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Piezometer (Digital Water Level Recorder) - DWLR

Digital Water Level Recorder (DWLR) which can be used in piezometer wells as well as tubewells for measurement of water level data. Non-contact devices in Water level measurement are the next generation products in the water sector. Statometer uses an indigenously designed patented signal processing algorithms of acoustic waves for accurate measurements. Ideal solution for *Real-time measurement of fluctuations in water table *Central Ground Water Board(CGWB) NOC compliances *Determining efficiency of rain water harvesting systems *Planning crops and drought forecasting in agriculture Data communications GPRS/GSM Data visualization - Graphs & list view of data collected - Analytical tools for trend analysis - Location of wells on Google maps User configurable features - Roles and accessibility - Frequency setup* - Remote triggering* Data download options - CSV and xlsx format - Reports

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Piezometer (Digital Water Level Recorder) - DWLR

Allegiance Water Level Indicator Flat tape water level Indicator Enhanced Laser Marked Tape Features Durable PVDF non-stretch tape Improved electrical properties Thicker dog bone design prevents clinging to sides of the well Permanently laser marked every 1/100 ft or each mm The PVDF flat tape is laser marked every 1/100 ft or each mm; lengths up to 5000 ft (1500 m). New flat tape has increased tensile strength and electrical efficiency by using 6 strands of copper coated stainless steel and 13 strands of stainless steel in each conductor. The P7 Water Level Meter Probe is engineered to allow submersion to 1000 ft. (300 m). Sensor at the tip of the probe provides

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Piezometer (Digital Water Level Recorder) - DWLR

Digital Water Level Recorder (DWLR) with Telemetry which can be used in piezometer wells for measurement of water level data. Devices in Water level measurement are the next-generation products in the water sector. Ideal solution for *Real-time measurement of fluctuations in water table *Central Ground Water Board(CGWB) NOC compliances *Determining efficiency of rain water harvesting systems *Planning crops and drought forecasting in agriculture Data communications GPRS/GSM Data visualization - Graphs & list view of data collected - Analytical tools for trend analysis - Location of wells on Google maps User configurable features - Roles and accessibility - Frequency setup* - Remote triggering* Data download options - CSV and xlsx format - Reports

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Rainwater collection Pond

Earthen Pond An earthen pond is an artificial lake or pond created by shaping and building an earthen or dirt embankment around a depression or low-lying area. These ponds are commonly used for recreational or ornamental purposes and can also serve as water sources for livestock or irrigation. Regular Monitoring: Keep an eye on water levels. Debris Removal: Clean out leaves, branches, and other debris. Aquatic Vegetation Control: Manage plant growth. Long-Term Sustainability: With care, earthen ponds can thrive as safe habitats for both wildlife and humans

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Rainwater Harvesting System

Injection well Technology is the most effective in capturing surface run off both from plain open loose area or from storm line and filtering in two stages by filtering rainwater through 4 stages of filtration through Silt Trap and Injection well. The silt traps takes care of most impurities in the first stage itself, as it has 40 mm gravels, 10 mm pebbles, charcoal, activated carbon and coarse send and horizontally fixed V wire non clogging SS screen of 500 mm length and 150 mm dia. Rainwater then flows through main Injection well where it flows by gravity through 40 mm gravels, 10 mm pebbles, charcoal, activated carbon and coarse send and vertically placed V wire non clogging SS screen of 500 mm length and 200 mm dia. on the recharge bore well. Air vent from bore well and main well is kept at center. The main well is designed to do maintenance whenever is required. As such the filtration media only needs cleaning once in a year Silt Trap and Injection well. The best technology to have head pressure by the way of water column to ensure fast recharge of ground water and recover the water levels in Aquifer. Allegiance water Management; India's passionate Rainwater Company.

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Rainwater Harvesting

Roof Top Rain Water Harvesting What is Roof Top Rain Water Harvesting? Rooftop Rain Water Harvesting is the technique through which rain water is captured from the roof catchments and stored in reservoirs. Harvested rain water can be stored in sub-surface ground water reservoir by adopting artificial recharge techniques to meet the household needs through storage in tanks. The Main Objective of rooftop rain water harvesting is to make water available for future use. Capturing and storing rain water for use is particularly important in dryland, hilly, urban and coastal areas. In alluvial areas energy saving for 1m. rise in ground water level is around 0.40 kilo watt per hour. Need for Rooftop Rain Water Harvesting 1. To meet the ever increasing demand for water 2. To reduce the runoff which chokes storm drains 3. To avoid flooding of roads 4. To augment the ground water storage and control decline of water levels 5. To reduce ground water pollution 6. To improve the quality of ground water 7. To reduce the soil erosion 8. To supplement domestic water requirement during summer, drought etc. Advantages of Rain Water Harvesting 1. Provides self-sufficiency to your water supply 2. Reduces the cost for pumping of ground water 3. Provides high quality water, soft and low in minerals 4. Improves the quality of ground water through dilution when recharged to ground water 5. Reduces soil erosion in urban areas 6. The rooftop rain water harvesting is less expensive 7. Rainwater harvesting systems are simple which can be adopted by individuals 8. Rooftop rain water harvesting systems are easy to construct, operate and maintain 9. In hilly terrains, rain water harvesting is preferred 10. In saline or coastal areas, rain water provides good quality water and when recharged to ground water, it reduces salinity and also helps in maintaining balance between the fresh-saline water interface 11. In Islands, due to limited extent of fresh water aquifers, rain water harvesting is the most preferred source of water for domestic use 12. In desert, where rain fall is low, rain water harvesting has been providing relief to people

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