SlideShare a Scribd company logo
1 of 4
Download to read offline
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 29
CFD SIMULATION COLD FLOW INSIDE BOILER: THE EFFECT OF BOILER
HEIGHT ON TEMPERATURE DISTRIBUTION
Fajri Vidian1, Permadi Waskito1
1Department of Mechanical Engineering, Faculty of Engineering, Universities Sriwijaya, Jalan Raya Palembang-
Prabumulih km 32, Indralaya, Ogan Ilir, Sumatera Selatan, 30662, Indonesia
----------------------------------------------------------------------***---------------------------------------------------------------------
Abstract - Temperature distribution in boiler has an
important role in an operation. The temperature distribution
in the superheater zone or the top of the boiler must be
controlled to prevent over heat. In this study a cold flow
simulation was carried out using air to investigatetheeffectof
temperature changes in the boiler. Simulation was done by
varying the height of the boilers each of 7 m, 8 m, 9 m at the
temperature of air inlet of 900 0C. The simulation resultsshow
a decrease on temperature distribution in theboiler dueto the
increase on the height of boiler. The final outlet temperature
of the boiler for each of height were 370.3 0C, 345.3 0C, 336.3
0C.
Key Words: CFD, Cold Flow, Boiler, Temperature
1. INTRODUCTION
Boiler is one of the most important parts of a steam power
plant. The temperature distribution in the boiler is very
important in producing good performance of the boiler. The
temperature distribution at the superheater zoneshould not
be too high because it can damage the tubes in the
superheater (1). Cold flow simulationisa simulationmethod
that does not involve a chemical reaction. This condition
could facilitate to predict the initial influenceofa variableon
boiler performance parameters. Several studies have been
conducted using cold flow simulation. Vs naveen et al. [2]
have simulated the flue gas flow in the duct of theheatwaste
recovery plant, simulations were carried out to analyze and
improve flow distribution for increasing boiler efficiency.
Rohith et al. [3] have conducted a cold flow simulation on
internal combustion engine to see the effect of moving the
crank shaft on the velocity distribution in the cylinder. Fajri
et al. (4) have conducted a cold flow simulation on an
external recirculation updraft gasifier, simulation was
carried out to obtain the effect of ejector geometry and
nozzle exit position on recirculation flow. Ferreira et al. [5]
have simulated on isothermal gas flow in a kraft recovery
boiler to investigate effect of air inlet port position on
optimal operation of boiler. Florin et al. (6) have simulated
air-methane mixed flow in the swirl burner to obtain
optimum condition of combustion on the front of burner. S
Bharat et al. [7] have conducted a simulation on the swirl
combustor gas turbine,simulation wasconductedtoobserve
the effect of vane angle on swirl flow. Artit et al. (8) have
done an isothermal simulation on combustor vortex to
investigate swirl flow indication using the turbulencemodel
of the standard k-𝛆, RNG k-𝛆, SST k-𝛆 and RSM k-𝛆. In this
study was simulated cold flowinsideboiler toinvestigatethe
effect of boiler height on temperature distribution.
2. METHODOLOGY
Simulations were carried out on the 3D of industrial boilers
by varying the height of X as shown in Figure 1. Theheight of
X was varied each of 7 m, 8 m, 9 m respectively. The air inlet
speed was used at 80 m/s with a temperature of 900 0C [9].
The amount of the duct of air inlet and outlet were 6 and 1
respectively. The 3D calculationdomainisshowninFigure2.
The mesh generation as shows in Figure 3, was used to
calculate the fluid flow and energy equation in domain of
calculation. Numerical calculations were performed using
finite element method that executed using Autodesk CFD
