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The value of a raindrop Programme for Oslo University students  New Delhi,  March 2007
1. Growing crisis  In 1950, water availability was very low only in North Africa, and was average or above average in the rest of the world.  <  1 - catastrophically low;  1.1.-2.0 - very low;   2.1-5.0 - low;   5.1-10 - average;   10.1-20 - high;   > 20 - very high. Source:  Source: World water resources at the beginning of the 21st century” prepared in the framework of ihp unesco
1. Growing crisis In 2001, more than 75% of the world population has low water availability.   <  1 - catastrophically low;   1.1.-2.0 - very low;   2.1-5.0 - low;   5.1-10 - average;   10.1-20 - high;   > 20 - very high. Source:  Source: World water resources at the beginning of the 21st century” prepared in the framework of ihp unesco
1. Growing crisis
What has led to this situation? ,[object Object],[object Object],[object Object],[object Object]
Most rivers in India have hardly any water left in summer
Groundwater depletion in India
Why is recharging so important?  While tubewell use is increasing,tank irrigation is declining
How efficient is the present paradigm? ,[object Object],[object Object],[object Object]
 
Problem villages in drinking water supply Year of Survey Number of Problem Villages identified   Number of villages covered till the next survey   Number of villages not covered before the next survey 1972   150,000 94,000 56,000 1980   231,000 192,000 39,000 1985   161,722 161,652 70 1994   140,975 110,371 30,604 1997   61,747    
Polluted river stretches  … But at a huge   cost! 1996 2003
[object Object],[object Object],[object Object],[object Object],Current scenario.. Drought   is becoming more or less  permanent   Even in “good” rainfall years, there is water stress.  Even after a  flood   there is a  drought Nearly  13% of total land area  declared  drought prone .
Drought in not only about failure of rainfall ,[object Object],[object Object],[object Object],[object Object]
2. YET ….. ,[object Object],[object Object],[object Object],[object Object],[object Object]
Can such investments be sustained? ,[object Object],[object Object],[object Object],[object Object]
4. Another answer ..  To leapfrog   ,[object Object],[object Object],[object Object],[object Object]
4. Another answer ..  To leapfrog
5. Potential of water harvesting  4 monsoon months 3000 8 remaining  months 1000 Total precipitation 4000 Total river flows   - 1953 (75%   of this only in rainy season) Percolation into soil 2047 Utilisable -  less evaporation,  flows to sea & other countries 690 Utilisable  -  less   evaporation, soil  moisture 396 Total available for irrigation  & other uses precipitation 1086 What is lost  – evaporation ,  soil moisture  – which can  be captured  – 1700 (approx ) Source: National Commission for Integrated Water Resources Development. All figures in Km3
5.  Potential of water harvesting ,[object Object],[object Object],[object Object],1 ha of land X 100 mm of rainfall = 1 million litres of water Water stored (depth)  Catchment area Evaporation loss Collection efficiency Rainfall Total water harvested = 900 km 3.  Surface area covered = 3% of total land area ** Rough estimates   8m 50Xsize of tank 4m 60% 200 mm 10m 30 X size of tank 2m 50% 800 mm
6. Principles of rainwater harvesting ,[object Object],[object Object],[object Object],[object Object]
7. Diverse technologies
 
8. Ancient wisdom  Dated as far back as 5000 years. Dholavira of the Indus Valley Civilisation was harvesting runoff in the dry Thar desert.
9. Traditional wisdom in the Thar desert A  talab  is a local reservoir made out of natural depressions on outcrops of hillocks or rocky formations. Usually, only the slope side of the reservoir or  talab  was provided with strong parapet walls.
9. Traditional wisdom in the Thar desert ,[object Object],[object Object]
9. Traditional wisdom in the Thar desert ,[object Object],[object Object],[object Object],[object Object]
9. Traditional wisdom in the Thar desert ,[object Object],[object Object]
9. Traditional wisdom in the Thar desert ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
9. Traditional wisdom in the Thar desert The Chittor Fort once housed at least 50,000 people. There were more than 80 water bodies which could hold water that would last the citizens for more than 5 years incase of a siege. Even today, there are 22 water bodies.  Udaipur, known all over the world as the City of Lakes, has a network of lakes, which provided the city with drinking and irrigation water and also provided water for its numerous wells and step wells. Today, this water wealth is facing destruction.  Water bodies in Chittor Fort   Water wealth of Udaipur
9. Traditional wisdom in the Thar desert ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
9. Traditional wisdom in the Thar desert The  khadin  is used even today in agriculture in the Thar Desert. It involves harvesting rainwater in farmlands and consists of an embankment built across a slope in such a way that rainwater is collected within an agricultural field.  Virdas  was developed by the nomadic Maldhari tribes who inhabit the arid-saline regions of the Rann of Kutch. The  maldharis  identify the natural depressions ( jheels)  from the flow of the monsoon runoff, and then dig small wells  (virdas ), within the depression, to collect rainwater. The wells lie over the top of the saline layer, with a transition zone of brackish water between. Bushes and trees, planted on the bunds, protect the  virdas .
