Maritime QuestionsDP — Gyro Jump

The vessel is now at safe standoff with operations suspended. The client project manager calls and asks for the reason — the vessel\'s AIS has shown no movement for 45 minutes and the schedule impact is significant. The master is drafting the communication. What is the correct approach to communicating the cause of the suspension to the client?

A. Give an accurate, factual account: two gyrocompasses failed, a third showed divergence, a common cause failure in the UPS system has been identified, operations were suspended as a precautionary safety measure, and the vessel is currently diagnosing and rectifying the faults before returning to work. Accuracy is legally required and preserves trust
B. Tell the client the vessel experienced 'instrument faults' without specifying the nature or the safety implications
C. Describe it as a 'routine DP system check' to avoid alarm and preserve the commercial relationship
D. Decline to provide information until the company's office has been consulted — all external communications must go through the office
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EMERGENCY SCENARIO — DP2 CONSTRUCTION VESSEL NEAR DRILLING RIG Vessel: DP2 offshore construction vessel. Location: 120m from a mobile drilling rig, conducting pre-lay survey. Riser and anchor spread deployed from rig. Three gyrocompasses active. Two DGNSS units and one Fanbeam active (Fanbeam tracking reflector on rig). Sea state: 1.5m, wind 18 knots from the north. DPO on watch, approaching end of 10-hour watch. Master in cabin. --- POINT 1 OF 10 --- Gyro 2 suddenly reads 201° while Gyros 1 and 3 both read 187°. The DP system shows no alarm — its weighted average heading is 191.7°. The DPO notices the discrepancy on the heading display. What is the correct immediate action?
A. Wait for the DP system to trigger a heading alarm before intervening
B. Manually exclude Gyro 2 from the DP heading input immediately — two gyros agree at 187°, Gyro 2 has clearly jumped. A 4.7° heading error introduced by the weighted average will cause the DP system to apply incorrect thruster forces and may drive the vessel off station toward the rig
C. Switch to manual heading control and use the compass repeater as the primary heading source
D. Accept the 191.7° average — three-gyro systems are designed to manage this type of discrepancy automatically
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Gyro 2 has been excluded. Gyros 1 and 3 are now the only heading inputs. The chief engineer is investigating Gyro 2 and expects a 45-minute assessment. The DP system is now running on two gyros. Position is stable. With only two gyros now available, what additional operational consideration must the DPO apply?
A. Two gyros are sufficient — there is no additional risk compared to three-gyro operation
B. Reduce the DP heading alert band to 0.5° to catch any divergence earlier
C. With only two gyros, if Gyros 1 and 3 diverge, there is no way to determine which is correct. The DPO must increase monitoring frequency for heading discrepancy, inform the master of the degraded heading reference status, consider whether the ASOG requires a minimum of three gyros for this operation, and be aware that any future heading divergence between the two remaining gyros will require an immediate decision about whether to continue operations
D. Two gyros are the normal DP2 minimum — no additional consideration is needed
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