HILDEN PROJECT PRESENTATION NAME OF THE PROJECT Restoration of Traditional Rainwater Harvesting Tank and the Recharge of the Aquifer in the Vanur Taluk,

Slides:



Advertisements
Similar presentations
Groundwater What is it and why is it important?
Advertisements

Chapter 9 Water Resources.
Rain Water Harvesting : An alternate Source of Water
PRESENTED BY S.S.GEHLOT ADEN/BR/JU G.S. GAUTAM ADEN/JND S.P.VYAS AXEN/C/JU R. MATHUR AXEN/C/JP GUIDED BY SH. A.K.GUPTA PROF.TRACK-I IRICEN-PUNE.
Warm Up Think about where water comes from. Is there more or less water on Earth than there was 1 billion years ago?
Section 3: Stream Deposition
Section 1: Water Resources
Rooftop Rainwater Harvesting Pre-implementation guide for schools.
LEQ: How does water move through underground layers of soil and rock?
Warm Up Think about where water comes from. Is there more or less water on Earth than there was 1 billion years ago?
Chapter 14 Water.
SAVE WATER:RAIN WATER HARVESTING WHAT IS RAIN WATER HARVESTING Rainwater harvesting is the accumulating and storing of rainwater for reuse before it.
WATER- “ The Source of Life”  All the water that will ever be is, right now. -National Geographic  Water has become a highly precious resource. There.
Manzoor Qadir and Richard Thomas FAO/UNEP/UNU-INWEH/UNW-DPC Capacity Development Project Inception Workshop, November 2011.
RAINWATER HARVESTING IN THE HOSPITALITY SECTOR
Experience of Lanka Rain Water Harvesting Forum Tanuja Ariyananda Lanka Rain Water Harvesting Forum.
By Andrew Lee and Oliver Royle. Definition The Water Cycle, also know as the hydrological cycle, is the journey that water takes through mainly evapotranspiration,
DONE BY  PREETHY.P  MEERA KUMAR {X-O}  STEFFI SAM GOVT.H.S.S.FOR GIRLS,COTTON HILL.
Workshop on Effective Implementation of IWMP
Dr. R.P.Pandey Scientist F. NIH- Nodal Agency Misconception: A DSS takes decisions ---(No)
Implementation of MGNREGS in Andhra Pradesh In India Agriculture based Livelihoods: Opportunities and Potential 1 Government of Andhra Pradesh, India.
Monetary Assessment on Multiple Functions of Irrigation Water for Paddy Fields in the Asian Monsoon Region March 18, 2009 Kazumi YAMAOKA, PhD International.
Sanitary Engineering Lecture 11. Storm Water Runoff Storm water runoff is the precipitation which seeps into the ground if precipitation occurs faster.
PLI Project DI Khan (Pakistan) 3.7. Project for Livelihood Improvement Overall Goal: Socio-Economic status of Disadvantaged communities enhanced. Objectives:
Chapter 9 Water Resources. Usable Water is Rare  Agriculture- the largest use of water around the world. Agriculture, Industry and Household Needs.
Chapter 9 Water Resources. Aquifers - small spaces found within permeable layers of rock and sediment where water is found Unconfined aquifers - an.
1.4 Unlocking the potential in spate irrigation.
Tracking Groundwater Contamination
Unit 1 Lesson 3 Surface Water and Groundwater
Water Resources Chapter 13. Questions for Today  Why is water so important?  Does everyone have access to clean and healthy water  Describe the three.
Prevention and Cure. Contents Introduction to Reservoirs Preventing Siltation Cure Cost Benefit Analysis Conclusion.
Water resource engineering Chapter 9 Department of Civil Engineering.
Water Harvesting. Water harvesting measures These are artificial recharge measures that capture rainfall and run-off and store it in the soil profile.
WaterSection 1 Chapter 11 Water Section 1: Water Resources.
Section 3: Stream Deposition
 A large mass of moving ice. (frozen water)  A measure of the amount of dissolved salts in a given amount of liquid.
Water Cycle Animation Study Jams. Next > Humans depend on water. For this reason, throughout history, humans have settled near water sources. The most.
Water Distribution. The Water Cycle Water is essential to life on Earth. Humans can live for more than month without food, but we can live for only a.
Streams & Rivers Q. What is runoff? A. Water that flows over the ground surface rather than soaking into the ground. Q. What is runoff? A. Water that flows.
Roof top rain water harvesting What is Rainwater harvesting? The term rainwater harvesting is being frequently used these days, however, the concept of.
BY: MARTY WANIELISTA, PHD., P.E. BMPTRAINS MODEL: BACKGROUND INFORMATION ON HARVESTING.
WaterSection 1 Water Resources Water is essential to life on Earth. Humans can live for more than month without food, but we can live for only a few days.
Rainwater Harvesting 1 1.
HYDROLOGY AND WATER RESOURCES ENGINEERING PARUL INSTITUTE OF ENGINEERING & TECHNOLOGY. Semester:- 5 th Branch:- Civil Engineering.
WATER Essential for the survival of all living beings.. Essential for the survival of all living beings..
Hydrology and Water Resources Engineering ( ) Government Engineering College Rajkot Civil Engineering Department Faculty Guide: Prof V.G.Yadav DROUGHT.
Water Chapter 11. Water Resources Section 11.1 Water is essential to life on Earth. Humans can live for more than month without food, but we can live.
Chapter 11 section 1 Water. Water Resources Water is essential to life on Earth. Humans can live for more than month without food, but we can live for.
Rain for Life Jal Bhagirathi Foundation. About JBFAbout JBF Vision JBF works towards creating water security and promoting sanitation, sustained by responsive.
WaterSection 1 Section 1: Water Resources Preview Classroom Catalyst Objectives Water Resources The Water Cycle Global Water Distribution Surface Water.
RAINWATER HARVESTING AND ARTIFICIAL RECHARGE TO GROUND WATER
TRADITIONAL METHODS OF RAINWATER HARVESTING
SALT WATER INTRUSION By, Steffi Roy PR11CE2005 Water Institute
.. Definition of drought, Causes of drought, measures for water conservation and augmentation, drought contingency planning. Water harvesting: rainwater.
Unit 1 Lesson 3 Surface Water and Groundwater
Sumedh R Kashiwar, Triyugi Nath and Dileep Kumar
Unit 1 Lesson 3 Surface Water and Groundwater
Section 1: Water Resources
Freshwater Resources Chapter 7.
PRESENTATION ON RAIN WATER HARVESTING BY: RAGHAV SINGLA VII-B .ppt (1)
IMPLEMENTATION OF MITIGATION AND ADAPTATION
Aim: Water Resources Notepack 24.
Groundwater Recharge Structures Dr. P. T. Hanamgond GSS College, Belgaum.
Objectives Describe the distribution of Earth’s water resources.
ENVIRONMENTAL SCIENCE
Water Resources Water is essential to life on Earth. Humans can live for more than 1 month without food, but we can live for only a few days without water.
Water Harvesting.
The Movement and Storage of Groundwater
RAIN WATER HARVESTING By WESI Water and Energy Strategy Institute
Groundwater Systems.
Presentation transcript:

