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Showing posts with label Solar Experiments. Show all posts
Showing posts with label Solar Experiments. Show all posts

Sunday, 29 September 2013

How to build a Solar Bottle Bulb ???

By thinknut.blogspot.com


          Light up dark areas in your home during daytime using this green and sustainable concept. Recycle used clear plastic soda bottles, add water+bleach, then install. After installation this solar light bulb can provide approximately 55 watts of light from the sun! T
 
he communities who benefit from this idea live in areas where the houses hardly have windows and live in darkness even during daytime. Their solution up until this innovation was to turn on the light bulb and use electricity.


You Will Need :

  • PET soda bottle
  • Galvanized Iron (GI) sheet
  • Rubber sealant
  • Bleach
  • Filtered Water

Process :

Cut approximately 9 x 10 inches of GI sheet (corrugated or flat). 


At the center of the GI sheet, draw 2 circles.


And Cut the internal circle.


Cut the 1 cm difference radially, making strips and bend upwards, perpendicular to the GI sheet.


Using sandpaper, scratch the surface around the upper third portion of the soda bottle where the GI sheet will be placed, to allow the rubber sealant to stick better.


Insert the bottle into the GI sheet until the upper third.


Apply rubber sealant on the strips above and around the area below. Wait to dry.


Fill the soda bottle with filtered water and ~10 mL (2 capfuls) of bleach.


Cover with its original cap.


The solar bottle bulb is now ready for installation !

Installation :

Cut a hole on the roof, similar to the bottle circumference.


Place the solar bottle bulb into the hole. Make sure it is firmly in place.


Drill 4 holes on each side of the solar bottle bulb using Bosch lithium-ion cordless drill and put in the rivets.


Apply rubber sealant around all edges of the GI sheet of the solar bottle bulb to avoid leakage. Make sure to cover the rivets.


Place a protective plastic tube on the bottle cap and apply rubber sealant.

Monday, 23 September 2013

How to hack a Digital TV Converter ???

By thinknut.blogspot.com


 
Learn how to mod/hack a DTV box to run on battery power! Now that the digital TV conversion is right around the corner, no one has put any thought into what happens to your old analog portable TV's since ALL of the DTV boxes are AC powered. What about camping? What about emergencies when you want to watch news/weather alerts and have NO power? Here's the solution.


You Will Need :


  • DTV box
  • Barrier Strip or some other type of screw connector
  • 12V Car Lighter Adapter  

OPTIONAL



  • 12V Rechargeable Sealed Lead Acid Battery

Process :

Remove the 5 small screws that hold the case top cover on. 

There is a 5-pin connector located between the power supply and the main board. Directly next to the connector on the power supply you will see two small jumpers. This is where to make the solder connections for the Positive (+) and Negative (-) wires. Use a multimeter to confirm this location with the unit plugged in and you should get a reading of 12VDC. I attached two wires (red (+) and black (-) about 4 inches long.



Using the barrier strip, mount it to the back of the case using two screws and nuts. I had to cut away the lower portion of the barrier strip to make room for mounting it vertically. Drill one more small hole to feed the red and black wires through. Attach the 12V Car Power Adapter and the new red and black wires to two of the barrier strip screws, one on top and one on the bottom with the barrier in between to protect the contacts.


Close up the case and plug in your new battery powered DTV box into a cigarette lighter or hook up the 12 volt battery to the remaining barrier strip screws. Make your A/V or Coax connections, hook up your antenna and you now have DTV for your portable TV's! 

How LDR Works ???

By thinknut.blogspot.com


 
     
     LDRs or Light Dependent Resistors are very useful especially in light/dark sensor circuits. Normally the resistance of an LDR is very high, sometimes as high as 1000 000 ohms, but when they are illuminated with light resistance drops dramatically.

OR

    An LDR is a component that has a resistance that changes with the light intensity that falls upon it. They have a resistance that falls with an increase in the light intensity falling upon the device.

Symbol :


Working :

The resistance of an LDR may typically have the following resistances.
Daylight   = 5000 ohms
Dark= 20000000 ohms

You can therefore see that there is a large variation between these figures. If you plotted this variation on a graph you would get something similar to that shown by the graph to the right.

The animation opposite shows that when the torch is turned on, the resistance of the LDR falls, allowing current to pass through it.

