Table of figures figure 1. Sugarcane and paddy husk
figure 2 Pond biological gas picture solar sails 3
Figure 4.
Dam pictures 5 Wind turbine electricity
Figure 6 Geothermal energy
Figure 7 direction of wind induced
Figure 8. Vertical wind's clash
Figure 9 The occurrence of sea breeze
figure 10 The occurrence of wind chapter
Figure 11 The occurrence of wind Valley
Figure 12 The occurrence of mountain breeze
Figure 13 Wind energy in the nation States.
Figure 14 The number of wind turbines produce electricity in Germany
Figure 15 the Wind Park of People's Republic of China
Figure 16. Energy sources electricity in Thai
Figure 17 Wind turbines produce electricity at a dam Lam Ta Kong
Figure 18. Vertical rotation axis type wind turbine
Figure 19 Horizontal rotation axis type wind turbine
Figure 20 the vertical fan
figure 21 main sending arms
figure 22. The generator
figure 23 The structure of the mast
Figure 24 The elements of the horizontal rotation axis type wind turbine.
Figure 25 Measuring wind speed and direction
26 images. A hollow circle antenna mast and a knitted project
Figure 27. Rotating neck axis and rotation control system for wind direction, wind force.
Figure 28 Place the magnet on the North South
Figure 29 Using a RASP, steel powder for magnetic force line.
Figure 30 Creating a simple electromagnetic fields.
Figure 31 Bonded NdFeB Magnets, magnetic type
32 images. Magnetic Flexible Rubber type Magnets
Figure 33 Types of NdFeB magnet (Neodymium) Magnets
Figure 34 Types of magnetic Ferrite (Ceramic) Magnets
figures (continued)
photo 35. Magnetic type Smco Magnets (Samarium)
36 images. Types of Magnets AlNiCo magnet
Figure 37 Wind turbine generator
Figure 38
Structure format.Figure 39 PVC pipe Size: 10 inch
figure 40 For copper wire 24 picture varnish
41 42 images. High-voltage magnet 48 pieces
Figure 43 woenia Seagull Super
Figure 44. Sand paper 320 telephone
45 images. Grinder hand
Figure 46 Water sealing resin
Figure 47 Bio-catalyst, solid resin
48 images. A c cam
figure 10-inch pipe 49
50 images. Bring the image and cut off saw has 51
pipes with a length of 98 cm
52 images. Bring a measure of the width of the rotor
Figure 53 Put the cut puzzles come
Figure 3 propeller has 54 pieces
figure 55. Write a rotor based on the defined
Figure 56 The grinding tools and grinding the upper part.
Figure 57 Leading grinding tool grinding from the lower part of the propeller 1
image 58. Take the rotor 1. written as underlying
Figure 59 Take a piece of paper and write the excess
60 images. Apply woenia Seagull Super measured
61 images. The grinding tool grinding and best not.
Figure 62. grinding and little decoration
63 images. Measure the length of the blades according to the
.Figure 64 Weigh each rotor to rotor weight that has the most weight.
Figure 65 Take sandpaper and polishing details
Figure 66, finished rotors
Figure 67. How to get thousands of copper wire
Figure 68. Make the template a thousand sheep coils out
.Figure 69 Bring tape the wires neat to Colonel.
Top
(continued) image
image 70. Bring new wind bio-cho Wakayama chama
Figure 71. Take at least 1-scale coil for
Figure 72. Lead coils arranged in a circle all
Figure 73 Being the center of the coils all
Figure 74 Bring Scotch ™ tape on all coils are stationary.
Figure 75 When cleaning is complete leading copper comes next.
Figure 76 Soldering copper diameter point PB
figure 77 Lead cable tie to tie direct copper line joints
.Figure 78 Led light meter to measure and check the resistance value of each set of coils.
79 figure Apply grease brought to both mold
80 images. Take the mold and hang around for 15 minutes so that the grease to leak into the wood formwork
.Figure 81 A device that makes copper coils on thi
figure 82. Make a cut along the specified
Figure 83 shall be based on a fiberglass mold
figure 84. Power supply 2 piece fiberglass
figure 85 When you open the plywood over the image below
.86 images Looking to cut excess of resin from the
figure 87. Resin will adhere to the coils, solid and strong with two layers of glass fiber
Figure 88 is drilling to be based on the square flat iron.
Figure 89 Insert bolt completed
Figure 90 Steel connections capacity close to top
figure 91 Links done and bring the turbine bearings based kaenklang and climbing.
Figure 92 Take the lower welding steel round base and paep box
figure 93. Bringing the various parts of the base together intact.
Figure 94 The number of all flat steel
95 images. Iron forming a t
96 images. Take measurements to find the midpoint between the base metal with a turbine.
Figure 97 Iron on the turbine and turbine rotor shaft is connected.
98 images You're looking for the width of the gripping kaenklang
figure 99. Writing for all 4 corner angles.
100 images. Writing for the angle of the wind turbine shaft on each side
figure 101. Writing for the angle of the turbine shaft
figure 102. Write it out and then get angle 0, 120, 240 degrees
figure 103 Burning corners of designated turbine shaft
Figure 104 Wind turbine shaft slip fit and matched the most.
(Continued) table of figures figure 105. Turbine shaft welding power
Figure 106 To connect the turbine shaft to length to strength
figure 107. You're looking for the length of the turbine shaft holder
figure 108. The turbine blades are being teacher Marta 2
figure 109. Bring a blow hole.
Figure 110 Bolt was derived based on the turbine shaft, between the complete turbine blades and 3
figure 111. Bring all 3 the
figure 112 Bring both cleans Giang in front and behind.
Figure 113 A magnetic orientation phase.
Figure 114 Characteristics of a magnet
Figure 115 Bring Scotch ™ tape titrop
figure 116 Pour resin, with magnetic holder.
Figure 117 The solid resin as defined
Figure 118 Iron comes with a placeholder bearings climb
Figure 119 You're looking for middle stage of the cast coil.
Figure 120 Taken with a macro
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