HILDEN PROJECT PRESENTATION NAME OF THE PROJECT Restoration of Traditional Rainwater Harvesting Tank and the Recharge of the Aquifer in the Vanur Taluk, Villupuram District, Tamil Nadu, INDIA Funded by Implemented By CITY OF HILDENAUROVILLE WATER HARVEST

Phases of Hilden First Phase Second Phase

Project Area Parts of the Vanur Aquifer near the villages of: 1. Vanur 2. Annpakkam 3. Pulichapallam

LOCATION MAP

Aim of Project To promote the way their ancestors used water sustainability. To improve groundwater recharge To use innovative technologies to recharge the aquifer. To capture more rainwater To try and protect the coastal area from salt water intrusion of our aquifer

Objectives To identify where encroachment of communal water harvesting structures has taken place and to work with the farmers to remove the encroachment To assess the present status of the traditional heritage rain water harvesting structures and to rehabilitate them. To raise awareness amongst the villagers about the need to use water sustainably like their ancestors did. To rehabilitate existing tanks to enlarge holding capacity To restore channels to increase holding capacity of tanks To design and build new check dams and to capture rainwater and to recharge the ground water To improve the irrigation capacity of dry land farmers by the check dams and rehabilitated tanks To drill some recharge and observations wells so that we can monitor how successful (or not) the project is.

Rationale of the Project Test have found saltwater intrusion in parts of the Aquifer It is imperative that urgent action is taken to try and mitigate this pressing problem. The extraction rate is up to 15x more than the annual average recharge of the region Traditionally, Tamils created a network of tanks (dams) and channels to harvest all the rainwater. This tradition is dying so Harvest is working to preserve this dying art Harvest has been restoring these traditional tanks and with the City of Hilden is either restoring or building new rainwater harvesting structures. Highly silted tanks contribute to less water holding capacity Abusive agricultural irrigation methodologies, the poor state of the traditional rainwater harvesting structures and inadequate water conservation practices perpetuate falling water tables

Phase of work The project work will be carried out in one year. We will follow the four activities below i)Social Mobilization ii)Design ii)Implementation iii)Monitoring

Social Mobilization This component is a Key activity, (however not part of the Hilden project). We received funding from another NGO to cover this area of the project. We mention it here just to give Hilden an overview and importance of the project. We work to empower the villagers to be part of the development process via education, shared decision making, ownership, etc. We have worked with these user groups to take responsibility for maintaining the tanks and check dams.

