Explain why the following problems occur in turbocharger nozzles, shrouds and blades, their effects on turbocharger operation and remedies: (16)
(a) Build-up of deposits
(b) Hot corrosion
(c) Erosion
Explain why the following problems occur in turbocharger nozzles, shrouds and blades, their effects on turbocharger operation and remedies: (16)
(a) Build-up of deposits
(b) Hot corrosion
(c) Erosion
Structured for DG Shipping MEO Class II examination scoring criteria.
Problems in Turbocharger Nozzles, Shrouds, and Blades
Residual fuels contain significant impurities such as carbon, ash, silica, and alumina. Additives in fuel oil can also contribute to specific fuel-related issues. Incomplete combustion, often caused by
high Conradson Carbon Residue (CCR) and ignition delay, leads to carbon deposits accumulating in the gas passages of the turbocharger.
Effects on Turbocharger Operation:
Remedies to Minimize Build-up:
Residual fuels contain sodium (Na) and vanadium (V) as impurities. At high temperatures, sodium and vanadium react (in a 1:3 ratio) to form sodium vanadate, which further oxidises to Vanadium Pentoxide (V₂O₅). Vanadium Pentoxide has a low melting point and is highly corrosive. These corrosive compounds deposit on the turbocharger and exhaust trunking, causing hot corrosion.
Effects on Turbocharger Operation:
Remedies to Minimize Hot Corrosion:
Turbocharger turbines operate at very high rotational speeds, making them susceptible to damage from high-impact particles present in exhaust gases. Erosive particles include unburnt fuel, ash, and abrasive contaminants like silica and alumina from residual fuel. Catfines (catalytic fines) present in untreated fuel oil are particularly abrasive.
Effects on Turbocharger Operation:
Remedies to Minimize Erosion: