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Metric details

Every pilot's reading on every behaviour, family by family.

Analysis computed

best: too few pilots (0.04)

best: too few pilots (0.90)

#PilotOut-climbCore sLeaveRateKept%TopOut%Round
1Donny Gardner71 (5 shared climbs)41 (13 climbs ≥ 60 s)1.2 (9 climbs ≥ 90 s)55 (6/11 circling bouts led to climbs)116 (mean on-course altitude 71% of band)0.20 (154 circles, 3% left)
2Curtis Greenwood38 (9 climbs ≥ 60 s)1.2 (7 climbs ≥ 90 s)57 (4/7 circling bouts led to climbs)55 (mean on-course altitude 43% of band)0.17 (131 circles, 67% left)
3Anthony Meechan62 (19 shared climbs)44 (14 climbs ≥ 60 s)1.2 (8 climbs ≥ 90 s)88 (14/16 circling bouts led to climbs)67 (mean on-course altitude 70% of band)0.19 (113 circles, 27% left)
4Andy Schmidt43 (1 climb ≥ 60 s)32 (mean on-course altitude 25% of band)0.13 (11 circles, 64% left)
5Brett Huggan
6Amber Tsai0.31 (12 circles, 0% left)
7Mark Tyminski65 (3 climbs ≥ 60 s)1.5 (3 climbs ≥ 90 s)67 (4/6 circling bouts led to climbs)27 (mean on-course altitude 25% of band)0.18 (77 circles, 3% left)

Share of lift turned in that was kept as a climb

Measured in percent · no expected direction

How selective the pilot is about the lift they stop for. Each period of circling of 30 s or more after the start counts as lift that the pilot sampled. If the period overlaps a detected thermal, the pilot kept that lift. If it does not, they turned a few circles and left it. The value is the percentage kept. A low value means they are selective. A high value means they keep almost every climb they turn in. There is no expected direction: selection wins on a strong day and wastes time on a weak one.

Acceptance by hour

HourMedian accepted (%)pilots
752
673
803
01

Median per-pilot acceptance %, bucketed by the hour (competition time zone).

How round and consistent the circles were

Measured in ratio · no expected direction

Whether the pilot flies clean, repeatable circles, or moves around the thermal. We fit each detected circle by least squares. The RMS fit error divided by the fitted radius measures how round the turn was. The value is the median over all of the circles of the pilot. A lower value means smoother and more consistent turns. There is no expected direction: a rough trace can be a pilot chasing a drifting or broken core rather than a pilot circling badly.

Turn direction across the field: 27% left (498 circles).

best: too few pilots (1.00)

#PilotGlideSpdGlideL/DWide%Dolphin%
1Donny Gardner40.9 (5 glides, 42 min gliding)1.17 (2 legs compared)42 (2 legs completed)4 (124 of 3028 m gained outside thermals)
2Curtis Greenwood41.4 (4 glides, 41 min gliding)1.11 (1 leg compared)71 (1 leg completed)9 (209 of 2298 m gained outside thermals)
3Anthony Meechan34.5 (25 glides, 57 min gliding)0.89 (1 leg compared)106 (1 leg completed)24 (1064 of 4398 m gained outside thermals)
4Andy Schmidt31.3 (2 glides, 11 min gliding)0.89 (1 leg compared)38 (1 leg completed)25 (52 of 210 m gained outside thermals)
5Brett Huggan
6Amber Tsai
7Mark Tyminski39.7 (5 glides, 26 min gliding)40 (121 of 299 m gained outside thermals)

Glide speed between climbs

Measured in kilometres per hour · higher is better

How fast the pilot moves down the course when they are on a glide. The value is the duration-weighted mean ground speed over every glide after the start, which is the glide distance divided by the glide time. A higher value means more ground covered in each minute between climbs.

Field glide speed: median 39.7 km/h · p90 41.2 km/h (5 pilots)

best: too few pilots (0.40)

best: too few pilots (0.68)

best: too few pilots (0.90)