Circuit Wizard software has been used to display, the range of values of a ORP12, LDR . When a light level of 1000 lux (bright light) is directed towards it, the resistance is 400R (ohms). When a light level of 10 lux (very low light level) is directed towards it, the resistance has risen dramatically to 10.43M (10430000 ohms).
This is an example of a light sensor circuit :

When the light level is low the resistance of the LDR is high. This prevents current from flowing to the base of the transistors. Consequently the LED does not light. However, when light shines onto the LDR its resistance falls and current flows into the base of the first transistor and then the second transistor. The LED lights. The preset resistor can be turned up or down to increase or decrease resistance, in this way it can make the circuit more or less sensitive.

Saturday, 7 September 2013

How to make solar water geyser at home

By thinknut.blogspot.com

How to make solar water geyser at home

You Will Need :

  •  2L plastic bottles (60),
  • Cartons (50)
  • 100mm PVC pipe (70 cm)
  • 20mm PVC pipe (11.7m)
  • 90-degree 20 mm PVC elbows (4)
  • 20mm PVC T-connectors (20)
  • 20 mm PVC end caps (2)
  • PVC glue
  • Black matt paint
  • Paint Roller
  • Sand paper
  • Self-amalgamating tape
  • Tools – Rubber hammer, saw, wood or other material for the support

Process :


Use the 100mm PVC pipe as a mold and cut off the bottom of the bottles. Cut the 20mm PVC pipes into 10 x 1m and 20 x 8.5 cm pieces, and assemble with the T-connectors. Cut and paint the cartons, as well as the one-meter long pipes. Assemble according to figure B.


The panels must be placed at least 30 cm below the tank and be sited on a south facing wall or roof. To optimize heat absorption, the panels must be mounted at the angle of your latitude, plus 10°. In London, for instance, the panel’s inclination should be 61°. We recommends that the plastic bottles in the panels should be swapped for new ones every 5 years: ‘Over time, the plastic becomes opaque, which reduces the heat caption, while the black cartons can be repainted.’ So once the bottles become opaque it is time to replace the bottles and send the used ones to the recycle dump.

Thursday, 5 September 2013

Types and working of solar panel!

By thinknut.blogspot.com

Types and working of solar panel!
 There are so many different panels on offer, it can be hard to determine the fact from the fiction. Some companies will offer you 'high efficiency, commercial grade' solar panels, using the 'latest technology', but what does this mean?
     Below we have listed the most popular types of solar panel available in Pakistan, with the benefits and drawbacks of each technology:

Types :


  1. Monocrystalline Module
  2. Polycrystalline Module
  3. Amorphous or Thin Film Module

Monocrystalline Module :

         Monocrystalline, as the name suggests, is constructed using one single crystal, cut from ingots. This gives the solar panel a uniform appearance across the entire module. These large single crystals are exceedingly rare, and the process of 'recrystallising' the cell is more expensive to produce. 
          This technology is now the most widely available in Pakistan, with the cost of producing monocrystalline cells coming down every year. They are still more expensive than polycrystalline, but can be up to 2% more efficient.
        Suntech have recently made some exciting developments in monocrystalline efficiency, with the patent pending Pluto technology. Unique texturing technology, with lower reflectivity, ensures more sunlight can be absorbed throughout the day even without direct solar radiation, and thinner metal lines on the top surface reduces shading loss. Importantly, the process was developed at the University of New South Wales, and has achieved lab efficiency of 25%, and verified efficiency of approx 19%. These panels will be more expensive, but will offer far more solar electricity for less area of solar panel.

Advantages
Disadvantages
Most efficient module available
More expensive to produce
Most popular technology on market
Has more silicon - high embodied energy 
Commonly available - easy to replace
Takes up small area on roof

Polycrystalline Module :

          Polycrystalline (or multicrystalline) modules are composed of a number of different crystals, fused together to make a single cell (hence the term 'multi'). They have long been the most popular type of solar module, due to the lower cost in manufacturing the cells. Recently, the cost of monocrystalline has come down, making them more popular in the residential market.
          As you can see in the image (left), the construction of these different crystals gives the solar panel a visible crystal grain, or a 'metal flake effect'. They are slightly cheaper to produce than Mono panels, but are also less efficient (anywhere from 0.5% to 2% less efficient depending on the manufacturer). This is because the crystal grain boundaries can trap electrons, which results in lower efficiency.
           The BP Solar modules are approximately 13.5% efficient (meaning that if 100 Watts of potential solar energy strikes the panel, it will produce approximately 13.5 Watts of solar electricity).
          These panels are very popular in Pakistan, and offer a good balance of value vs performance.