Physical implementation 2 Check dams One Pond and an outlet weir Clearing channel of the odai for the Check dams 2 recharge wells 2 sand filters 2 observation wells

Checkdams Purpose of the Checkdams The purpose of the construction of the check dams is to retain all rainwater runoff in the area This captured rainwater would percolate back into the aquifer

Methodology for Checkdams Identify Catchment Area and where checkdams will be situated Design structures considering runoff, Depth of Storage and Type of Soil Clear the odai (channel) to enhance water flow Monitoring water levels before and after monsoon

Specification of Checkdams DescriptionPulichapallamAnnpakkam Length of body wall6.0 M9.0 M Type of SurplusWeir Material UsedRandom Rubble Height of body wall1.50 M1.20 M Width of body wall0.45M Protection wallWing wall

Impact of Check dams Increased the ground water recharge and stabilized the ground water status near the check dams This would enhance the agricultural productivity near the check dam and rehabilitated tanks Water level raised in surrounding open wells (depends on the fillings. Last year both check dams had 10 fillings) Soil erosion was controlled by strengthening the side bunds of the odai The larger volumes of water percolating into the aquifer assist in mitigating salt water intrusion Reforestation of tank and check dam walls assist in reduced runoff and better recharge

Outcomes cubic meter earthwork was taken at pulichapallam. 0.05mcft water storage increased(14.15 Lakhs liters) cubic meter earthwork was taken thus by increasing storage by 0.15 mcft (42.460,000 liters) 300 meter bund was strengthened both at Pulichapallam and Anpakkam 500 meter of odai was cleared for free flow at both Pulichapallam and Anpakkam

Recharge Pond - Innovative Two Different storage level in One Tank Water from the catchments enters into the first pond which was built to be lower than the second pond. So most of the silt and sediment are deposited into the first pond. The water reaches a certain height before it starts to fill the second pond. The second pond due to its ingenious design doesn’t fill up with sand and silt. The water from both tanks discharge into the aquifer During the heavy rains most of the water was captured in all the series of tanks and dams. Less runoff will overflow from the tank and via channels end up in the Kaliveli (or sea).

Specification of Recharge Pond Length of bund: 330 m Deepest bed level: m (Above MSL) Full tank level m (Above MSL) Maxi. Water level: m Catchments: 1,95 sqkm. Nature of catchments: Average Total annual rainfall 1.250mm. Yield from the catchments: 0.131m3

Impact of Recharge Pond A Recharge pond is an artificially created structure that captures water. The subsurface is highly permeable so most captured water percolates and recharges the ground water (aquifer); Our monitoring of wells has seen a rise in water table (see graph below)

Recharge Calculation Area of the Catchments = 0.12sq.km Rainfall infiltration factor = 0.16 Total recharge in one filling = 0.12*0.16; = mcum, = 1920 cum, = liters. Total no. of fillings in monsoon = 8 fillings Possible recharge amount = 8* = m3.

Outcomes of Recharge Pond 250 meters of bund was strengthened; Recharge is ensured; Monitoring the recharge of the observation well on the upstream side was provided; Increase of cubic meter capacity; 8 to 10 surrounding wells have benefited from the extended capacity of the Vanur outlet pond ??? From one or dams????

Monitoring Monitoring Components for RECHARGE 1) Recharge well at Aanpakkam 2) Recharge well at Pulichaplaam 3) Observation well at Vanur recharge pond (Upstream) 4) Observation Well at Vanur recharge pond (Down stream) 5) Two Sand Filters for Two Recharge wells

Specification of Wells Sl. No DescriptionDepth of Well Earth DiaPipe casing Dia 1Annpakkam Recharge well 150feet16 inch12 inch 2.Pulichapallam Recharge Well 150feet16 inch12 inch 3.Vanur Observation well (Upstream) 70 meter8 inch4 inch 4Vanur Observation well (Down stream) 70 meter8 inch4 inch

Monitoring water level At Vanur Recharge pond, post monsoon Jan 09Mar 09 Vanur check dam Vanur check dam Oct 08Jan 09Mar 09 Vanur check dam Vanur check dam

Constraints For at least 2000 years Tamil’s have practiced sustainable water management. However with the advent of the Green Revolution and the introduction of bore wells the aquifers of the Third World have been decimated. Will farmers change their irrigation methodologies in time to save the aquifers that aren’t salinated?

Water Dilemma Farmers realise that borewells are causing their aquifers to sink at an alarming rate. Yet their need to produce crops (and make money and feed their families) makes them continue to perpetuate the crash (saltwater intrusion) of their aquifer. Will sanity prevail and they take steps, initiated by NGOs, to change their course to save the aquifer? Without rational water management we will lose our aquifer like other areas of India. Programs that are able to recharge the aquifer need to work hand in hand with teaching organic farming which reduce water consumption. These steps could hopefully save our aquifer and the livelihood of the villagers in our bioregion.

Conclusion We are happy to report that our data collection after the (very good) monsoons has risen the water table It is imperative that we restore or build new check dams and recharge wells in the region to assist the aquifer and the villagers of the Vanur Block. This project can be a model project to show others the way forward to save their aquifer if the program works hand in hand with teaching organic agriculture.