Simulation.
Figure 1. The position of height variation (X)
Figure 2. The 3D of Calculation Domain
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 30
Figure 3. The Meshing of Calculation Domain
3. RESULTS AND DISCUSION
Figure 4 shows the effect of boiler heightonthetemperature
distribution in the boiler. The increase of boiler height
tended to decrease thetemperaturedistributionintheboiler
that was identified by decreasing the yellow contour,
especially at the top of the boiler. The temperature
distribution contour at the top of the boiler in the x-z
direction is shown in Figure 5. The temperature distribution
along the center of the top of boiler is shown in Figure 6. The
final temperature at outlet of boiler at height of 7 m, 8 m, 9
m were 370.3 0C, 345.3 0C, 336.3 0C, respectively.
Figure 4. Temperature Distribution inside Boiler : (a) 7 m;
(b) 8 m; (c) .9 m.
Figure 5. Temperature Distribution at The Top of Boiler
(Superheater Zone): (a) 7 m; (b) 8 m; (c) 9 m.
Figure 6. Temperature Distribution along of Top of Boiler
..
The temperature distribution along the boiler from inlet to
outlet for each of height of 7 m, 8 m, 9 m are shown in
Figure 7-9. The decrease of temperature in the boiler was
represented at point of height of 4 m. Boiler height of 7 m, 8
m, 9 m had temperature at point of 4 m were 610 °C, 601 °C,
585 °C respectively.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 31
Figure 7. Temperature Distribution along of Total Length
of Boiler at x = 7 m.
Figure 8. Temperature Distribution along of Total Length
of Boiler at x = 8 m
Figure 9. Temperature Distribution along of Total Length
of Boiler at x = 9 m
The simulation results showed an increasing ofboilerheight
of 7 m, 8 m, 9 m respectively decreased on air temperature
distribution inside the boiler. The temperature distribution
in the top boiler (superheater zone) decreased with an
increasing of boiler height. The temperature of air at outlet
boiler for each of height were 370.3 0C, 345.3 0C, 336.3 0C.
REFERENCES
[1] Raja Saripalli, Ting Wang, Benjamin Day, Simulation of
Combustion and Thermal Flow in An Industrial Boiler,
Proceedings of 27th Industrial Energy Technology
Conference, New Orleans, Louisiana, (2005).
[2] VS Naveen J, Prof. A. Roma Krishna, CFD Simulation of
Flue Gas Ducting in Waste Heat Recovery Plant,
International Journal of Engineering Sciences &
Research Technology, 6(10), 220-231, (2017).
[3] Rohith. S, Dr. G .V. Naveen Prakash, Cold Flow
Simulation in an IC Engine, International Research
Journal of Engineering and Technology (IRJET), 02(07),
82 -87, (2015).
[4] Fajri Vidiana, Adi Surjosatyo, YuliantoSulistyoNugroho,
Computational Fluid Dynamics Analysis of External
Recirculation Flow at Updraft GasifierUsingEjector, AIP
Conference Proceedings 1440, 936, (2012).
[5] DJO. Ferreira, M. Cardoso, S.W. Park, Gas Flow Analysis
in Kraft Recovery Boiler, Fuel Processing Technology
,91, 789-798, (2010).
4. CONCLUSION
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 32
[6] Florin Bode, Victor Hodor, Corina Giurgea, Numerical
Investigation on A Swirl Burner with Internal Flue Gas
Reciculation, Scientific Bulletin of the “Politehnical
University of Timisoara“ Transactions on Mechanics
Tom 52 (66), Fascicola 3, (2007).
[7] S Bharat Krishna, Prof V Ganesan, CFD Analysis of Flow
through Vane Swirlers, IE (I) Journal.MC, 86, (2005).
[8] Artit Ridluan, Smith Eiamsa-ard, Pongjet Promvonge,
Numerical simulation of 3D turbulentisothermal flowin
a vortex combustor, International Communications in
Heat and Mass Transfer, 34 (7), 860-869, (2007).
[9] Marko Huttunen, Juho Peltola, Sirpa Kallio, Lassi
Karvonen, Timo Niemi, Ville Ylä-Outinen.Analysisofthe
processes in fluidized bed boiler furnaces during load
changes, Energy Procedia 120, 580–587, (2017).