10. Decline of traditional systems ,[object Object],[object Object],[object Object],[object Object],[object Object]
11. Water and society ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
11. Water and society ,[object Object],[object Object],[object Object],[object Object]
11. Water and society ,[object Object],[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],11. Water and society
11. Water and society ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
11. Water and society  ,[object Object],[object Object],[object Object],[object Object],[object Object]
12. Rural poverty  ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
14. Way ahead – create natural wealth ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
14. Way ahead ,[object Object],[object Object],[object Object],[object Object],[object Object]
15. Community experiences  ,[object Object],[object Object],[object Object],[object Object]
16. 1970s: Transformation of Ralegan Siddhi ,[object Object],[object Object],[object Object],[object Object]
16. 1970s: Transformation of Ralegan Siddhi
16. 1970s: Transformation of Ralegan Siddhi ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
16. 1970s: Transformation of Ralegan Siddhi
16. 1970s: Transformation of Ralegan Siddhi ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
16. 1970s: Transformation of Ralegan Siddhi
16. 1970s: Transformation of Ralegan Siddhi ,[object Object],[object Object],[object Object],[object Object],From one of the most destitute villages of India to one of the richest 28% of population earn more than Rs. 40,000/month
17. Temple of modern India - Jhabua ,[object Object],[object Object],[object Object],[object Object],[object Object]
17. Temple of modern India - Jhabua ,[object Object],[object Object],[object Object],[object Object]
17. Temple of modern India - Jhabua ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
17. Temple of modern India - Jhabua
17. Temple of modern India - Jhabua ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
17. Temple of modern India - Jhabua ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
17. Temple of modern India - Jhabua ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
17. Temple of modern India - Jhabua
17. Temple of modern India - Jhabua
Challenge of wealth-waste ,[object Object],[object Object],[object Object],[object Object]
The water-sewage connection ,[object Object],[object Object],[object Object]
Cities search for water ,[object Object],[object Object],[object Object],Chennai Veeranam lake  Map of Tamil Nadu
Manjira dam Hyderabad  Nagurjuna  105 km 100 km Himayat Sagar Osman Sagar
Vaitarna cum Tansa   90 km 105 km Mumbai Bhatsa
Narmada river 70 km 30 km INDORE INDORE YASHWANT SAGAR
Indira Gandhi canal 204 km Rajivgandhi lift canal Jodhpur JODHPUR
Bangalore..
[object Object],Cities depend on groundwater: but do not recharge.
Urban lakes are sponges of cities.  To hold water and recharge groundwater. But neglected. Dirty. Dead. Destroyed for land.  No land for water.
Inefficiencies are high ,[object Object],[object Object],[object Object],[object Object]
3% population Water costs are high. Distribution costs high. Cannot be recovered. Subsidy to some. Water inequity in Delhi .
[object Object],[object Object],[object Object],Urban water norms need reform Need answers that are different.  Less wasteful.
More water means more sewage.  ,[object Object],[object Object],[object Object],[object Object]
Cost of system is high. Cannot pay. Cannot subsidise all.   ,[object Object],[object Object],[object Object]
Subsidy to the rich to excrete in convenience.   ,[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Sewage excreta: biggest challenge for modern India
Challenge for science: national toilet mission

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Water management in India: By Gita Kavarana

  • 1. The value of a raindrop Programme for Oslo University students New Delhi, March 2007
  • 2. 1. Growing crisis In 1950, water availability was very low only in North Africa, and was average or above average in the rest of the world. < 1 - catastrophically low; 1.1.-2.0 - very low;  2.1-5.0 - low;  5.1-10 - average;  10.1-20 - high;  > 20 - very high. Source: Source: World water resources at the beginning of the 21st century” prepared in the framework of ihp unesco
  • 3. 1. Growing crisis In 2001, more than 75% of the world population has low water availability. < 1 - catastrophically low;  1.1.-2.0 - very low;  2.1-5.0 - low;  5.1-10 - average;  10.1-20 - high;  > 20 - very high. Source: Source: World water resources at the beginning of the 21st century” prepared in the framework of ihp unesco
  • 5.
  • 6. Most rivers in India have hardly any water left in summer
  • 8. Why is recharging so important? While tubewell use is increasing,tank irrigation is declining
  • 9.
  • 10.  
  • 11. Problem villages in drinking water supply Year of Survey Number of Problem Villages identified   Number of villages covered till the next survey   Number of villages not covered before the next survey 1972   150,000 94,000 56,000 1980   231,000 192,000 39,000 1985   161,722 161,652 70 1994   140,975 110,371 30,604 1997   61,747    
  • 12. Polluted river stretches … But at a huge cost! 1996 2003
  • 13.
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  • 18. 4. Another answer .. To leapfrog
  • 19. 5. Potential of water harvesting 4 monsoon months 3000 8 remaining months 1000 Total precipitation 4000 Total river flows - 1953 (75% of this only in rainy season) Percolation into soil 2047 Utilisable - less evaporation, flows to sea & other countries 690 Utilisable - less evaporation, soil moisture 396 Total available for irrigation & other uses precipitation 1086 What is lost – evaporation , soil moisture – which can be captured – 1700 (approx ) Source: National Commission for Integrated Water Resources Development. All figures in Km3
  • 20.
  • 21.
  • 23.  
  • 24. 8. Ancient wisdom Dated as far back as 5000 years. Dholavira of the Indus Valley Civilisation was harvesting runoff in the dry Thar desert.
  • 25. 9. Traditional wisdom in the Thar desert A talab is a local reservoir made out of natural depressions on outcrops of hillocks or rocky formations. Usually, only the slope side of the reservoir or talab was provided with strong parapet walls.
  • 26.
  • 27.
  • 28.
  • 29.
  • 30. 9. Traditional wisdom in the Thar desert The Chittor Fort once housed at least 50,000 people. There were more than 80 water bodies which could hold water that would last the citizens for more than 5 years incase of a siege. Even today, there are 22 water bodies. Udaipur, known all over the world as the City of Lakes, has a network of lakes, which provided the city with drinking and irrigation water and also provided water for its numerous wells and step wells. Today, this water wealth is facing destruction. Water bodies in Chittor Fort Water wealth of Udaipur
  • 31.
  • 32. 9. Traditional wisdom in the Thar desert The khadin is used even today in agriculture in the Thar Desert. It involves harvesting rainwater in farmlands and consists of an embankment built across a slope in such a way that rainwater is collected within an agricultural field. Virdas was developed by the nomadic Maldhari tribes who inhabit the arid-saline regions of the Rann of Kutch. The maldharis identify the natural depressions ( jheels) from the flow of the monsoon runoff, and then dig small wells (virdas ), within the depression, to collect rainwater. The wells lie over the top of the saline layer, with a transition zone of brackish water between. Bushes and trees, planted on the bunds, protect the virdas .
  • 33.
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  • 44.
  • 45. 16. 1970s: Transformation of Ralegan Siddhi
  • 46.
  • 47. 16. 1970s: Transformation of Ralegan Siddhi
  • 48.
  • 49. 16. 1970s: Transformation of Ralegan Siddhi
  • 50.
  • 51.
  • 52.
  • 53.
  • 54. 17. Temple of modern India - Jhabua
  • 55.
  • 56.
  • 57.
  • 58. 17. Temple of modern India - Jhabua
  • 59. 17. Temple of modern India - Jhabua
  • 60.
  • 61.
  • 62.
  • 63. Manjira dam Hyderabad Nagurjuna 105 km 100 km Himayat Sagar Osman Sagar
  • 64. Vaitarna cum Tansa 90 km 105 km Mumbai Bhatsa
  • 65. Narmada river 70 km 30 km INDORE INDORE YASHWANT SAGAR
  • 66. Indira Gandhi canal 204 km Rajivgandhi lift canal Jodhpur JODHPUR
  • 68.
  • 69. Urban lakes are sponges of cities. To hold water and recharge groundwater. But neglected. Dirty. Dead. Destroyed for land. No land for water.
  • 70.
  • 71. 3% population Water costs are high. Distribution costs high. Cannot be recovered. Subsidy to some. Water inequity in Delhi .
  • 72.
  • 73.
  • 74.
  • 75.
  • 76.
  • 77. Challenge for science: national toilet mission