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VIDYAVARDHINIโ€™S COLLEGE OF
ENGINNERING AND TECHNOLOGY
TOPIC: DESIGN AND FABRICATION OF AEROLEAVES
GROUP NO -15
TEAM MEMBERS
๏‚ง PRITAM GUCHHAIT
๏‚ง PRATHAM N M
๏‚ง SUYOG NAIK
๏‚ง RAYAN PEREIRA
โ€ข PROJECT GUIDE : PROF.VINAY PATEL
INTRODUCTION
1. This project (Design and fabrication of Aeroleaves) is about
designing and manufacturing a Wind Turbines to transfer
the wind speed to rotational motion using turbines
2. These turbines will be attached to a manufactured tree
that will look like a modern design, which can be installed
in and around any public area such as parks, roads, public
facilities, or business offices.
3. Wind Turbines are designed to produce power up to 300
watts for each single turbine.
OBJECTIVES OF PROJECT
1. Learn about wind energy and different ways of
convert it to a useful power.
2. Learn the impact of energy & our rules as
engineering students to provide alternatives
3. Learn about the design and fabrication process of
the areoleaves and different components used in it
4. To generate more power without use of heavy,
large blades.
LITERATURE REVIEW
SR NO TITLE OF PAPER AUTHOR ABSTRACT
1
Wind Tree Turbine
Energy Conversion
System
Dr. B.Gopinath,
P.Tharani,
B.Sowndarya,
This paper presents the idea about using a leaf
shaped turbine appropriately so that maximum
energy can be generated without much
expense. As a solution to the requirement of
high electricity and its dependability on
hydropower and natural gas, proper application
will help to reduce load on other form of
electricity generation techniques.
2
Small wind turbine
effectiveness in the
urban environment
L. Battisti, E.
Benini, A.
Brighenti, S.
Dellโ€™Anna, M.
Raciti Casrelli
In this paper, data of small commercial turbines
are here collected to set relationship between
inertia and a rotor characteristic length, namely
the radius. according to their study and
experimentation VAWTs inertia is little higher
than that of HAWTs characterized by the same
diameter: due to which, VAWTs response times
are much greater than those of their HAWTs,
especially at low wind speeds
METHODOLOGY
1. In wind tree concept the vertical axis wind turbines are
used for power generation in which the multiple micro
wind turbines are coupled in a single tree and this is
because of reduced size of rotor blades.
2. So they can be easily operate due to the impact of forced
air.
3. Each turbine is connected to a single generator by the help
of generator power is generated and energy is stored with
the help of battery.
BLOCK DIAGRAM
(1) BLOCK DIAGRAM OF THE CONFIGURATION
ACTUAL DESIGN OF PROJECT
(2.1) REFERENCE PHOTO OF
AREOLEAVES
(2.2) WIND TURBINE CONFIGURATION
DESIGN OF PROJECT
FRONT VIEW OF AEROLEAVES TOP VIEW OF AEROLEAVES
2.SECTIONAL VIEW OF
BLADES
1. TOP VIEW OF BLADES
3.FRONT VIEW OF BLADES
DESIGN OF ROTOR BLADES
APPLICATIONS
1. This project idea is very simple, where it focuses on
utilizing the wind energy by designing and manufacturing
and attach then to a manufactured tree.
2. This tree can be installed across the public facilities such as
public parks, in the top of the stadiums where wind is very
high and around the stadiums , buildings and over the
places where there is high flow of wind
3. It can also be installed at sides of the roadways and
highways
FUTURE SCOPE
1. The project highlights the proper framework and
installment of aero-leaves.
2. If we provide aero-leaf wind turbines on the road
or any roof surface, we can generate a good
amount of electricity and this will help to reduce
load on the main supply division.