More Related Content

What's hot

Turbulent Heat Transfer from a Flat Plate Placed Downstream of a Fence
Turbulent Heat Transfer from a Flat Plate Placed Downstream of a FenceTurbulent Heat Transfer from a Flat Plate Placed Downstream of a Fence
Turbulent Heat Transfer from a Flat Plate Placed Downstream of a Fence
IJERA Editor
 
Conjugate Heat transfer Analysis of helical fins with airfoil cross-section a...
Conjugate Heat transfer Analysis of helical fins with airfoil cross-section a...Conjugate Heat transfer Analysis of helical fins with airfoil cross-section a...
Conjugate Heat transfer Analysis of helical fins with airfoil cross-section a...
IJERA Editor
 

What's hot (20)

IRJET- CFD Analysis of various Turbulent Parameters in a Radiator by using Lo...
IRJET- CFD Analysis of various Turbulent Parameters in a Radiator by using Lo...IRJET- CFD Analysis of various Turbulent Parameters in a Radiator by using Lo...
IRJET- CFD Analysis of various Turbulent Parameters in a Radiator by using Lo...
 
Design & Thermal Analysis of I.C. Engine Poppet Valves using Solidworks and FEA
Design & Thermal Analysis of I.C. Engine Poppet Valves using Solidworks and FEADesign & Thermal Analysis of I.C. Engine Poppet Valves using Solidworks and FEA
Design & Thermal Analysis of I.C. Engine Poppet Valves using Solidworks and FEA
 
IRJET-Performance Analysis of Solar Air Heater with Different Absorber Materi...
IRJET-Performance Analysis of Solar Air Heater with Different Absorber Materi...IRJET-Performance Analysis of Solar Air Heater with Different Absorber Materi...
IRJET-Performance Analysis of Solar Air Heater with Different Absorber Materi...
 
IRJET - Experimental Analysis on Shell and Tube Heat Exchanger using ANSYS
IRJET -  	  Experimental Analysis on Shell and Tube Heat Exchanger using ANSYSIRJET -  	  Experimental Analysis on Shell and Tube Heat Exchanger using ANSYS
IRJET - Experimental Analysis on Shell and Tube Heat Exchanger using ANSYS
 
A study on the edm of al7075+3 wt%sic+3wt% b4c hybrid mmc
A study on the edm of al7075+3 wt%sic+3wt% b4c hybrid mmcA study on the edm of al7075+3 wt%sic+3wt% b4c hybrid mmc
A study on the edm of al7075+3 wt%sic+3wt% b4c hybrid mmc
 
Performance Analysis and Optimization of Air Preheater in Thermal Power Plant
Performance Analysis and Optimization of Air Preheater in Thermal Power PlantPerformance Analysis and Optimization of Air Preheater in Thermal Power Plant
Performance Analysis and Optimization of Air Preheater in Thermal Power Plant
 
15feb1
15feb115feb1
15feb1
 
Turbulent Heat Transfer from a Flat Plate Placed Downstream of a Fence
Turbulent Heat Transfer from a Flat Plate Placed Downstream of a FenceTurbulent Heat Transfer from a Flat Plate Placed Downstream of a Fence
Turbulent Heat Transfer from a Flat Plate Placed Downstream of a Fence
 
IRJET- Design, Analysis & Weight Reduction of Piston of Refrigerator Compressor
IRJET- Design, Analysis & Weight Reduction of Piston of Refrigerator CompressorIRJET- Design, Analysis & Weight Reduction of Piston of Refrigerator Compressor
IRJET- Design, Analysis & Weight Reduction of Piston of Refrigerator Compressor
 
Validation of Design Parameters of Radiator using Computational Tool
Validation of Design Parameters of Radiator using Computational ToolValidation of Design Parameters of Radiator using Computational Tool
Validation of Design Parameters of Radiator using Computational Tool
 
Experimental and CFD Analysis of Exhaust Manifold to Improve Performance of I...
Experimental and CFD Analysis of Exhaust Manifold to Improve Performance of I...Experimental and CFD Analysis of Exhaust Manifold to Improve Performance of I...
Experimental and CFD Analysis of Exhaust Manifold to Improve Performance of I...
 
IRJET- Static and Thermal Analysis of Piston with Different Thermal Coatings
IRJET- Static and Thermal Analysis of Piston with Different Thermal CoatingsIRJET- Static and Thermal Analysis of Piston with Different Thermal Coatings
IRJET- Static and Thermal Analysis of Piston with Different Thermal Coatings
 
IRJET-Enhancing the Performance of Hybrid Microgrid using non Isolated Single...
IRJET-Enhancing the Performance of Hybrid Microgrid using non Isolated Single...IRJET-Enhancing the Performance of Hybrid Microgrid using non Isolated Single...
IRJET-Enhancing the Performance of Hybrid Microgrid using non Isolated Single...
 
IRJET- Design and Analysis of Four Storke Petrol Engine Gasket
IRJET- Design and Analysis of Four Storke Petrol Engine GasketIRJET- Design and Analysis of Four Storke Petrol Engine Gasket
IRJET- Design and Analysis of Four Storke Petrol Engine Gasket
 
Recuperative heat exchangers in the exhaust nozzle of an Aero engine
Recuperative heat exchangers in the exhaust nozzle of an Aero engineRecuperative heat exchangers in the exhaust nozzle of an Aero engine
Recuperative heat exchangers in the exhaust nozzle of an Aero engine
 
Ijmet 06 09_005
Ijmet 06 09_005Ijmet 06 09_005
Ijmet 06 09_005
 
IRJET- Optimization and CFD Analysis on Profile Elements of Regenerative Rota...
IRJET- Optimization and CFD Analysis on Profile Elements of Regenerative Rota...IRJET- Optimization and CFD Analysis on Profile Elements of Regenerative Rota...
IRJET- Optimization and CFD Analysis on Profile Elements of Regenerative Rota...
 
IRJET- Experimental Analysis of Circular Perforated Fin Arrays by Forced Conv...
IRJET- Experimental Analysis of Circular Perforated Fin Arrays by Forced Conv...IRJET- Experimental Analysis of Circular Perforated Fin Arrays by Forced Conv...
IRJET- Experimental Analysis of Circular Perforated Fin Arrays by Forced Conv...
 
Conjugate Heat transfer Analysis of helical fins with airfoil cross-section a...
Conjugate Heat transfer Analysis of helical fins with airfoil cross-section a...Conjugate Heat transfer Analysis of helical fins with airfoil cross-section a...
Conjugate Heat transfer Analysis of helical fins with airfoil cross-section a...
 
IRJET- Heat Exchanger based on Nano Fluid
IRJET- Heat Exchanger based on Nano FluidIRJET- Heat Exchanger based on Nano Fluid
IRJET- Heat Exchanger based on Nano Fluid
 

Similar to IRJET- CFD Simulation Cold Flow Inside Boiler: The Effect of Boiler Height on Temperature Distribution

Similar to IRJET- CFD Simulation Cold Flow Inside Boiler: The Effect of Boiler Height on Temperature Distribution (20)

Effect of Fin Thickness and Geometry on Engine Cylinder Fins
Effect of Fin Thickness and Geometry on Engine Cylinder FinsEffect of Fin Thickness and Geometry on Engine Cylinder Fins
Effect of Fin Thickness and Geometry on Engine Cylinder Fins
 
IRJET- Thermal Analysis of Muffler Guard for HERO XTREME 200R Bike using FEA ...
IRJET- Thermal Analysis of Muffler Guard for HERO XTREME 200R Bike using FEA ...IRJET- Thermal Analysis of Muffler Guard for HERO XTREME 200R Bike using FEA ...
IRJET- Thermal Analysis of Muffler Guard for HERO XTREME 200R Bike using FEA ...
 
