Numerical Simulation of Premix Combustion with Recirculation

Slides:



Advertisements
Similar presentations
Lecture 20: Laminar Non-premixed Flames – Introduction, Non-reacting Jets, Simplified Description of Laminar Non- premixed Flames Yi versus f Experimental.
Advertisements

Indian Institute of Technology Bombay Why you should study a course on “Combustion” Introduction of the Combustion.
Mid Term Meeting, Sept. 21st-22nd, 2004, Karlsruhe Presentation by: F.Pittaluga - UNIGE-DIMSET Dept. of Fluid Machinery, Energy Systems and Transportation.
MAE 5310: COMBUSTION FUNDAMENTALS
Combustion Design Considerations
MAE 5310: COMBUSTION FUNDAMENTALS
FEMLAB Conference Stockholm 2005 UNIVERSITY OF CATANIA Department of Industrial and Mechanical Engineering Authors : M. ALECCI, G. CAMMARATA, G. PETRONE.
Laminar Premixed Flames and Diffusion Flames
Laminar Premixed Flames A flame represents an interface separating the unburned gas from the combustion products. A flame can propagate as in an engine.
Performance of Ignition Process P M V Subbarao Professor Mechanical Engineering Department Effectiveness of Ignition for Efficient Combustion …..
Computational Aeroacoustics Prof. S. H. Frankel, ME
Ghent University - UGent Department of Flow, Heat and Combustion Mechanics Simulations of hydrogen auto-ignition Ivana Stanković.
Analysis of In-Cylinder Process in Diesel Engines P M V Subbarao Professor Mechanical Engineering Department Sudden Creation of Young Flame & Gradual.
Knut Vaagsaether, Vegeir Knudsen and Dag Bjerketvedt
PACCON 2013 PREDICTION OF NITROGEN OXIDE GENERATED FROM GAS TURBINE ENGINE Global Chemical Sciences for Green Community NATCHANON CHAIPRASERT / AMORNCHAI.
Verification and Validation Diagram of a Control Rod Guide Tube on top of a hot box dome that has been gradually heating up. A hole was drilled here to.
Combustion AND Emissions Performance of syngas fuels derived from palm shell and POLYETHYLENE (PE) WASTE VIA CATALYTIC STEAM GASIFICATION Chaouki Ghenai.
Centre for Fire and Explosion Studies Numerical Study of Spontaneous Ignition of Pressurized Hydrogen Release through a length of tube with local contraction.
MAE 5310: COMBUSTION FUNDAMENTALS
1 CONCEPTION OF MINICHANNEL AS THE SOURCE OF SELF-IGNITION AT HIGH SUPERSONIC SPEED Goldfeld М.А., Starov А.V., Timofeev К.Yu. Khristianovich Institute.
Two-fluid models for fluidized bed reactors: Latest trends and challenges Yassir Makkawi Chemical Engineering.
1 CREL meeting 2004 CFD Simulation of Fisher-Tropsch Synthesis in Slurry Bubble Column By Andrey Troshko Prepared by Peter Spicka Fluent Inc. 10 Cavendish.
Design & Thermo Chemistry of Turbo Combustor P M V Subbarao Professor Mechanical Engineering Department Design for performance, safety and Reliability…..
Propulsion: Axial Flow Compressor & Fan
Faculty of Engineering, Kingston University London
Design Analysis of Furnace Of A Steam Generator P M V Subbarao Professor Mechanical Engineering Department Perfection of Primary Cause for All that Continues…..
Mathematical Equations of CFD
Extinction Limits of Catalytic Combustion in Microchannels Kaoru Maruta, Koichi Takeda Akita Prefectural University, Honjyo, Akita, Japan Jeongmin Ahn,
ICHS, September 2007 On The Use Of Spray Systems: An Example Of R&D Work In Hydrogen Safety For Nuclear Applications C. Joseph-Auguste 1, H. Cheikhravat.
TURBULENT PREMIXED FLAMES AT HIGH KARLOVITZ NUMBERS UNDER OXY-FUEL CONDITIONS Yang Chen 1, K.H. Luo 1,2 1 Center for Combustion Energy, Tsinghua University,
Experimental Investigation of Limit Cycle Oscillations in an Unstable Gas Turbine Combustor* Timothy C. Lieuwen ^ and Ben T. Zinn # School of Aerospace.
Auto Ignition, Premixed & Diffusive Combustion in CI Engines
HIGH PRESSURE HYDROGEN JETS IN THE PRESENCE OF A SURFACE P. Bénard, A. Tchouvelev, A. Hourri, Z. Chen and B. Angers.
Shaping the Future Emissions Formation and Control.
Combustion Characteristics in a Small-Scale Reactor with Catalyst Segmentation and Cavities Yueh-Heng Li 1, Guan-Bang Chen 2, Fang-Hsien Wu 1, Tsarng-Sheng.
University of Wisconsin -- Engine Research Center slide 1 Flamelet Modeling for the Diffusion Combustion in OpenFOAM ME 769 Final Project Presentation.
Fire scenarios of CMS underground installations and model building Michael Plagge Physics Department Compact Muon Solenoid Experiment Group European Organization.
Ignition by hot jets Dr.-Ing. Detlev Markus. Ignition by hot turbulent jet Investigation of ignition process by hot jets (PTB, Braunschweig, Germany)
University of Wisconsin -- Engine Research Center slide 1 Counter-flow diffusion flame ME Project Chi-wei Tsang Longxiang Liu Krishna P.
CFD MODELING OF SYNGAS COMBUSTION IN GAS TURBINE CONDITIONS
Date of download: 7/7/2016 Copyright © ASME. All rights reserved. From: Computationally Efficient Simulation of Multicomponent Fuel Combustion Using a.
COMBUSTION FUNDAMENTALS Turbulent Premixed and Non-Premixed Flames
The Prediction of Low Frequency Rumble in Combustion Systems
INTRODUCTION Motivation
Numerical Model on the Effects of Gravity on Diffusion Flames
MAE 5310: COMBUSTION FUNDAMENTALS
Date of download: 10/19/2017 Copyright © ASME. All rights reserved.
Date of download: 10/23/2017 Copyright © ASME. All rights reserved.
Date of download: 10/29/2017 Copyright © ASME. All rights reserved.
Simulation results and measurements
Date of download: 11/9/2017 Copyright © ASME. All rights reserved.
Prediction of the Lift-off, Blow-out and Blow-off Stability Limits of Pure Hydrogen and Hydrogen/Hydrocarbon Mixture Jet Flames Wu, Y., Al-Rahbi, I. S.,
Date of download: 12/29/2017 Copyright © ASME. All rights reserved.
E. Demosthenous E. Mastorakos R. S. Cant Division A
Combustor for Jet Engines
OUTLINE Combustion Chamber Deposits
Combustor Technology Turbo Power programme conference, 9 April 2014
Combustor Model Simulation
udy of Hydrogen/Syngas Combustion and NO Emissions
Fuels 27/11/2018 Objective To compare the energy content of different fuels with an experimental technique.
Global Warming Problem
ASME Turbo Expo Montreal May 14-17, 2007
Study of Hydrogen/Syngas Combustion and NO Emissions at High Pressures and Temperatures Yiguang Ju, Department of Mechanical and Aerospace Engineering,
MAE 5360: Hypersonic Airbreathing Engines
Combustion exothermic chemical reactions between a fuel and an oxidant accompanied by the production of heat or both heat and light in the form of either.
Studies of High-Pressure Acoustic Combustion Instabilities in Hydrocarbon-Oxygen Liquid-Propellant Rocket Engines Based on Reduced Chemical-Kinetic Mechanisms.
Turbulent Mixing in the Presence of Liquid Droplets with Application to Spray Combustion Venkatramanan Raman Department of Aerospace Engineering and Engineering.
Chapter 2 – The Behaviour of Gases – Sections 2.4 to 2.6
Combustion Reaction Caroline Monger, Emily Smith, Lauren Cochran, Jada Miles, and Erin Ball.
Chemistry Combustion LabRat Scientific © 2018.
Presentation transcript:

