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DGA Interpretation Guide

Dissolved gas analysis results must be interpreted correctly to identify fault types and determine appropriate actions. This guide covers the four primary interpretation methods used by the industry, all of which are supported by VA-TEK DGA monitors and software.

1. Key Gas Method

The simplest approach. Certain gases are strongly associated with specific fault types:

Key Gas Indicated Fault
Hydrogen (H2) Partial discharge (corona)
Acetylene (C2H2) Arcing / high-energy discharge
Ethylene (C2H4) Thermal fault > 500 C in oil
Ethane (C2H6) Thermal fault < 500 C in oil
Methane (CH4) Low-temperature thermal fault
Carbon Monoxide (CO) Cellulose (paper) overheating
Carbon Dioxide (CO2) Cellulose aging / overheating

2. Duval Triangle Method

The Duval Triangle (IEC 60599) uses the relative proportions of three hydrocarbon gases — CH4, C2H4, and C2H2 — plotted on a triangular diagram to classify faults into six zones: PD (partial discharge), T1 (thermal < 300 C), T2 (thermal 300-700 C), T3 (thermal > 700 C), D1 (low-energy discharge), and D2 (high-energy discharge). This method is widely used because it provides clear, unambiguous fault zones.

3. Rogers Ratio Method

The Rogers Ratio method calculates three gas ratios (CH4/H2, C2H2/C2H4, C2H4/C2H6) and compares them against defined ranges to classify faults. While useful, it can produce “no-match” results in some cases where the gas pattern does not fit neatly into the defined ratio ranges. Our software automatically flags no-match cases for further investigation.

4. IEC 60599 / IEEE C57.104 Standards

These standards define concentration limits for individual gases and Total Dissolved Combustible Gas (TDCG), categorized into four condition levels:

Condition Description Recommended Action
Condition 1 Normal operation Continue routine monitoring
Condition 2 Gas levels above normal Increase sampling frequency; investigate load history
Condition 3 High gas levels — probable fault Immediate investigation; consider outage
Condition 4 Critical gas levels — active fault Remove from service; perform internal inspection

Gassing Rate Analysis

Beyond absolute concentrations, the rate of gas increase (ppm/day or ppm/year) is often more indicative of fault severity than the concentration itself. A transformer with stable, slowly rising gas levels may be monitored safely for years, while one with a rapidly increasing trend requires urgent attention even if absolute levels are moderate. VA-TEK software automatically calculates gassing rates and provides visual trend charts.