IRJET- CFD Analysis of Double Pipe Heat Exchanger with and with out Dimples
IRJET- CFD Analysis of Double Pipe Heat Exchanger with and with out DimplesIRJET- CFD Analysis of Double Pipe Heat Exchanger with and with out Dimples
IRJET- CFD Analysis of Double Pipe Heat Exchanger with and with out Dimples
 
CFD Analysis On Louvered Fin
CFD Analysis On Louvered FinCFD Analysis On Louvered Fin
CFD Analysis On Louvered Fin
 
Modelling & Thermal analysis of pulse jet engine using CFD
Modelling & Thermal analysis of pulse jet engine using CFDModelling & Thermal analysis of pulse jet engine using CFD
Modelling & Thermal analysis of pulse jet engine using CFD
 
IRJET- Heat Transfer Enhancement with Flag Vortex Generator
IRJET-  	  Heat Transfer Enhancement with Flag Vortex GeneratorIRJET-  	  Heat Transfer Enhancement with Flag Vortex Generator
IRJET- Heat Transfer Enhancement with Flag Vortex Generator
 
IRJET- CFD Analysis of 4 Cylinder Intake Manifold using STAR CCM+
IRJET- CFD Analysis of 4 Cylinder Intake Manifold using STAR CCM+IRJET- CFD Analysis of 4 Cylinder Intake Manifold using STAR CCM+
IRJET- CFD Analysis of 4 Cylinder Intake Manifold using STAR CCM+
 
IRJET - Performance Evaluation and Parametric Study of Basic and Reheated Coo...
IRJET - Performance Evaluation and Parametric Study of Basic and Reheated Coo...IRJET - Performance Evaluation and Parametric Study of Basic and Reheated Coo...
IRJET - Performance Evaluation and Parametric Study of Basic and Reheated Coo...
 
IRJET- Static Structural and Modal Analysis of Secondary Air Flow System
IRJET- Static Structural and Modal Analysis of Secondary Air Flow SystemIRJET- Static Structural and Modal Analysis of Secondary Air Flow System
IRJET- Static Structural and Modal Analysis of Secondary Air Flow System
 
IRJET- Design and Fabrication of “Cavitation Water Heater”
IRJET-  	  Design and Fabrication of “Cavitation Water Heater”IRJET-  	  Design and Fabrication of “Cavitation Water Heater”
IRJET- Design and Fabrication of “Cavitation Water Heater”
 
Multi objective optimization of triple concentric tube heat exchanger
Multi objective optimization of triple concentric tube heat exchangerMulti objective optimization of triple concentric tube heat exchanger
Multi objective optimization of triple concentric tube heat exchanger
 
IRJET- Design and Analysis of Ejector Refrigeration System using R-134a Refr...
IRJET-	 Design and Analysis of Ejector Refrigeration System using R-134a Refr...IRJET-	 Design and Analysis of Ejector Refrigeration System using R-134a Refr...
IRJET- Design and Analysis of Ejector Refrigeration System using R-134a Refr...
 
IRJET- Research of Cooling Characteristics of Hot Surface using Two Inclined ...
IRJET- Research of Cooling Characteristics of Hot Surface using Two Inclined ...IRJET- Research of Cooling Characteristics of Hot Surface using Two Inclined ...
IRJET- Research of Cooling Characteristics of Hot Surface using Two Inclined ...
 
IRJET- Thermoelectrical Generator for Waste heat Recovery- Review
IRJET-  	  Thermoelectrical Generator for Waste heat Recovery- ReviewIRJET-  	  Thermoelectrical Generator for Waste heat Recovery- Review
IRJET- Thermoelectrical Generator for Waste heat Recovery- Review
 
30120140504026
3012014050402630120140504026
30120140504026
 
COMPUTATIONAL STUDY OF COOLING OF PV SOLAR PANEL USING FINNED HEAT PIPE TECHN...
COMPUTATIONAL STUDY OF COOLING OF PV SOLAR PANEL USING FINNED HEAT PIPE TECHN...COMPUTATIONAL STUDY OF COOLING OF PV SOLAR PANEL USING FINNED HEAT PIPE TECHN...
COMPUTATIONAL STUDY OF COOLING OF PV SOLAR PANEL USING FINNED HEAT PIPE TECHN...
 
