Udemy - GE Aeroderivative Gas Turbine Woodward Fuel Valves and Dr...
GE Aeroderivative Gas Turbine Woodward Fuel Valves & Drivers
https://WebToolTip.com
Published 7/2026
Created by Omar Fatouh
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Beginner | Genre: eLearning | Language: English | Duration: 5 Lectures ( 3h 12m ) | Size: 1.6 GB
GE Gas turbines' Woodard Drivers and Actuators types, operation, configuration and applications
What you'll learn
⚡ Classify aeroderivative GT fuel valves by type, fuel, and turbine power rating across LM2500, LM6000, and LMS100 engine families.
⚡ Explain EM35 and LQ driver types, distinguish analog from digital variants, and interpret single and dual feedback configurations.
⚡ Describe how LVDT, RVDT, and Resolver sensors convert valve position to electrical signals and identify the correct type for each valve.
⚡ Explain DVP architecture, interpret its block diagram, identify all I/O types, and describe third-generation features including Zero Cut-Off.
⚡ Read specifications and connection diagrams for gas shutoff and metering valves including GSOV25, USOV, 3103, GS6, GS16, and 1907.
⚡ Read specifications for liquid and water valves including LSOV25, LQ3, LQ6, LQ25T, LQ Bypass, 3151A EML100, and LMS100 SAC valves.
⚡ . Identify gas fuel metering leg arrangements for LM2500 Base/Plus, LM2500 Plus G4, LM6000 PD, and LM6000 PF DLE configurations.
⚡ Use migration timelines and replacement tables to plan EM-to-DVP upgrades and apply service life and overhaul recommendations.
⚡ Configure CANopen drop, daisy-chain, dual CAN, and dual CAN with analog backup networks and set up the CO_DVP block in GAP.
⚡ Apply valve installation requirements, interpret plant wiring diagrams, and use service port procedures for commissioning and calibration.
Requirements
❗ Basic understanding of industrial process control concepts (what a setpoint, sensor, and actuator are) Familiarity with Windows-based PC operation — installing software, navigating file directories, using a network connection Some exposure to industrial instrumentation signals (4-20 mA, discrete inputs/outputs) is helpful but not required