Monday, 21 April 2014

Cheapest Material will give you Purest Rainwater

Cheapest Material will give you Purest Rainwater


Sand bed filter is the traditional method of water purification Systems.

In a confined masonry structure, coarse riverbed sand, pebbles and aggregates are filled one above the other as layers separated by plastic mesh.

Rainwater is allowed at the top from one end and filtered water is drawn from the bottom at the other end.

Aggregates, sand and plastic mesh need to be taken out of the filter chamber periodically. These are washed in fresh water and sun dried before refilling them back in the filter chamber.






Wednesday, 16 April 2014

Plastic Barrel system to safeguard the ground water!

Used plastic barrels method - low cost and simple option to effectively recharge ground water around a house*.

Rainwater from the roof of a building may be allowed to flow through a “PopUp Filter” to recharge ever dwindling ground water.

PopUp filter will remove floating elements and the silt present in the roof top rainwater.  Relatively cleaner water comes out of the filter and is allowed to flow into groundwater recharge gallery.
The groundwater recharge gallery is created by using used plastic oil/chemical barrels (blue coloured drums sold on the road side for construction activities etc.).

Process: Identify an open space around a building to create barrel system of infiltration gallery. Excavate earth to a depth of 6 ft. from the ground level. The width of excavated pit must be slightly more than the diameter of the plastic used oil barrel (around 1¾ ft. or 21 inches)
Length of the excavated pit must be equal to number of barrels used multiplied by diameter.  For example a four barrels infiltration gallery will have an excavated pit of 21 inch X 4 nos. = 84 inch or 7 ft. (length)
Procure the required number of plastic barrels (capacity about 200 ltr) and cut open one side of all the barrels.
Drill two holes, with diameter slightly more than that of rainwater down pipe (4 or 5 inch as the case may be) at the bottom end of the barrels on opposite sides. Install empty barrels, so prepared, in the pit with their cut open side facing downwards. Align all the barrels in one line with the side holes facing each other.  Insert a pipe of 12 inch length to interconnect two neighbouring barrels.
Guide the roof top rainwater pipe connected to the outlet of the Popup filter to the first barrel.  Connect a similar pipe as overflow to the last barrel and leave the outlet of this pipe to the drain outside the building. Make sure a cap with perforations is fitted to prevent rats or insects from entering the overflow pipe at the drain. Also make sure that the over flow pipe end is at a level above the normal water flow level in the drain. Fill up the excavated pit with soil leaving the barrels and the connecting pipes undisturbed. Once the soil over these barrels stabilizes, activities like gardening, cement flooring, light vehicle parking etc. can be taken up.

Rainwater flowing from the PopUp filter flows into these barrel system of infiltration gallery and recharges groundwater.

Many open wells and bore wells or tube wells have got a new lease of life after adopting the barrel system of infiltration.

* System developed by AR Shivakumar

Note: Barrel system should not be tried in the areas with very low porosity in the soil (black cotton soil), place where the water table is already high and places with hard rocky ground with shallow soil cover.









Tuesday, 15 April 2014

CONNECT storm water drain to MOTHER earth

“CONNECT storm water drain to MOTHER Earth”

City storm water drains to recharge ground water!


The drain in front of your house can harvest precious rainwater and recharge ground water.

Ground water is exploited beyond the limits and is declining in alarming speed in our cities. Simple interventions can reverse the trend.

Create a rainwater recharge trench in front of your house:

Open up one of the stone slab at the bottom of the storm water drain.
Dig a pit of rectangular shape to a depth of one meter or 3 feet.
Fill the trench with pebbles or stones or aggregates or broken bricks to 2 ft depth.
Add a layer of smaller stones or aggregates (Jelli) for a depth of 6 inches over the pebbles.
Place a mosquito net over the layer of small stones.
Fill the balance top portion of the trench with river bed coarse sand.
Rainwater from the road, from your house or from your neighbours will flow in to the trench and the sand will arrest all the silt before the rainwater percolate in to the ground. Once in a while the sand layer may be removed, washed in water to takeout all the silt and relayed to activate.
A very effective and low cost option to harvest rainwater for ground water recharge.

Imagine if in front of ever house or every other house, this trench is built and rainwater is allowed to percolate in to the ground, how quickly will the bore wells / tube wells get recharged?

Can we bring in a change?
Do your bit for our society!
It is inexpensive and needs your will to address.










Friday, 11 April 2014

Enjoy your WALK on a footpath which also harvests precious RAINWATER!

Can our footpaths be porous?
Harvest rainwater through your walk paths.

In Bangalore, a kilometer of walk path with porous pavements has a potential to harvest 30 lakh liter of rainwater per year. With moderate percolation efficiency of 75%, around 15 families of Bangalore can depend entirely on recharged ground water all through the year.
Can we bring in this change?
Porous foot paths are cheaper to build and easy to maintain compared to conventional foot paths.






Thursday, 10 April 2014

How much rainwater can you collect from your building roof?

Rainwater potential from your house roof

Roof area in sq. m.   -  A
Annual Rainfall of the place in mm - R
Potential of Rainwater that can be Harvested
  = Area X Rainfall = A X R = …… liter
or
 Roof area in sq. ft.  -  a
Annual Rainfall of the place in inches - r
Potential of Rainwater that can be Harvested
  = Area X Rainfall = a X r X 2.36 = ….. liter

Example - For a house in Bangalore:

Roof area in sq. m.   -  100 
Annual Rainfall of the place in mm (Annual rain fall in mm for Bangalore) - 1000
Potential of Rainwater that can be Harvested
  = 
Area X Rainfall = 100 X 1000 = 1,00,000 liter
or
 
Roof area in sq. ft.   -  500 
Annual Rainfall of the place in inches (Annual rain fall in inches for Bangalore) - 40
Potential of Rainwater that can be Harvested
  = 
Area X Rainfall = 500 X 40 X 2.36 = 47,200 liter





Tuesday, 8 April 2014

You may like refreshing tender coconut on a hot summer day. I am sure your plants will also like the same.

You may like refreshing tender coconut on a hot summer day. I am sure your plants will also like the same. Consider using coconut husk or tender coconut shells as hanging pots for your cute looking green plants.

Considered as waste and useless material in modern life, coconut husk and tender coconut shells can be good candidates for your hanging pots. The coir fiber in the husk of coconut holds moisture for longer lengths of time and keeps the plant healthy. The husk is also a good organic base material to support plant growth.




Monday, 7 April 2014

A cool solution for a hot summer! Paint the roof bright white, reflect away the scorching sun's might.

A cool solution for a hot summer! 
Paint the roof bright white, reflect away the scorching sun's might.
This summer consider painting your house roof with bright white paint.
We are in a tropical country and our buildings get heated up on a bright sunny day. Normal house roofs are gray (cement) in colour and gray is next to black to absorb heat. Experiments have shown that the main heat source to a building is the roof and it accounts for around 60% heat input to a typical building.
A white roof brings down the temperature inside the house by at least two degrees.
Gray coloured concrete roof acts like a heat magnet and stores lot of heat. The stored heat slowly gets released into the living areas of a house.
White roofs have more benefits: Thermal cycling of the normal gray coloured roof from 50 deg C during the day to 10/15 deg C in the night damages / cracks the roof and may lead to leaks. Clean white roof has less thermal cycling and attracts less insects and dust leading to less fungus or algae growth for clean rainwater harvesting.

more info @ - http://forbesindia.com/blog/economy-policy/back-to-basics-paint-the-town-white-to-save-power/