of the vapor core

Vapor volume fraction distribution at different throttle opening

Page 15: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

15Mech Aero-2014

Numerical results of the vapor core

Performance comparison of the pump at different throttle opening

Page 16: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

16Mech Aero-2014

Experimental verification

Schematic diagram of the test system

Page 17: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

17Mech Aero-2014

Experimental verification

Characteristic comparison of vapor core pump

Page 18: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

18Mech Aero-2014

Conclusions and prospects

(1) The numerical simulation has a high credibility verified by the VCP prototype test. Errors of general performances between experiment and numerical simulation are less than 10% basically.

(2) Fuel vaporization has a significant influence on pump efficiency when the vapor region expands to the blade zone.

Conclusions:

Prospects:

Influence of the vapor core on the pump dynamic performance should be investigated to utilize the operating condition more effectively.Direct imaging technology should be employed for exact comparison of vapor core configuration.

Page 19: PowerPoint Template Simulation and Validation on Vapor Core in the Impeller Center of Vapor Core Pump Bin Wang Nanjing University of Aeronautics and Astronautics,

Thank you for your attention