Numerical Simulation of Premix Combustion with Recirculation MAE 5310 Final Presentation Fumitaka Goto Instructor:Dr.D.Kirk Dec13th,2005

Modeling of Gas Turbine Engines Flow Recirculation Unsteady Turbulence Mixing Phase change Chemical Kinetics Turbulence Combustion Flame Speed evaporation Large/Small Eddys…etc COMPLEX! Simulation of Flow within aPW gas turbine-combustor UofMinesota http://www.aem.umn.edu/research/ http://www.aircraftenginedesign.com/pictures/pw500.gif

Motivation Recirculation is observed within IC engines Simulation identifies hot temperature region Production of NOx and radicals Stress/strain on structures More economical than experiments Enables to predict lean fuel blow out (LBO) Fuel efficient design Safety Improvement http://www.cfdrc.com/bizareas/aerospace/combustion/

Alternative Topic: 2-DSimulation Axi-Symmetric Ceramic Combustor Laminar Flame let Experimental data available Discrepancy with Numerical Computation -One Point Probability Distribution Function 288K 60m/s (mm) Reactor Details with Contour of eddy lifetime 10-4 s (top) And turbulent heat release rate GW m-3 (bottom) [Derek]

Lean Methane-Air (f =0.84) [Derek]

Preliminarily Interest: Lean Methane-Air (f =0.63) [Derek]

Fluent Modeling-1 Finite Rate Chemistry 5 step mechanism [Fluent 6.2 User`s Guide] &[Kirk]

Convergence and Meshing Premix off Energy off 2nd Order Upwind E A B 1st Order D Ref: [Fluent Inc. July 6 2005 Tutorial]

Static Temperature Ref: [Fluent Inc. July 6 2005 Tutorial]

Molar Concentration CH4

Molar Concentration CO

Molar Concentration CO2

Molar Concentration O2

Molar Concentration H2O

Molar Concentration N2

Molar Concentration NO

Molar Concentration of CO2 &CO

Fluent Modeling -2 Zimount Model c mean reaction progress variable Dt the turbulent diffusivity _ ru density of the unburned mixture Ut the turbulent flame speed Global mechanism Fluent 6.2 User`s Guide and [Lipantikov]

Velocity Contour Zimount Zimount

Temperature B 5 step Finite Rate Zimount

Turbulent Kinetic Energy and Turbulent Flame Speed Sudden Expansion in Cross section area Increase due to mixing ? Velocity Increase due to recirculation

Reaction Rate

Conclusion & Recommendation Five Step Model needs modification 25 or 26 steps might give better correlation Zimount show the rate of global reaction, which is governed by oxidation of carbon dioxide. Further comparison between CFD and experiment necessary Also check the influence meshing schemes