3. Wind power is an affordable, efficient and
abundant source of domestic electricity. It is
pollution free and cost competitive with energy
from wind tree plants in many reasons
REFERENCE
1)
1.1 BLOCK DIAGRAM OF THE CONFIGURATION (COREL DRAW)
2.1 REFERENCE PHOTO OF AREOLEAVES (GOOGLE SCHOLAR)
2.2 WIND TURBINE CONFIGURATION (GOOGLE SCHOLAR)
2)
GOOGLE SCHOLAR
SCIHUB
SCIENCE DIRECT
THANK YOU

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aeroleaves ppt 16_9_22.pptx

  • 1. VIDYAVARDHINIโ€™S COLLEGE OF ENGINNERING AND TECHNOLOGY TOPIC: DESIGN AND FABRICATION OF AEROLEAVES
  • 2. GROUP NO -15 TEAM MEMBERS ๏‚ง PRITAM GUCHHAIT ๏‚ง PRATHAM N M ๏‚ง SUYOG NAIK ๏‚ง RAYAN PEREIRA โ€ข PROJECT GUIDE : PROF.VINAY PATEL
  • 3. INTRODUCTION 1. This project (Design and fabrication of Aeroleaves) is about designing and manufacturing a Wind Turbines to transfer the wind speed to rotational motion using turbines 2. These turbines will be attached to a manufactured tree that will look like a modern design, which can be installed in and around any public area such as parks, roads, public facilities, or business offices. 3. Wind Turbines are designed to produce power up to 300 watts for each single turbine.
  • 4. OBJECTIVES OF PROJECT 1. Learn about wind energy and different ways of convert it to a useful power. 2. Learn the impact of energy & our rules as engineering students to provide alternatives 3. Learn about the design and fabrication process of the areoleaves and different components used in it 4. To generate more power without use of heavy, large blades.
  • 5. LITERATURE REVIEW SR NO TITLE OF PAPER AUTHOR ABSTRACT 1 Wind Tree Turbine Energy Conversion System Dr. B.Gopinath, P.Tharani, B.Sowndarya, This paper presents the idea about using a leaf shaped turbine appropriately so that maximum energy can be generated without much expense. As a solution to the requirement of high electricity and its dependability on hydropower and natural gas, proper application will help to reduce load on other form of electricity generation techniques. 2 Small wind turbine effectiveness in the urban environment L. Battisti, E. Benini, A. Brighenti, S. Dellโ€™Anna, M. Raciti Casrelli In this paper, data of small commercial turbines are here collected to set relationship between inertia and a rotor characteristic length, namely the radius. according to their study and experimentation VAWTs inertia is little higher than that of HAWTs characterized by the same diameter: due to which, VAWTs response times are much greater than those of their HAWTs, especially at low wind speeds
  • 6. METHODOLOGY 1. In wind tree concept the vertical axis wind turbines are used for power generation in which the multiple micro wind turbines are coupled in a single tree and this is because of reduced size of rotor blades. 2. So they can be easily operate due to the impact of forced air. 3. Each turbine is connected to a single generator by the help of generator power is generated and energy is stored with the help of battery.
  • 7. BLOCK DIAGRAM (1) BLOCK DIAGRAM OF THE CONFIGURATION
  • 8. ACTUAL DESIGN OF PROJECT (2.1) REFERENCE PHOTO OF AREOLEAVES (2.2) WIND TURBINE CONFIGURATION
  • 9. DESIGN OF PROJECT FRONT VIEW OF AEROLEAVES TOP VIEW OF AEROLEAVES
  • 10. 2.SECTIONAL VIEW OF BLADES 1. TOP VIEW OF BLADES 3.FRONT VIEW OF BLADES DESIGN OF ROTOR BLADES
  • 11. APPLICATIONS 1. This project idea is very simple, where it focuses on utilizing the wind energy by designing and manufacturing and attach then to a manufactured tree. 2. This tree can be installed across the public facilities such as public parks, in the top of the stadiums where wind is very high and around the stadiums , buildings and over the places where there is high flow of wind 3. It can also be installed at sides of the roadways and highways
  • 12. FUTURE SCOPE 1. The project highlights the proper framework and installment of aero-leaves. 2. If we provide aero-leaf wind turbines on the road or any roof surface, we can generate a good amount of electricity and this will help to reduce load on the main supply division. 3. Wind power is an affordable, efficient and abundant source of domestic electricity. It is pollution free and cost competitive with energy from wind tree plants in many reasons
  • 13. REFERENCE 1) 1.1 BLOCK DIAGRAM OF THE CONFIGURATION (COREL DRAW) 2.1 REFERENCE PHOTO OF AREOLEAVES (GOOGLE SCHOLAR) 2.2 WIND TURBINE CONFIGURATION (GOOGLE SCHOLAR) 2) GOOGLE SCHOLAR SCIHUB SCIENCE DIRECT