Maritime Questions › Radar Watchkeeping
Your vessel is on course 090° at 12 knots. Radar shows a vessel on 085° at 6nm. After 6 minutes, that vessel is bearing 082° at 4nm. Describe what the radar plot tells you and what action, if any, COLREGs requires.
A. Radar plot analysis: in 6 minutes the vessel has moved from 085°/6nm to 082°/4nm — bearing has changed only 3° to port while range decreased 2nm. Plotting the relative motion vector: the contact is approaching from ahead and slightly to port, and the bearing rate (0.5° per minute) is very slow. A slow but steady bearing change with rapidly decreasing range indicates this vessel is approximately on a head-on or crossing course with a slight crossing geometry. CPA projection: bearing 082° (nearly dead ahead), range decreasing rapidly — the CPA without action could be 0nm (collision). COLREGs Rule 16 and 17 (if crossing) or Rule 14 (if head-on) apply. Both vessels should alter to starboard. If the bearing has moved from 085° to 082° (moved left), this may indicate a vessel crossing from starboard — own vessel would be give-way under Rule 15.
B. The contact is moving to port (bearing decreasing), so it will pass safely clear ahead. No action is required.
C. A 3° bearing change over 6 minutes means the contact is overtaking. Rule 13 (overtaking) applies — the contact must keep clear.
D. A bearing change of any amount indicates the vessel will pass clear. COLREGs action is only required when bearing is absolutely constant.
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A. ARPA data must be treated with caution: (1) Acquisition time — ARPA requires a minimum track period (typically 1-3 minutes for manual acquisition, longer for auto-acquisition) before vector data is reliable; at 3 minutes the data is just stabilising; (2) course and speed accuracy depends on own-ship course and speed input — gyro and log errors directly transfer into ARPA target data; (3) target swap — if targets are close together, ARPA may swap tracking from one target to another without warning, producing false vector data; (4) the true vector shown assumes the target maintains its current course and speed — any manoeuvre by the target will require time for ARPA to recalculate; (5) CPA/TCPA is a mathematical projection, not a guarantee. Maintain visual watch and sound signals under Rule 19.
B. ARPA data is accurate from the moment of acquisition. A 3-minute track is sufficient for all collision avoidance decisions under COLREGs.
C. ARPA CPA of 0.2nm at 22 minutes requires immediate action now regardless of ARPA reliability concerns — take avoiding action without further analysis.
D. ARPA data is only unreliable in rain clutter. In open sea with clear radar returns, ARPA data can be fully trusted after 1 minute of acquisition.
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A. Radar performance checks: (1) Performance monitor — use the built-in performance monitor (plume test) to verify the radar transmitter and receiver are working to spec; (2) Tune the radar using Auto-tune or Manual-tune until target returns are sharp and well-defined; (3) Check gain — set gain to just below the noise level, then increase until light speckle appears across the screen, then reduce slightly; (4) Sea clutter (STC/GAIN) — adjust to suppress sea return in the immediate area without suppressing real targets; (5) Rain clutter (FTC) — apply only in precipitation; (6) Check range scales — verify the scale matches the situation (approach into confined waters: 3-6nm; open ocean: 12-24nm); (7) Verify heading marker alignment with gyro; (8) Note radar blind sectors on this vessel (from funnel/mast positions — listed on the bridge radar display).
B. Radar tuning is set by the captain at the start of each voyage and does not need to be checked at each watch handover.
C. The performance monitor test takes 10 minutes and is only required weekly. During routine watch handover, check only that the radar screen is lit and a heading marker is visible.
D. Radar gain should be set to maximum to ensure all targets are visible. Sea clutter suppression should never be used as it may suppress real targets.
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