SlideShare une entreprise Scribd logo
1  sur  15
Introduction :
 Wind power turbines come in handy in the market today.
  Vertical-axis wind turbine happens to be one of the most
  popular and widely coveted wind turbines.
 It is also more practical, reliable and cost effective has the
  best longevity and durability features. Therefore, you will be
  able to use it efficiently over a long haul.
 The turbine is also designed in a unique way that enables it to
  work efficiently in an urban and suburban area.
 They feature turbulent environs and this means that they yield
  greater fluctuations in terms of wind speed and wind
  direction. The shaft in the turbine rotates vertically thus
  providing enhanced performance in turbulent environments.
Wind Energy :
The kinetic energy of the wind can be changed into
 other forms of energy, either mechanical energy or
 electrical energy.
The kinetic energy contained in wind can be
 transferred to other objects, such as boat sails, or
 transformed into electrical energy through wind
 turbine generators.
With the recent surge in fossil fuels prices, demands
 for cleaner energy sources, and government funding
 incentives, wind turbines are becoming a more
 viable technology for electrical power generation
How Wind Turbines Work?

All wind turbines essentially work the same way
 with minor modifications depending on size and
 configuration.
The wind turns the blades to spin a shaft which
 connects to a generator which produces
 electricity.
Essentially the rotors harness the kinetic energy
 of the wind and coverts it into electrical energy.
Types of Axis :
Horizontal Turbine :
 Higher wind speeds
 medium efficiency
 has to be moved into the direction of
  the wind
 very high power
 Efficiency – 18% to 20%
Types of Axis :
 Vertical Turbine :
  Can place generator on ground
  You don’t need a yaw mechanism
  Wind direction doesn’t matter, it
   adjusts to it its self.
  medium power
  Efficiency – 50% to 60%
Vertical Axis Wind Turbine :

 We make a “Giro Mill” type VAWT.
 VAWTs are rugged, quiet, Omni-directional.
 VAWT doesn’t create as much stress on the
  support structure.
 It can be installed on chimneys and similar tall
  structures.
 Popularizing the wind energy for domestic
  application.
Feature :
The generator shaft is vertical to the ground.
The blades point upward.
The generator is mounted on a short tower.
It can be installed anywhere because its
 compact size and simplified in design.
The turbine starts rotating at 4m/s speed.
The VAWT’s efficiency is around 50% to 60%.
Types of VAWT :
      Darrieus :    H-Darrieus-Rotor
Types of VAWT :

     Giromill     Helical
Advantages :
Accepts wind from any angle - no yaw system
Better answer to rapidly changing winds
Components can be mounted at ground level
  – Ease of service
  – Lighter weight towers
Virtually silent operation
High Mechanical stability.
Disadvantages :
Rotors are generally near ground where wind is
 poorer
Poor self-starting capabilities
Requires support at top of turbine rotor sturdy
 construction
Requires support at top of turbine rotor
Overall poor performance and reliability (although
 it is argued that it is mainly due to lack of research
 and development and not aerodynamics)
Application :
Conclusion :
 we done our literature survey on VAWT. And it has
 try to mentioned advantages, applications,
 limitations.
And also it is understood that in the future most of
 our energy source will based on wind energy.
We have to do this on small rating VAWT. The rating
 is 10watt.
References :
 Non-Conventional energy sources by smt. C.K.Rai
 Wikipedia Encyclopedia. Retrieved from
  http://en.wikipedia.org/wiki/Image:H-Darrieus-
  Rotor.png.jpg on November 28, 2005.
 Read some Papers on VAWT through Wikipedia
 http://www.urbanwind.net/pdf/technological_analysis.p
  df
 We have to use catalogue of ohms groups.
-Thank You
Prepaid by PARTH PATEL….
Any ?

Contenu connexe

Tendances

Wind turbine (bhaw nath jha)
Wind turbine (bhaw nath jha)Wind turbine (bhaw nath jha)
Wind turbine (bhaw nath jha)
Bhawnath Jha
 
Wind energy
Wind energyWind energy
Wind energy
Virenhk
 
Wind Farms
Wind FarmsWind Farms
Wind Farms
akkaa
 

Tendances (20)

Basics Of Wind Power
Basics Of Wind PowerBasics Of Wind Power
Basics Of Wind Power
 
Wind turbine (bhaw nath jha)
Wind turbine (bhaw nath jha)Wind turbine (bhaw nath jha)
Wind turbine (bhaw nath jha)
 
Dynamic and wind turbine
Dynamic and wind turbineDynamic and wind turbine
Dynamic and wind turbine
 
Wind Turbines Basics
Wind Turbines BasicsWind Turbines Basics
Wind Turbines Basics
 