IRJET- Analysis of Cooling Techniques of a Gas Turbine Blade
IRJET- Analysis of Cooling Techniques of a Gas Turbine BladeIRJET- Analysis of Cooling Techniques of a Gas Turbine Blade
IRJET- Analysis of Cooling Techniques of a Gas Turbine Blade
 
Numerically and CFD studies on shell and tube heat exchangers
Numerically and CFD studies on shell and tube heat exchangersNumerically and CFD studies on shell and tube heat exchangers
Numerically and CFD studies on shell and tube heat exchangers
 
IRJET- A Reviw on Different Geometrical Fins and their Effect on Heat Tra...
IRJET-  	  A Reviw on Different Geometrical Fins and their Effect on Heat Tra...IRJET-  	  A Reviw on Different Geometrical Fins and their Effect on Heat Tra...
IRJET- A Reviw on Different Geometrical Fins and their Effect on Heat Tra...
 
To study Magnus Effect on Flettner Rotor
To study Magnus Effect on Flettner RotorTo study Magnus Effect on Flettner Rotor
To study Magnus Effect on Flettner Rotor
 

More from IRJET Journal

More from IRJET Journal (20)

TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
 
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURESTUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
 
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
 
Effect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil CharacteristicsEffect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil Characteristics
 
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
 
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
 
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
 
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
 
A REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADASA REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADAS
 
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
 
P.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD ProP.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD Pro
 
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
 
Survey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare SystemSurvey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare System
 
Review on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridgesReview on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridges
 
React based fullstack edtech web application
React based fullstack edtech web applicationReact based fullstack edtech web application
React based fullstack edtech web application
 
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
 
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
 
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
 
Multistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic DesignMultistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic Design
 
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
 

Recently uploaded

1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
AldoGarca30
 
Hospital management system project report.pdf
Hospital management system project report.pdfHospital management system project report.pdf
Hospital management system project report.pdf
Kamal Acharya
 
Integrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - NeometrixIntegrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - Neometrix
Neometrix_Engineering_Pvt_Ltd
 
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments""Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
mphochane1998
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
ssuser89054b
 

Recently uploaded (20)

UNIT 4 PTRP final Convergence in probability.pptx
UNIT 4 PTRP final Convergence in probability.pptxUNIT 4 PTRP final Convergence in probability.pptx
UNIT 4 PTRP final Convergence in probability.pptx
 
Signal Processing and Linear System Analysis
Signal Processing and Linear System AnalysisSignal Processing and Linear System Analysis
Signal Processing and Linear System Analysis
 
Convergence of Robotics and Gen AI offers excellent opportunities for Entrepr...
Convergence of Robotics and Gen AI offers excellent opportunities for Entrepr...Convergence of Robotics and Gen AI offers excellent opportunities for Entrepr...
Convergence of Robotics and Gen AI offers excellent opportunities for Entrepr...
 
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
 
COST-EFFETIVE and Energy Efficient BUILDINGS ptx
COST-EFFETIVE  and Energy Efficient BUILDINGS ptxCOST-EFFETIVE  and Energy Efficient BUILDINGS ptx
COST-EFFETIVE and Energy Efficient BUILDINGS ptx
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
 
Hospital management system project report.pdf
Hospital management system project report.pdfHospital management system project report.pdf
Hospital management system project report.pdf
 
8086 Microprocessor Architecture: 16-bit microprocessor
8086 Microprocessor Architecture: 16-bit microprocessor8086 Microprocessor Architecture: 16-bit microprocessor
8086 Microprocessor Architecture: 16-bit microprocessor
 
Integrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - NeometrixIntegrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - Neometrix
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
 
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments""Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
 
Worksharing and 3D Modeling with Revit.pptx
Worksharing and 3D Modeling with Revit.pptxWorksharing and 3D Modeling with Revit.pptx
Worksharing and 3D Modeling with Revit.pptx
 
Augmented Reality (AR) with Augin Software.pptx
Augmented Reality (AR) with Augin Software.pptxAugmented Reality (AR) with Augin Software.pptx
Augmented Reality (AR) with Augin Software.pptx
 
PE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiesPE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and properties
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdf
 
fitting shop and tools used in fitting shop .ppt
fitting shop and tools used in fitting shop .pptfitting shop and tools used in fitting shop .ppt
fitting shop and tools used in fitting shop .ppt
 
Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the start
 
Electromagnetic relays used for power system .pptx
Electromagnetic relays used for power system .pptxElectromagnetic relays used for power system .pptx
Electromagnetic relays used for power system .pptx
 
Theory of Time 2024 (Universal Theory for Everything)
Theory of Time 2024 (Universal Theory for Everything)Theory of Time 2024 (Universal Theory for Everything)
Theory of Time 2024 (Universal Theory for Everything)
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
 

IRJET- CFD Simulation Cold Flow Inside Boiler: The Effect of Boiler Height on Temperature Distribution

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 29 CFD SIMULATION COLD FLOW INSIDE BOILER: THE EFFECT OF BOILER HEIGHT ON TEMPERATURE DISTRIBUTION Fajri Vidian1, Permadi Waskito1 1Department of Mechanical Engineering, Faculty of Engineering, Universities Sriwijaya, Jalan Raya Palembang- Prabumulih km 32, Indralaya, Ogan Ilir, Sumatera Selatan, 30662, Indonesia ----------------------------------------------------------------------***--------------------------------------------------------------------- Abstract - Temperature distribution in boiler has an important role in an operation. The temperature distribution in the superheater zone or the top of the boiler must be controlled to prevent over heat. In this study a cold flow simulation was carried out using air to investigatetheeffectof temperature changes in the boiler. Simulation was done by varying the height of the boilers each of 7 m, 8 m, 9 m at the temperature of air inlet of 900 0C. The simulation resultsshow a decrease on temperature distribution in theboiler dueto the increase on the height of boiler. The final outlet temperature of the boiler for each of height were 370.3 0C, 345.3 0C, 336.3 0C. Key Words: CFD, Cold Flow, Boiler, Temperature 1. INTRODUCTION Boiler is one of the most important parts of a steam power plant. The temperature distribution in the boiler is very important in producing good performance of the boiler. The temperature distribution at the superheater zoneshould not be too high because it can damage the tubes in the superheater (1). Cold flow simulationisa simulationmethod that does not involve a chemical reaction. This condition could facilitate to predict the initial influenceofa variableon boiler performance parameters. Several studies have been conducted using cold flow simulation. Vs naveen et al. [2] have simulated the flue gas flow in the duct of theheatwaste recovery plant, simulations were carried out to analyze and improve flow distribution for increasing boiler efficiency. Rohith et al. [3] have conducted a cold flow simulation on internal combustion engine to see the effect of moving the crank shaft on the velocity distribution in the cylinder. Fajri et al. (4) have conducted a cold flow simulation on an external recirculation updraft gasifier, simulation was carried out to obtain the effect of ejector geometry and nozzle exit position on recirculation flow. Ferreira et al. [5] have simulated on isothermal gas flow in a kraft recovery boiler to investigate effect of air inlet port position on optimal operation of boiler. Florin et al. (6) have simulated air-methane mixed flow in the swirl burner to obtain optimum condition of combustion on the front of burner. S Bharat et al. [7] have conducted a simulation on the swirl combustor gas turbine,simulation wasconductedtoobserve the effect of vane angle on swirl flow. Artit et al. (8) have done an isothermal simulation on combustor vortex to investigate swirl flow indication using the turbulencemodel of the standard k-𝛆, RNG k-𝛆, SST k-𝛆 and RSM k-𝛆. In this study was simulated cold flowinsideboiler toinvestigatethe effect of boiler height on temperature distribution. 2. METHODOLOGY Simulations were carried out on the 3D of industrial boilers by varying the height of X as shown in Figure 1. Theheight of X was varied each of 7 m, 8 m, 9 m respectively. The air inlet speed was used at 80 m/s with a temperature of 900 0C [9]. The amount of the duct of air inlet and outlet were 6 and 1 respectively. The 3D calculationdomainisshowninFigure2. The mesh generation as shows in Figure 3, was used to calculate the fluid flow and energy equation in domain of calculation. Numerical calculations were performed using finite element method that executed using Autodesk CFD Simulation. Figure 1. The position of height variation (X) Figure 2. The 3D of Calculation Domain
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 30 Figure 3. The Meshing of Calculation Domain 3. RESULTS AND DISCUSION Figure 4 shows the effect of boiler heightonthetemperature distribution in the boiler. The increase of boiler height tended to decrease thetemperaturedistributionintheboiler that was identified by decreasing the yellow contour, especially at the top of the boiler. The temperature distribution contour at the top of the boiler in the x-z direction is shown in Figure 5. The temperature distribution along the center of the top of boiler is shown in Figure 6. The final temperature at outlet of boiler at height of 7 m, 8 m, 9 m were 370.3 0C, 345.3 0C, 336.3 0C, respectively. Figure 4. Temperature Distribution inside Boiler : (a) 7 m; (b) 8 m; (c) .9 m. Figure 5. Temperature Distribution at The Top of Boiler (Superheater Zone): (a) 7 m; (b) 8 m; (c) 9 m. Figure 6. Temperature Distribution along of Top of Boiler .. The temperature distribution along the boiler from inlet to outlet for each of height of 7 m, 8 m, 9 m are shown in Figure 7-9. The decrease of temperature in the boiler was represented at point of height of 4 m. Boiler height of 7 m, 8 m, 9 m had temperature at point of 4 m were 610 °C, 601 °C, 585 °C respectively.
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 31 Figure 7. Temperature Distribution along of Total Length of Boiler at x = 7 m. Figure 8. Temperature Distribution along of Total Length of Boiler at x = 8 m Figure 9. Temperature Distribution along of Total Length of Boiler at x = 9 m The simulation results showed an increasing ofboilerheight of 7 m, 8 m, 9 m respectively decreased on air temperature distribution inside the boiler. The temperature distribution in the top boiler (superheater zone) decreased with an increasing of boiler height. The temperature of air at outlet boiler for each of height were 370.3 0C, 345.3 0C, 336.3 0C. REFERENCES [1] Raja Saripalli, Ting Wang, Benjamin Day, Simulation of Combustion and Thermal Flow in An Industrial Boiler, Proceedings of 27th Industrial Energy Technology Conference, New Orleans, Louisiana, (2005). [2] VS Naveen J, Prof. A. Roma Krishna, CFD Simulation of Flue Gas Ducting in Waste Heat Recovery Plant, International Journal of Engineering Sciences & Research Technology, 6(10), 220-231, (2017). [3] Rohith. S, Dr. G .V. Naveen Prakash, Cold Flow Simulation in an IC Engine, International Research Journal of Engineering and Technology (IRJET), 02(07), 82 -87, (2015). [4] Fajri Vidiana, Adi Surjosatyo, YuliantoSulistyoNugroho, Computational Fluid Dynamics Analysis of External Recirculation Flow at Updraft GasifierUsingEjector, AIP Conference Proceedings 1440, 936, (2012). [5] DJO. Ferreira, M. Cardoso, S.W. Park, Gas Flow Analysis in Kraft Recovery Boiler, Fuel Processing Technology ,91, 789-798, (2010). 4. CONCLUSION
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 32 [6] Florin Bode, Victor Hodor, Corina Giurgea, Numerical Investigation on A Swirl Burner with Internal Flue Gas Reciculation, Scientific Bulletin of the “Politehnical University of Timisoara“ Transactions on Mechanics Tom 52 (66), Fascicola 3, (2007). [7] S Bharat Krishna, Prof V Ganesan, CFD Analysis of Flow through Vane Swirlers, IE (I) Journal.MC, 86, (2005). [8] Artit Ridluan, Smith Eiamsa-ard, Pongjet Promvonge, Numerical simulation of 3D turbulentisothermal flowin a vortex combustor, International Communications in Heat and Mass Transfer, 34 (7), 860-869, (2007). [9] Marko Huttunen, Juho Peltola, Sirpa Kallio, Lassi Karvonen, Timo Niemi, Ville Ylä-Outinen.Analysisofthe processes in fluidized bed boiler furnaces during load changes, Energy Procedia 120, 580–587, (2017).