A legacy mechanical diesel engine used in Croatia showed a steadily rising engine-oil level.
The lubricant also developed signs consistent with fuel dilution.
Injector leakage was investigated, and the mechanical lift-pump diaphragm did not show the expected evidence of fuel passing into the engine.
The diagnostic question then became:
What other component contains diesel fuel and also has a mechanical interface with the engine?
Attention shifted to the injection-pump drive-shaft seal.
Depending on engine and pump design, the injection pump may be driven directly from:
The pump contains diesel fuel internally, while the drive shaft connects toward an engine timing or lubricated area.
A seal maintains separation between these environments.
The possible leak path is:
Fuel inside injection pump → Drive-shaft seal → Engine/timing side → Crankcase oil
A shaft-seal leak may not create an immediate external fuel leak.
Instead, small amounts of diesel can migrate into the engine over many hours of operation.
The operator may notice:
This gradual trend makes maintenance records especially useful.
The workshop considered common alternatives, including:
The injection-pump shaft seal became more relevant only after the evidence did not support those paths.
Inspection included:
Excessive shaft movement can also damage a seal, so replacing the seal alone may not correct the underlying cause.
Fuel dilution can reduce oil viscosity and therefore affect:
For that reason, a rising oil level should not be treated as harmless.
This Croatian case highlights the importance of cross-system leak paths.
When engine oil is gaining volume, technicians should identify where another fluid can physically enter the lubrication system rather than assuming the injectors are always responsible.
On pump designs where the fuel side and engine drive side are separated by a shaft seal, seal failure can create such a path.
No. Multiple fuel-dilution paths are possible and should be separated diagnostically.