Advantages
Disadvantages
Cost effective to manufacture
Not as efficient as mono
Good efficiency
 Has more silicon - high embodied energy
Commonly available - easy to replace
Takes up small area on roof

Amorphous or Thin Film Module :

          Amorphous (or 'thin film') solar modules have recently become very popular in the Australian market. They offer better performance in higher temperatures, and have some benefits in shady locations. However, the benefits have been greatly exaggerated by some suppliers, and it is important to weigh that up against the negatives of thin film technology.
           The manufacture of these panels is highly automated - silicon is sprayed onto the substrate as a gas (called 'vapour deposition'), which means that the silicon wafer is approx 1 micron thick (compared to approx 200 microns for mono and poly). This means that the panel uses less energy to produce, therefore will pay itself back from an energy point of view in a shorter time. However, it also means that the panels are far less efficient than mono or poly (approx 5-6% efficient).
          The electrical connections are etched by a laser. Etching these as long horizontal cells across the panel makes these less susceptible from being blocked by shade, but it's important to recognise that there will still be a significant drop-off in performance when the panel is shaded.
          Thin-film panels are significantly less efficient than crystalline panels, and a greater number is required for the same output. On average, a thin film solar array will need 2.5 times more roof area than mono or poly. This is critical if you intend to increase the size of your system later, as you may take up all of your north-facing roof for a relatively small system.
         One of the biggest selling points of thin film is the performance in hotter temperatures. Unfortunately this has been misrepresented by some suppliers of thin film panels. As an example, if you live in Melbourne, and you are shown a graph that indicates the performance of thin film panels in Alice Springs, it's obvious that those panels won't provide the same advantage in a cooler climate.


Advantages
 Disadvantages
Partially shade tolerant
Poor efficiency (6%)
More effective in hotter climate
Takes up more space for same output 
Uses less silicon - low embodied energy
New technology - less proven reliability
No aluminium frame - low embodied energy
 Less popular - harder to replace

Other Technologies :

          There are many other types of technology which aren't so well known. Cadmium telluride panels have been used in a number of installations in Pakistan, and are providing a cheaper option when compared to more common technology. Due to the toxicity of cadmium telluride, there has been limited uptake of these modules within the industry. There are a number of studies underway to determine the long term effects of using this technology to produce renewable energy. Another issue is the extreme rarity of tellurium (1-5 parts per billion), which could reduce the future uptake of this technology.

Simple Home Circuit Design :

How to make Solar water distillation

By thinknut.blogspot.com
Solar water distillation





 It is a device that produces distilled water with solar radiation. It is made with glass bottles or containers or recycled plastic. The device traps water evaporated from the soil and deposit it on the inside. Moisture condenses on the interior walls and falls as drops and directed by the walls to the ground again.The system saves huge amounts of water for irrigation and grow plants that need to grow the best quality of water

Tuesday, 3 September 2013

How to Clean Water Using the Sun!

By thinknut.blogspot.com

Clean Water Using the Sun!

Can you think of a way of cleaning dirty water using the sun? How about getting salt out of water using the sun? In this activity, you will be making a "solar still" that is able to do just that! Let’s get started!

What You Need:

  • A wide plastic basin
  • A smaller jar or glass for collecting the clean water
  • A large piece of transparent plastic, plastic wrap can work
  • String or rubber band to hold plastic in place
  • A stone
  • Salt

What You Do:

  1. Mix salt in some tap water. Put salty water in the bottom of your basin. Make sure the water is below the height of your collecting jar.
  2. Place your collecting jar in the middle of your basin.
  3. Cover the basin with the plastic wrap. Make sure that it is secured tightly at the edges. Use a string or rubber band to seal off the edges.
  4. Place a stone in the middle of the plastic wrap just above your collecting jar.
  5. Carefully move your solar still into the sun.
  6. Observe carefully.
  7. After a few hours, when you take your solar still apart, taste the water in the collecting jar. What happened? Did you notice drops of water appearing on the inside of the plastic? Where did they come from?
  8. Try to think about and describe the two changes of state that have occurred to the water that collects in the collecting jar.
What Happened?
When water evaporates it leaves all of it’s impurities behind. If there are any bacteria or dissolved salts, they are left behind in the basin. Only pure water evaporates and is condensed on the plastic. This is why the water in the collecting jar is not salty.