Windmill its parts and types
Windmill its parts and types Windmill its parts and types
Windmill its parts and types
 
FINAL PROJECT VAWT
FINAL PROJECT VAWTFINAL PROJECT VAWT
FINAL PROJECT VAWT
 
Vertical wind mill
Vertical wind millVertical wind mill
Vertical wind mill
 
Horizontal Axis Wind Turbine
Horizontal Axis Wind TurbineHorizontal Axis Wind Turbine
Horizontal Axis Wind Turbine
 
Magnetic Levitation in Wind Turbines
Magnetic Levitation in Wind TurbinesMagnetic Levitation in Wind Turbines
Magnetic Levitation in Wind Turbines
 
Wind energy
Wind energyWind energy
Wind energy
 
Advances in wind energy
Advances in wind energyAdvances in wind energy
Advances in wind energy
 
Vertical axis wind turbine
Vertical axis wind turbineVertical axis wind turbine
Vertical axis wind turbine
 
Design and Fabrication of Darrieus wind turbine
Design and Fabrication of Darrieus wind turbineDesign and Fabrication of Darrieus wind turbine
Design and Fabrication of Darrieus wind turbine
 
Aerodynamics of blade of HAWT
Aerodynamics of blade of HAWTAerodynamics of blade of HAWT
Aerodynamics of blade of HAWT
 
Wind Energy Technology
Wind Energy TechnologyWind Energy Technology
Wind Energy Technology
 
Wind turbine
Wind turbineWind turbine
Wind turbine
 
Wind Farms
Wind FarmsWind Farms
Wind Farms
 
Horizontal axis wind turbine
Horizontal axis wind turbineHorizontal axis wind turbine
Horizontal axis wind turbine
 
Wind Turbine Generator (WTG) Yawing And Furling Mechanisms
Wind Turbine Generator (WTG) Yawing And Furling MechanismsWind Turbine Generator (WTG) Yawing And Furling Mechanisms
Wind Turbine Generator (WTG) Yawing And Furling Mechanisms
 
wind Power
wind Power wind Power
wind Power
 

En vedette

Project Report on 'Modulation of Vertical Axis Wind Turbine'
Project Report on 'Modulation of Vertical Axis Wind Turbine'Project Report on 'Modulation of Vertical Axis Wind Turbine'
Project Report on 'Modulation of Vertical Axis Wind Turbine'
Gurpreet Singh Chhabda
 
27_09_2010Design and Development of a Vertical Axis Micro Wind Turbine_MI
27_09_2010Design and Development of a Vertical Axis Micro Wind Turbine_MI27_09_2010Design and Development of a Vertical Axis Micro Wind Turbine_MI
27_09_2010Design and Development of a Vertical Axis Micro Wind Turbine_MI
Murat Islam CEng MIMechE
 

En vedette (11)

Final Report
Final ReportFinal Report
Final Report
 
50 kW VAWT (Vertical Axis Wind Turbine) Specifications
50 kW VAWT (Vertical Axis Wind Turbine) Specifications50 kW VAWT (Vertical Axis Wind Turbine) Specifications
50 kW VAWT (Vertical Axis Wind Turbine) Specifications
 
Project Report on 'Modulation of Vertical Axis Wind Turbine'
Project Report on 'Modulation of Vertical Axis Wind Turbine'Project Report on 'Modulation of Vertical Axis Wind Turbine'
Project Report on 'Modulation of Vertical Axis Wind Turbine'
 
27_09_2010Design and Development of a Vertical Axis Micro Wind Turbine_MI
27_09_2010Design and Development of a Vertical Axis Micro Wind Turbine_MI27_09_2010Design and Development of a Vertical Axis Micro Wind Turbine_MI
27_09_2010Design and Development of a Vertical Axis Micro Wind Turbine_MI
 
Power generation using neodymium magnets in Vertical Axis Wind Turbine
Power generation using neodymium magnets in Vertical Axis Wind TurbinePower generation using neodymium magnets in Vertical Axis Wind Turbine
Power generation using neodymium magnets in Vertical Axis Wind Turbine
 
VAWT Project
VAWT ProjectVAWT Project
VAWT Project
 
Maglev Windmill
Maglev WindmillMaglev Windmill
Maglev Windmill
 
VERTICAL AXIS WIND TURBINE
VERTICAL AXIS WIND TURBINEVERTICAL AXIS WIND TURBINE
VERTICAL AXIS WIND TURBINE
 
Numerical analysis of Vertical Axis Wind Turbine
Numerical analysis of Vertical Axis Wind TurbineNumerical analysis of Vertical Axis Wind Turbine
Numerical analysis of Vertical Axis Wind Turbine
 
