Daily means from the Beryl A AWS wave buoy for Nov 2024, including available wave height, period, direction, wind and sea temperature data.
Last observation shown
Data available: to
Monthly means for
Period Summary
Programmatically generated summary. Hog Says
716 wave-buoy observations covered all 30 days. Typical wave height was 8.5 ft (10th–90th percentile 3.3–18 ft); wave-period data were unavailable. Typical wind was 18.3 mph (10th–90th percentile 10.3–30 mph). All 2,147 checked values passed quality control. Across 11 comparable years, mean wave height was above the same-month mean of 9.4 ft.
Generating summary…
Generated only from the observations and comparisons shown on this page.
Typical Wave Height
8.5ft
Mean: 9.7ft
P10–P90: 3.3 — 18ft
Recorded extremes
2.6 — 23ft
Available for 715 of 716 hourly samples
Mean Wave Period
-secs
P10–P90: - — -secs
Available for 0 of 716 hourly samples
Mean Water Temperature
-°C
P10–P90: - — -°C
Available for 0 of 716 hourly samples
Typical Wind
N, 18.3mph
Mean: 19.8mph
P10–P90: 10.3 — 30mph
Recorded extremes
2.2 — 47.2mph
Circular concentration: 100%
Compared With Previous Novembers
Historical baseline from 7,272 observations across 11 years.
Wave Height
9.7ft
0.3ft above mean
Historical mean 9.4ft
Wave Period
–
Not enough comparable data
Historical mean 6.5s
Water Temperature
–
Not enough comparable data
Chart showing grouped wave observations for Beryl A AWS. Use the table on this page for a text version of the same measurements. To open hourly observations, use a linked day name in the table.
Sorry, there is no wave data for Fri, Nov 1, 2024
About Beryl A AWS wave buoy
Beryl A AWS (WMO 63110) is an automatic weather station on a privately operated oil platform in the northern North Sea. It is not a free-floating wave buoy. The station provides offshore meteorological observations for operations and forecasting, with available parameters determined by the platform's installed sensors.
Metrics are rows; days run left to right.
Beryl A AWS wave buoy daily means Nov 2024Last observation shown