Homemade solar cell construction

 

              By thinknut.blogspot.com

Homemade solar cell construction





                  

A solar cell or photovoltaic cell is an electrical device that converts the light energy  into electricity by the photovoltaic effect. solar cell basic unit of solar panel and construct at industrial level you can not build at home but in this article we will try to teach you simple homemade solar cell construction in Urdu. this solar cell is not efficient like industrial cell but it can convert less amount of sunlight in electric.
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How to make solar Oven Smores

 

                By thinknut.blogspot.com

Solar Oven Smores

There are just some things that are synonymous with "summertime snacks," and we can't think of a summer snack we enjoy quite as much as s'mores. But what would you do if you weren't allowed to have a fire or just didn't have the tools necessary for a fire? We came up with a pretty neat way to harness the heat and energy of the sun to create a solar powered cooker that makes a delicious batch of s'mores without a fire!

Materials
  • Pizza box
  • Two clear sheet protectors
  • Black construction paper
  • Duct tape
  • Clear masking or packing tape
  • Box knife
  • Scissors
  • Thermometer (optional)
  • Wooden skewer
  • Glue stick (Elmer's glue will work, too)
  • Tin foil
  • Ruler
  • Pen

Videos
  • Solar Oven S'more - Sick Science! #097              
  

Experiment

  1. On the lid of a pizza box, use a ruler and pen to measure and draw a square that is 1-2" from the sides of the box.
  2. Cut along three sides of the square you just made by using box cutters or a pair of scissors.
  3. Measure and cut a large piece of foil to line the bottom of the pizza box.
  4. Apply glue to the bottom of the pizza box and glue the large piece of foil into place, smoothing in down.
  5. Measure and cut another large piece of foil to cover the bottom of the flap you cut on the pizza box lid.
  6. Apply glue to the bottom of the pizza box lid and glue the tin foil piece into place.
  7. Use scissors to cut a piece of black construction paper that is 1-2" smaller at each edge than the bottom of the pizza box.
  8. Use clear masking or packing tape to tape the black construction paper to the bottom of the pizza box. Try to center the black construction paper.
  9. Find a sheet protector and pull the two pieces apart. Tape these pieces together at one of their long edges. Tape the new, large piece of plastic on the inside of the box lid, NOT the flap. The plastic should span the flap opening. If it doesn't, make a larger plastic sheet!
  10. Use a wooden skewer to poke two small holes (don't poke the skewer all the way through) on the lid between the flap and the side of the lid. Poke the holes about 2" apart.
  11. Wrap a thin piece of tape around the skewer, near the flat end, so that one end of the tape is above the other end. Check out the photo at the right to see exactly how to wrap the tape.
  12. Tape the skewer to the flap so that the flat end of the skewer is near the end of the flap. Use the skewer and the holes you poked in the lid as a kickstand for the flap.
  13. If you want to see just how hot your Solar Oven gets, tape a thermometer to the bottom of the box so that it can be seen through the plastic window.
  14. Set up your oven with the flap up and place it in the sun. It may take a little while, but you'll watch your s'mores heat up, melt, and be ready to eat!
Take It Further!
Try making hotter Solar Ovens!
  • Use different materials.
  • Try different sized boxes.
Is there anything else you can think to change?

How Does It Work?

The Solar Oven is what is more widely known as a solar cooker and works on the principle of converting sunlight to heat energy and retaining the heat for cooking. To make the process work, you cover as much of the box as possible with reflective material in order to catch as much sunlight as possible. In this case, you are using tin foil. The cooking surface is black construction paper because it retains heat very well. If you've ever worn a black shirt on a sunny day, or sat down on the black seat of a car in the summer, you know that black surfaces absorb and retain a lot of heat. Ouch! As heat is retained, the air inside the oven also heats. Next thing you know, you're eating delicious, melt-in-your-mouth s'mores!
- See more at: http://www.stevespanglerscience.com/lab/experiments/solar-oven#sthash.u7Z2RJzC.dpuf