Vessel Drags Anchor, Hits Two Other Vessels

Anchor watch requires a crew member’s undivided attention. Sea states are always changing and once a ship starts dragging its anchor, dangerous situations can arise rapidly. In a recent Mars Report, a ship dragging its anchors did not take one, but two other ships with it.

A transcript of the incident:

A vessel was in ballast and at anchorage at night, awaiting better weather before taking fuel and continuing the voyage. Five shackles of cable had been used to anchor the vessel and the OOW had set the variable range markers on the radar display to a head of land to the east and to vessel “A”, which was anchored three cables to the northwest.

The OOW remained on the bridge completing chart corrections and other tasks and fixing the vessel’s position on a paper chart every thirty minutes. The helmsman was sent below to do fire and safety rounds. The vessel began to drag anchor in a north-westerly direction, but the OOW only noticed this nine minutes later, when he saw on the radar that the distance to vessel A had decreased. He called the master and ordered the engine as well as instructing the rating on duty to go forward and check the anchor cable.

Soon, the ship’s speed had increased to 0.9 kt, dragging in the direction of vessel A. The OOW on vessel A now contacted the first vessel to ask them their intentions. Vessel A’s OOW ordered main engines and also alerted the master to the developing situation. Before any other actions could be undertaken the stern of the vessel dragging anchor collided with vessel A’s bow. By the time the main engine was available, the master was unable to manoeuvre clear because his vessel’s stern was fouled on vessel A’s anchor cable.

The two entangled vessels were now set by the wind and tidal stream, at over 3 kt, towards vessel “B”, which was anchored two cables to the north-west. Vessel B’s OOW had been monitoring the radio exchanges and had called the vessel’s master and crew. Although the master of vessel B soon engaged astern propulsion, this did not prevent contact with the oncoming vessels. All three vessels began to set to the northwest.

Report Findings

The official report’s conclusions included, among others:

  • The first vessel dragged anchor because insufficient anchor cable had been deployed for the tidal range and environmental conditions.
  • The vessel’s OOW did not immediately recognise the ship was dragging its anchor because the anchor position monitoring interval was not appropriate.
  • The vessel was unable to manoeuvre quickly because its engines were not in immediate readiness.

Lessons Learned

  • Anchor watch requires undivided attention.
  • Several methods can be used to calculate the necessary scope of cable needed when anchoring including (where Wd is water depth in metres): number of shackles of cable = 1.5√ (Wd), or length of cable in metres = 6 to 10 × (Wd).
  • Water depth to draught ratio (Wd/D) is an important factor to consider when anchoring in strong currents. Smaller ratios will cause greater forces to act on the hull; this may cause the vessel to drag anchor at low water even though all was fine at high water.
  • Factors such as the strength of the wind and tidal stream, tidal range, nature of the seabed, sea conditions, vessel loading, the extent of safe water available and duration of stay must also be considered when anchoring.

Picture: Vessel drags, hits vessel A, then drags both vessels to collide with vessel B.

Mars Reports

This is one of the May Mars Reports, originally published as Mars 201943, that are part of Report Number 321. A selection of this Report has also been published in SWZ|Maritime’s July/August issue.

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More reports are needed to keep the scheme interesting and informative. All reports are read only by the Mars coordinator and are treated in the strictest confidence. To submit a report, please use the Mars report form and send it to mars@nautinst.org.

Author: Mariska Buitendijk

Mariska Buitendijk is one of SWZ|Maritime's journalists as well as the magazine's copy editor.