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GE HYDRAN M2 Transformer Gas Monitoring System

The Hydran M2-X is the next-generation product of the Hydran DGA monitoring solution series, which has been validated on-site. It can continuously monitor gas and humidity levels, alert users to potential faults, and minimize the risk of unexpected shutdowns. Based on GE's strong domain expertise, M2-X provides optimized, low maintenance, and longer sensor lifespan monitoring equipment.

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  The Hydran M2 Transformer Gas Monitoring System is an advanced equipment monitoring tool mainly used to monitor the gas concentration in transformers and other power equipment, in order to detect potential equipment failures in advance.

  HYDRAN M2 Other names:

  Transformer monitoring unit HYDRAN M2

  Hydran M2 moisture monitoring equipment

  Oil dissolved gas spare parts HYDRAN M2

  System Overview

  The Hydran M2 system is capable of real-time monitoring of gases in transformer or oil cooled cable systems, including hydrogen, acetylene, methane, ethane, and ethylene. The generation and accumulation of these gases may be signs of insulation material failure, therefore monitoring the system is crucial to ensure the safe operation of the equipment.

  The Hydran M2-X is the next-generation product of the Hydran DGA monitoring solution series, which has been validated on-site. It can continuously monitor gas and humidity levels, alert users to potential faults, and minimize the risk of unexpected shutdowns. Based on GE's strong domain expertise, M2-X provides optimized, low maintenance, and longer sensor lifespan monitoring equipment.

  Hydran M2-X also offers UL certified HazLoc version (part number: M2-X-HZ), which can be installed on transformers in Class I, Zone 2 hazardous locations

  Hydran sensors can be used as traditional Hydran composite gas (H2, CO, C2H2, C2H4) sensors or discrete hydrogen (H2) sensors. In addition, it can also track the moisture in the oil (read in% RH and ppm units) and is compatible with various transformer oil types (standard mineral insulation oil and newer natural and synthetic ester based liquids).

  Main functions

  Fault gas monitoring: Hydran M2 can monitor fault gases in transformers and power equipment, such as ethylene, acetylene, hydrogen, etc. These gases are usually caused by internal equipment failures.

  Real time monitoring: The system has a real-time monitoring function, which can continuously monitor changes in gas concentration, as well as parameters such as oil temperature and pressure. This helps to detect potential problems early and avoid equipment damage or accidents.

  Alarm and Notification: When the gas concentration exceeds the preset threshold, the Hydran M2 system will issue an alarm to notify operators or maintenance personnel to take action. This helps to reduce the potential risk of equipment damage or accidents.

  Data recording: The system usually has data recording and storage functions, which can record historical data of fault gas concentration for subsequent analysis and review. This helps track the health status and performance history of the device.

  Remote monitoring: Some Hydran M2 systems support remote monitoring function, allowing users to remotely access and monitor the status of devices through the network. This improves the flexibility and efficiency of monitoring.

  Self diagnosis: The system usually has a self diagnosis function, which can detect sensor faults or system problems and issue corresponding alarms. This helps to detect and solve problems in a timely manner, ensuring the normal operation of the system.

  Main advantages

  Small size, no moving parts, low maintenance cost

  Support Asset Performance Management (APM) software analysis to achieve fleet level deployment

  Condition monitoring of transformers using mineral insulating oil or ester based liquids (natural and synthetic)

  In addition to DGA monitoring, the Hydran M2-X can also monitor other parameters such as top oil temperature and load current by connecting sensors. By using IEEE based mathematical models, changes in transformer conditions can be further observed

  Provide key data for APM strategy to facilitate on-site intervention and maintenance activity planning

  The M2-X-HZ version is certified and suitable for hazardous locations where the combustible concentration of combustible gases, vapors, or liquids is unlikely to exist under normal working conditions, but there are still risks involved.

  Features

  Easy on-site upgrade to receive analog signals and monitor other key transformer parameters

  Calculate winding hotspots and other IEEE transformer models to enhance diagnosis of transformer conditions (depending on installed sensors)

  Easy to install on a single existing transformer valve, usually without power outage

  Integrated display screen and keyboard, simplifying local user interaction and data visualization

  The built-in humidity sensor can measure moisture in oil, which is crucial for identifying paper degradation and gasket leakage

  Highly acclaimed Perception with GE ™ Software compatibility, downloadable, trend analysis, and analysis of transformer health data

  Technical characteristics

  Multi sensor: The Hydran M2 may be equipped with multiple gas sensors to detect different types of faulty gases, providing comprehensive monitoring.

  High precision: The system has high-precision gas detection capability, which can accurately measure gas concentration and ensure the reliability of monitoring results.

  Durability: The Hydran M2 has a durable industrial grade design, suitable for use in harsh industrial environmental conditions such as transformers and power equipment.

  Easy to install: The system is easy to install and can be easily installed on devices without requiring extensive debugging and maintenance work.

  Application scenarios

  The Hydran M2 transformer gas monitoring system is commonly used in substations, power distribution equipment, transformers, and other power equipment that require insulation material integrity to be maintained. By real-time monitoring and analyzing changes in gas concentration, the system can detect signs of equipment failure in advance, providing important basis for equipment maintenance and upkeep.


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