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Going Beneath the Surface: The Critical Need for Underground Water Monitoring Across Industries

Writer's picture: ellenex teamellenex team

Updated: May 7, 2023



Groundwater monitoring is critical for the sustainable management of water resources in various industries, including agriculture, mining, oil and gas, and of course urban water supply. The ellenex water level sensor, which can transmit data using LoRaWAN, offers an efficient and cost-effective solution for monitoring both reservoir and non-reservoir sources.


The ellenex water level sensor is designed to be user-friendly and easy to install. There is no need for wiring or programming once the device is delivered, making it a hassle-free solution for monitoring water levels. This is especially beneficial for industries that may not have technical expertise on-site, as the sensor can be quickly and easily installed by anyone.


The fact that the sensor is battery-powered also adds to its convenience, as it can be operated without the need for an external power supply. This makes it a versatile solution that can be used in remote areas or locations where access to power is limited. Furthermore, the sensor has a robust, waterproof design that ensures it can withstand harsh conditions. This is important for industries that may operate in environments with extreme weather conditions or in areas where the sensor may be exposed to water or other liquids.


One potential use case for this technology is monitoring groundwater well in an agricultural area. Farmers rely on groundwater to irrigate their crops, but over-extraction of groundwater can lead to depletion of the aquifer and long-term damage to the ecosystem. By using the ellenex water level sensor, farmers can track the water level in their wells and ensure that they are not extracting more water than is sustainable.


In the mining industry, the ellenex water level sensor can help to prevent costly damage to infrastructure and reduce the environmental impact of mining operations. By monitoring the water level in their wells, mining companies can ensure that they are not over-extracting water, which can lead to land subsidence and depletion of the aquifer.


In the oil and gas industry, the ellenex water level sensor can also help to prevent costly damage to infrastructure and reduce the environmental impact of operations. By monitoring the water level in their wells, oil and gas companies can ensure that they are not over-pumping water, which can lead to subsidence and damage to the water table.


In the food and beverage industry, the ellenex water level sensor can help companies optimize their water usage and reduce operating costs and environmental impact. By monitoring the water level in their wells, food, and beverage companies can ensure that they are using the appropriate amount of water for their operations.


Pairing the ellenex water level sensor with an ellenex water meter interface can provide an even more comprehensive solution for monitoring water usage and reducing wastage. By retrofitting analog water meters with the ellenex water meter interface, users can accurately measure the amount of water being used and monitor inflow and outflow. When paired with the ellenex water level sensor, this solution can provide a complete picture of the water usage and management in a particular location.


By combining these two sources of data, users can gain valuable insights into their water usage and make informed decisions to reduce wastage and optimize their water management. This solution can also help users keep track of their water usage and account for the water used. This is particularly important in industries where water usage is closely monitored and regulated, such as the food and beverage industry.


Overall, the use of the ellenex water level sensor with LoRaWAN technology can help companies in various industries to better manage their water resources, leading to more sustainable and efficient operations. By providing accurate and reliable data, this technology can help companies to make informed decisions about their water usage, leading to more sustainable and efficient operations. The convenience of its user-friendly design, battery-powered operation, and robust waterproof construction make it a reliable and convenient tool for sustainable water management.

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  • Air Compressor Operation Monitoring