Typmarvn_Vertical and Herizontal Axis Wind Turbine
Typmarvn_Vertical and Herizontal Axis Wind TurbineTypmarvn_Vertical and Herizontal Axis Wind Turbine
Typmarvn_Vertical and Herizontal Axis Wind Turbine
 
Literature Review
Literature ReviewLiterature Review
Literature Review
 

Similaire à Vertical wind mill

VerticalAxisWindTurbinewithVortexGenerators-conf.pdf
VerticalAxisWindTurbinewithVortexGenerators-conf.pdfVerticalAxisWindTurbinewithVortexGenerators-conf.pdf
VerticalAxisWindTurbinewithVortexGenerators-conf.pdf
PRAJWALNG1
 

Similaire à Vertical wind mill (20)

IRJET- Electricity Generation by Maglev Windmill
IRJET- Electricity Generation by Maglev WindmillIRJET- Electricity Generation by Maglev Windmill
IRJET- Electricity Generation by Maglev Windmill
 
Wind energy
Wind energyWind energy
Wind energy
 
Horizontal Axis Wind Mill
Horizontal Axis Wind MillHorizontal Axis Wind Mill
Horizontal Axis Wind Mill
 
Wind Power.pdf
Wind Power.pdfWind Power.pdf
Wind Power.pdf
 
E04822730
E04822730E04822730
E04822730
 
Wind energy -3.docx
Wind energy -3.docxWind energy -3.docx
Wind energy -3.docx
 
wind.pdf
wind.pdfwind.pdf
wind.pdf
 
M046017079
M046017079M046017079
M046017079
 
DESIGN AND FABRICATION OF COMBINED SAVONIUS AND DARRIEUS WIND TURBINE
DESIGN AND FABRICATION OF COMBINED SAVONIUS AND DARRIEUS WIND TURBINEDESIGN AND FABRICATION OF COMBINED SAVONIUS AND DARRIEUS WIND TURBINE
DESIGN AND FABRICATION OF COMBINED SAVONIUS AND DARRIEUS WIND TURBINE
 
Class- 13 Design considerations for wind turbine systems
Class- 13 Design considerations for wind turbine systemsClass- 13 Design considerations for wind turbine systems
Class- 13 Design considerations for wind turbine systems
 
VerticalAxisWindTurbinewithVortexGenerators-conf.pdf
VerticalAxisWindTurbinewithVortexGenerators-conf.pdfVerticalAxisWindTurbinewithVortexGenerators-conf.pdf
VerticalAxisWindTurbinewithVortexGenerators-conf.pdf
 
Wind turbine technology kid wind project
Wind turbine technology kid wind projectWind turbine technology kid wind project
Wind turbine technology kid wind project
 
Wind Energy (Group 1) Final Report-.pptx
Wind Energy (Group 1) Final Report-.pptxWind Energy (Group 1) Final Report-.pptx
Wind Energy (Group 1) Final Report-.pptx
 
Book of Wind Generators
Book of Wind GeneratorsBook of Wind Generators
Book of Wind Generators
 
IRJET- Power Generation on Highway by using Vertical Axis Wind Turbine & Sola...
IRJET- Power Generation on Highway by using Vertical Axis Wind Turbine & Sola...IRJET- Power Generation on Highway by using Vertical Axis Wind Turbine & Sola...
IRJET- Power Generation on Highway by using Vertical Axis Wind Turbine & Sola...
 
Study and Analysis of Savonious Vertical Axis Wind Turbine with Neodymium Per...
Study and Analysis of Savonious Vertical Axis Wind Turbine with Neodymium Per...Study and Analysis of Savonious Vertical Axis Wind Turbine with Neodymium Per...
Study and Analysis of Savonious Vertical Axis Wind Turbine with Neodymium Per...
 
PPT DATA.docx
PPT DATA.docxPPT DATA.docx
PPT DATA.docx
 
Presentation on vortex_bladeless_wind_turbine
Presentation on vortex_bladeless_wind_turbinePresentation on vortex_bladeless_wind_turbine
Presentation on vortex_bladeless_wind_turbine
 
Wind Energy Converter Concepts
Wind Energy Converter ConceptsWind Energy Converter Concepts
Wind Energy Converter Concepts
 
Maglev windmill
Maglev windmillMaglev windmill
Maglev windmill
 

Dernier

Dernier (20)

Understanding Accommodations and Modifications
Understanding  Accommodations and ModificationsUnderstanding  Accommodations and Modifications
Understanding Accommodations and Modifications
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
Introduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsIntroduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The Basics
 
Spatium Project Simulation student brief
Spatium Project Simulation student briefSpatium Project Simulation student brief
Spatium Project Simulation student brief
 
ICT role in 21st century education and it's challenges.
ICT role in 21st century education and it's challenges.ICT role in 21st century education and it's challenges.
ICT role in 21st century education and it's challenges.
 
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
 
Asian American Pacific Islander Month DDSD 2024.pptx
Asian American Pacific Islander Month DDSD 2024.pptxAsian American Pacific Islander Month DDSD 2024.pptx
Asian American Pacific Islander Month DDSD 2024.pptx
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptx
 
Unit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxUnit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptx
 
Mixin Classes in Odoo 17 How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17  How to Extend Models Using Mixin ClassesMixin Classes in Odoo 17  How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17 How to Extend Models Using Mixin Classes
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
 
How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.ppt
 
On National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan FellowsOn National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan Fellows
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)
 
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdfUGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
 
psychiatric nursing HISTORY COLLECTION .docx
psychiatric  nursing HISTORY  COLLECTION  .docxpsychiatric  nursing HISTORY  COLLECTION  .docx
psychiatric nursing HISTORY COLLECTION .docx
 
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptxBasic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
 
Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...
 
Python Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxPython Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docx
 

Vertical wind mill

  • 1. Introduction :  Wind power turbines come in handy in the market today. Vertical-axis wind turbine happens to be one of the most popular and widely coveted wind turbines.  It is also more practical, reliable and cost effective has the best longevity and durability features. Therefore, you will be able to use it efficiently over a long haul.  The turbine is also designed in a unique way that enables it to work efficiently in an urban and suburban area.  They feature turbulent environs and this means that they yield greater fluctuations in terms of wind speed and wind direction. The shaft in the turbine rotates vertically thus providing enhanced performance in turbulent environments.
  • 2. Wind Energy : The kinetic energy of the wind can be changed into other forms of energy, either mechanical energy or electrical energy. The kinetic energy contained in wind can be transferred to other objects, such as boat sails, or transformed into electrical energy through wind turbine generators. With the recent surge in fossil fuels prices, demands for cleaner energy sources, and government funding incentives, wind turbines are becoming a more viable technology for electrical power generation
  • 3. How Wind Turbines Work? All wind turbines essentially work the same way with minor modifications depending on size and configuration. The wind turns the blades to spin a shaft which connects to a generator which produces electricity. Essentially the rotors harness the kinetic energy of the wind and coverts it into electrical energy.
  • 4. Types of Axis : Horizontal Turbine :  Higher wind speeds  medium efficiency  has to be moved into the direction of the wind  very high power  Efficiency – 18% to 20%
  • 5. Types of Axis : Vertical Turbine :  Can place generator on ground  You don’t need a yaw mechanism  Wind direction doesn’t matter, it adjusts to it its self.  medium power  Efficiency – 50% to 60%
  • 6. Vertical Axis Wind Turbine :  We make a “Giro Mill” type VAWT.  VAWTs are rugged, quiet, Omni-directional.  VAWT doesn’t create as much stress on the support structure.  It can be installed on chimneys and similar tall structures.  Popularizing the wind energy for domestic application.
  • 7. Feature : The generator shaft is vertical to the ground. The blades point upward. The generator is mounted on a short tower. It can be installed anywhere because its compact size and simplified in design. The turbine starts rotating at 4m/s speed. The VAWT’s efficiency is around 50% to 60%.
  • 8. Types of VAWT :  Darrieus :  H-Darrieus-Rotor
  • 9. Types of VAWT :  Giromill  Helical
  • 10. Advantages : Accepts wind from any angle - no yaw system Better answer to rapidly changing winds Components can be mounted at ground level – Ease of service – Lighter weight towers Virtually silent operation High Mechanical stability.
  • 11. Disadvantages : Rotors are generally near ground where wind is poorer Poor self-starting capabilities Requires support at top of turbine rotor sturdy construction Requires support at top of turbine rotor Overall poor performance and reliability (although it is argued that it is mainly due to lack of research and development and not aerodynamics)
  • 13. Conclusion :  we done our literature survey on VAWT. And it has try to mentioned advantages, applications, limitations. And also it is understood that in the future most of our energy source will based on wind energy. We have to do this on small rating VAWT. The rating is 10watt.
  • 14. References :  Non-Conventional energy sources by smt. C.K.Rai  Wikipedia Encyclopedia. Retrieved from http://en.wikipedia.org/wiki/Image:H-Darrieus- Rotor.png.jpg on November 28, 2005.  Read some Papers on VAWT through Wikipedia  http://www.urbanwind.net/pdf/technological_analysis.p df  We have to use catalogue of ohms groups.
  • 15. -Thank You Prepaid by PARTH PATEL…. Any ?