Q8 (16 Marks) Emissions & Environmental 🔥 Repeated 8x in exams
MEP • Written Exam

Severe engine vibration has recently become evident when the main engine for which you are responsible operates within a certain speed range.

(a) State, with reasons, the possible causes of such vibration (6).

(b) State the consequences of operating the engine under such vibratory conditions (5).

(c) Describe the procedure you, as Second Engineer, would implement in order to investigate and rectify the problem (5).

Appeared In: Apr 2026Nov 2023Aug 2023Dec 2019Jun 2019Nov 2018Jul 2018Mar 2018

Verified Model Answer (Text Solution)

Structured for DG Shipping MEO Class II examination scoring criteria.

Exam Ready
(a) Severe engine vibration within a specific speed range can be caused by either internal or external factors.

Internal Troubles:
  • Improper fuel injection timing, misfire, or power imbalance between cylinders can cause uneven combustion forces leading to vibrations.
  • Problems with the fuel pump, fuel injectors, or fuel lines can disrupt fuel delivery, resulting in inconsistent combustion and vibration.
  • Increased friction due to worn bearings and running gears.
  • Excessive piston temperature can lead to seizure, causing uneven running and vibration
  • Loose Tie Bolts/Holding Down Bolts can allow the engine to move excessively, causing vibrations
  • Malfunctioning Vibration Dampers or Moment Compensators as these components are designed to reduce vibrations; if they fail, the engine may vibrate more

External Troubles:
  • Damage to the propeller, cavitation, or unbalanced blades can cause vibrations that transmit back through the shafting.
  • Failure of lubrication in the Stern Tube/Intermediate Shaft Bearing can cause increased friction and vibration.
  • Loose or cracked coupling bolts can allow misalignment between engine and propeller shaft, leading to vibrations.
  • Misalignment in the shaft can cause imbalanced rotational forces, leading to vibration.
  • If the thrust bearing fails, it can no longer support axial loads properly, leading to vibrations.
  • Improper ballasting can affect the ship's trim and stability, potentially leading to hull vibration
  • Excessive fouling on the hull can create resistance and cause vibrations.

(b) Consequences of Operating with Vibration:
  • Sustained vibrations can cause fatigue failure of engine components, leading to the failure of engine parts such as bearings, gears, or pistons.
  • Severe vibrations can impact engine performance, reducing power output and resulting in higher fuel consumption.
  • Vibration can cause cracks or other damage to the engine structure, as well as to the ship's hull or other components.
  • Vibration can affect not just the engine but also other machinery connected to or near it, leading to widespread damage.
  • Severe vibrations can cause discomfort or even injury to the crew, affecting their ability to perform their duties effectively.

Part (c)

Investigation and Rectification Procedure:

As the Second Engineer, the following procedure would be implemented:

  • Check Engine Performance to identify any deviations from normal operation.
  • Measure crankshaft deflection to assess for any excessive movement or misalignment.
  • Inspect bearing clearances for wear or damage.
  • Check the tightness of all Tie Bolts and Holding Down Bolts
  • Carry out a thorough visual inspection of all suspected components, including pistons, liners, bearings, gears, couplings, and shafting.

Rectification:

Internal Engine Troubles:

  • Inspect the drive gear, replacing worn components as required.
  • Inspect the vibration dampers and moment compensators to ensure they are functioning correctly.
  • Ensure the proper functioning of the lubrication oil (LO) and fuel oil (FO) systems, including the fuel pumps and injectors.
  • Inspect and replace worn or damaged components such as pistons, liners, and connecting rods.
External Troubles:
  • Verify the alignment of the shaft to ensure it is properly aligned with the engine and propeller.
  • Check and tighten the coupling bolts as necessary to prevent misalignment or movement.
  • Determine the location of maximum vibration and assess if it coincides with a loss of speed or increased fuel consumption, suggesting a propeller issue.
  • Ensure the lubrication system for the stern tube and intermediate shaft bearings is functioning properly and address any abnormalities.


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