  • Asset Cathodic Protection Monitoring

  • Asset Temperature Monitoring

  • Boilers Pressure and Temperature Monitoring

  • Building Structural Health Monitoring

  • Chemical Tanks Level Monitoring

  • Data Centre and Clean Room Pressure Monitoring

  • Diesel Delivery Management

  • Differential Pressure Monitoring

  • Dump Truck Overload and Operation Monitoring

  • Dust Collection System Monitoring

  • Farm Fish Operation Monitoring

  • Flood Monitoring

  • Frozen Food Delivery Management

  • Grain Silo Level Monitoring

  • HVAC Air Filter Performance Monitoring

  • HVAC Airflow Monitoring

  • Hydraulic Systems Overload Monitoring

  • Industrial Gas Cylinders Level Monitoring

  • Industrial Water Meters Digitalisation

  • Land Movement Monitoring

  • Liquid Storage Tank Level Monitoring

  • Manhole Blockage Monitoring

  • Milk Tank Level Monitoring

  • Negative Pressure Monitoring

  • Operational System Digitalisation

  • Pipe Temperature and Pressure Monitoring

  • Pump Pressure Monitoring

  • Rain Level Monitoring

  • Remote Diesel Tank Level Monitoring

  • Soil Moisture Monitoring

  • Trucks Overload Monitoring

  • Underground Water Pipeline Pressure Monitoring

  • Waste Liquid Delivery Management

  • Wastewater Pipe Pressure Monitoring

  • Water Filter Performance Monitoring

  • Water Quality Monitoring

  • Water Supply Monitoring

  • Water Tank Level Monitoring

  • Water Wells Level Monitoring

Key pre-configured Industrial IoT solutions

Main Industrial IoT Sensors: 

  • PTS2: Industrial Pressure (0.2bar to 1,000bar)

  • PTC2: Corrosive Resistant Pressure

  • PTD2: Pressure Sensor with Built-in Temperature Sensor

  • PTDH2: High Temperature Pressure and Temperature Sensor

  • PTG2: Pressure with Built-in GPS

  • PTS3: IP68 Pressure Sensor

  • PTF2: Flush Type Pressure Sensor

  • PTF2: Thich film Flush type Pressure

  • PTE2: Earth Pressure Sensor

  • PDS2: Industrial Differential Pressure Sensor

  • PDG2: DP with Built-in GPS

  • PDT2: Ultra Low Range Air Pressure and Temperature

  • PLS2: Submersible Level (1m to 200m range)

  • PLC2: Corrosive Resistant Level (Titanium)

  • PLD2: Level Sensor with Built-in Temperature

  • PLG2: Level Sensor with Built-in GPS

  • PLS3: Submersible Level Sensor with IP68 Housing

  • PLM2: Well Level Sensor (15.8mm Sensor Head, 2in Housing)

  • PLMD2: Well Level and Temperature Sensor

  • TTS2: Industrial Temperature Sensor

  • TTG2: Temperature Sensor with Built-in GPS

  • TTS3: Temperature Sensor with IP68 housing

  • TTS2: Pipe Temperature Sensor

  • DUS3: IP68 Ultrasonic Level Sensor

  • DRC3: IP68 Corrosive Radar Sensor (8m and 30m range)

  • FMS2: Industrial Water Meter Interface

  • CSD2: Conductivity Salinity and Temperature sensor

  • CTR2: Turbidity and Temperature Sensor

  • CPH2: pH, ORP and Temperature Sensor

  • CDO2: Dissolved Oxygen and Temperature Sensor

  • MSS2: Soil Moisture Sensor

  • MAS2: Outdoor Humidity Sensor

  • MRS2: Rain Sensor (Tipping bucket)

  • ECP2: Cathodic Protection Sensor

  • RS1-4/20: Single channel 4-20mA Interface

  • RS1-P: Single channel Pulse Interface

  • RS1-SDI: Single channel SDI-12 Interface

  • RS1-M: Single channel Modbus Interface

  • RS1-Pt: Single channel Pt100 Interface

  • RM1: Multi-channel Interface

  • RM4-4/20: Multi-channel Interface (4 x 4-20mA Sensor)

  • RM4-Pt: Multi-channel Interface (4 x Pt Sensor)

  • RM4-M: Multi-channel Interface (4 x Modbus)

  • RM4-mV: Multi-channel Interface (4 x mV Sensors)

  • RM4-Pulse: Multi-channel Interface (4 x Pulse Counter)

  • RM4-0/10: Multi-channel Interface (4 x 0-10V Sensor)

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