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Vertical axis wind turbine
Raja satwik
CH.EN.U4ECE19042
A.Anil teja
CH.EN.U4ECE19032
PROJECT MENTOR
Dr.Sharath Chandran sir
ASE Chennai.
Introduction
• The vertical axis wind turbine are classified into four different type
• Savonious model, darreuins model, h-darreuins model, helix model
• We are currently working on savonious model which consist of two semi cylindrical model attached at the
ends. This is vertical axis wind turbine (VAWT) has a advantage when compared to other type of VAWT which
is it can start by itself. But other type of VAWT need a leading force to start rotating. The savonious VAWT
can start rotating by itself because of its structure, which convert and directional wind thrust into forward or
backward thrust by which initiating torque to this model is pretty easy and can even accelerate to its highest
speed in less time and the current efficiency of this model is 15% which is lower when compared to other
VAWT but it has a huge advantage in initializing torque
2
Objective
• To design a vertical axis wind turbine which will be useful for
many application
• To examine the savonius type wind propelers to get good thrust
• To add and make correct use of air deflectors
.
3
Literature Survey
Reference
Number
Title of the paper Methodology Used Advantage,
Disadvantage
1. Efficiency Improvement of Vertical Axis
Wind Turbines with an
Upstream Deflector
The suitability of using an upstream deflector
to improve the efficiency of a vertical axis wind
turbine is presented in this study.
Increase in thrust gradually
remove when compared to
normal VAWT
2. VERTICAL AXIS WIND TURBINE This project focuses on Design, Fabrication
and Testing of a VAWT. Made a hybrid turbine
They achieved the desired
output
3. SMALL-SCALE VERTICAL AXIS WIND
TURBINE DESIGN
analyzed the aerodynamic analysis
performed by implementing a momentum
based model on a mathematical computer
pro-gram
Cost effective
4. Design and fabrication of vertical axis
wind turbine
Comparison between three different turbines Achieved partial output
5 Relationship between Incident Angle of Wind
on Rotor Blade and Output of a Drag-type Multi-
blade Vertical-Axis Wind Turbine with
Stationary Multivanes
they have dealt with air deflectors
and the drag type VAWT 4
Progress
• Did research on project
• Designed the circuit required to generate the power from the vertical axis wind turbines
• Working on code of microcontroller which is used to control lcd which os used to display info about
wind turbine
• Literature survey on wind turbines
5
Circuit design
6
Circuit in pcb layout
Circuit in pcb layout is ready to get printed
7
References
• Bishal Sigdel, “Water Quality Measuring Station”, Helsinki Metropolia University of Applied
Sciences, May 2017.
• A.Kumar and N.P. Pathak, Wireless monitoring of volatile organic compounds/ Water vapour/gas
pressure/temperature using RF transceiver. IEEE Transactions on Instrumentation and
Measurement, 67(9), pp. 2223-2234, 2018.
• Jayti Bhatt, Jignesh Patoliya, Iot Based Water Quality Monitoring System, IRFIC, 21feb,2016.
• S.Geetha ,S.Gouthami, “Internet of things enabled real time water quality monitoring system.”, DOI
10.1186/s40713-017-0005-y (2017).
• Vaishnavi V.Daigavane ,Dr. M.A Gaikwad “Water quality monitoring system based on IoT.”Advances
in Wireless and Mobile Communication, ISSN 0973-6972 Volume 10,, Number 5 (2017).
12
Thank you
13

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Review VAWT AS.pptx

  • 1. Vertical axis wind turbine Raja satwik CH.EN.U4ECE19042 A.Anil teja CH.EN.U4ECE19032 PROJECT MENTOR Dr.Sharath Chandran sir ASE Chennai.
  • 2. Introduction • The vertical axis wind turbine are classified into four different type • Savonious model, darreuins model, h-darreuins model, helix model • We are currently working on savonious model which consist of two semi cylindrical model attached at the ends. This is vertical axis wind turbine (VAWT) has a advantage when compared to other type of VAWT which is it can start by itself. But other type of VAWT need a leading force to start rotating. The savonious VAWT can start rotating by itself because of its structure, which convert and directional wind thrust into forward or backward thrust by which initiating torque to this model is pretty easy and can even accelerate to its highest speed in less time and the current efficiency of this model is 15% which is lower when compared to other VAWT but it has a huge advantage in initializing torque 2
  • 3. Objective • To design a vertical axis wind turbine which will be useful for many application • To examine the savonius type wind propelers to get good thrust • To add and make correct use of air deflectors . 3
  • 4. Literature Survey Reference Number Title of the paper Methodology Used Advantage, Disadvantage 1. Efficiency Improvement of Vertical Axis Wind Turbines with an Upstream Deflector The suitability of using an upstream deflector to improve the efficiency of a vertical axis wind turbine is presented in this study. Increase in thrust gradually remove when compared to normal VAWT 2. VERTICAL AXIS WIND TURBINE This project focuses on Design, Fabrication and Testing of a VAWT. Made a hybrid turbine They achieved the desired output 3. SMALL-SCALE VERTICAL AXIS WIND TURBINE DESIGN analyzed the aerodynamic analysis performed by implementing a momentum based model on a mathematical computer pro-gram Cost effective 4. Design and fabrication of vertical axis wind turbine Comparison between three different turbines Achieved partial output 5 Relationship between Incident Angle of Wind on Rotor Blade and Output of a Drag-type Multi- blade Vertical-Axis Wind Turbine with Stationary Multivanes they have dealt with air deflectors and the drag type VAWT 4
  • 5. Progress • Did research on project • Designed the circuit required to generate the power from the vertical axis wind turbines • Working on code of microcontroller which is used to control lcd which os used to display info about wind turbine • Literature survey on wind turbines 5
  • 7. Circuit in pcb layout Circuit in pcb layout is ready to get printed 7
  • 8. References • Bishal Sigdel, “Water Quality Measuring Station”, Helsinki Metropolia University of Applied Sciences, May 2017. • A.Kumar and N.P. Pathak, Wireless monitoring of volatile organic compounds/ Water vapour/gas pressure/temperature using RF transceiver. IEEE Transactions on Instrumentation and Measurement, 67(9), pp. 2223-2234, 2018. • Jayti Bhatt, Jignesh Patoliya, Iot Based Water Quality Monitoring System, IRFIC, 21feb,2016. • S.Geetha ,S.Gouthami, “Internet of things enabled real time water quality monitoring system.”, DOI 10.1186/s40713-017-0005-y (2017). • Vaishnavi V.Daigavane ,Dr. M.A Gaikwad “Water quality monitoring system based on IoT.”Advances in Wireless and Mobile Communication, ISSN 0973-6972 Volume 10,, Number 5 (2017). 12