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Metric details

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

Analysis computed

best: could be chance (0.37)

best: too few pilots (0.70)

#PilotOut-climbCore sLeaveRateKept%TopOut%Round
1Andy Schmidt77 (25 shared climbs)53 (15 climbs ≥ 60 s)1.1 (10 climbs ≥ 90 s)67 (8/12 circling bouts led to climbs)69 (mean on-course altitude 75% of band)0.18 (171 circles, 0% left)
2Donny Gardner62 (21 shared climbs)35 (20 climbs ≥ 60 s)1.1 (12 climbs ≥ 90 s)50 (5/10 circling bouts led to climbs)25 (mean on-course altitude 25% of band)0.17 (282 circles, 15% left)
3James Wynd50 (8 shared climbs)75 (14 climbs ≥ 60 s)0.2 (11 climbs ≥ 90 s)50 (8/16 circling bouts led to climbs)55 (mean on-course altitude 60% of band)0.33 (19 circles, 16% left)
4John Greenwood81 (5 shared climbs)88 (1 climb ≥ 60 s)1.0 (1 climb ≥ 90 s)67 (2/3 circling bouts led to climbs)37 (mean on-course altitude 33% of band)0.26 (44 circles, 0% left)
5Curtis Greenwood55 (15 shared climbs)33 (7 climbs ≥ 60 s)0.8 (6 climbs ≥ 90 s)0 (0/4 circling bouts led to climbs)0.11 (112 circles, 30% left)
6Connor Hansen23 (1 shared climb)38 (1 climb ≥ 60 s)0.12 (48 circles, 94% left)
7Brett Huggan40 (3 shared climbs)55 (2 climbs ≥ 60 s)0.4 (2 climbs ≥ 90 s) (3 circles, 67% left)
8Anthony Meechan71 (41 shared climbs)35 (6 climbs ≥ 60 s)1.2 (2 climbs ≥ 90 s)22 (mean on-course altitude 25% of band)0.21 (174 circles, 22% left)
9Amber Tsai40 (9 shared climbs)0.25 (17 circles, 35% left)
10Mark Tyminski22 (2 shared climbs) (5 circles, 20% 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
555
604
331

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: 19% left (875 circles).

best: too few pilots (0.90)

#PilotGlideSpdGlideL/DWide%Dolphin%
1Andy Schmidt40.7 (15 glides, 64 min gliding)1.02 (3 legs compared)57 (3 legs completed)10 (492 of 4813 m gained outside thermals)
2Donny Gardner38.6 (18 glides, 60 min gliding)1.03 (2 legs compared)89 (2 legs completed)27 (661 of 2485 m gained outside thermals)
3James Wynd38.6 (7 glides, 45 min gliding)0.93 (2 legs compared)121 (2 legs completed)6 (175 of 2990 m gained outside thermals)
4John Greenwood41.1 (2 glides, 9 min gliding)0.73 (1 leg compared)6 (1 leg completed)
5Curtis Greenwood0.58 (1 leg compared)21 (1 leg completed)
6Connor Hansen
7Brett Huggan
8Anthony Meechan45.3 (11 glides, 19 min gliding)55 (1 leg completed)24 (492 of 2072 m gained outside thermals)
9Amber Tsai
10Mark Tyminski

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 40.7 km/h · p90 43.6 km/h (5 pilots)

best: could be chance (0.61)

best: too few pilots (0.50)

best: too few pilots (0.80)

#PilotStartDlyTimeLostBehindSpare mFinalGl
1Andy Schmidt000.02315.83 (left last climb 10.7 km out at 2122 m)
2Donny Gardner075517.93 (left last climb 17.4 km out at 1262 m)
3James Wynd0159102.31 (left last climb 17.4 km out at 460 m)
4John Greenwood0021.11 (left last climb 14.6 km out at 980 m)
5Curtis Greenwood00
6Connor Hansen0
7Brett Huggan0
8Anthony Meechan0607
9Amber Tsai0
10Mark Tyminski0

How long after the gate opened the pilot started

Measured in seconds · lower is better

Every second between the opening of the gate and the crossing of the start line is a second lost for nothing. The value is the seconds from the start gate taken to the scored SSS crossing. On an elapsed-time task, the pilot’s own crossing is the reference, so the delay is 0 by definition. The start table adds the crossing altitude, and the distance behind the leading pilot who had already started.

Start execution

PilotDelayAlt mBand %Behind km
Andy Schmidt0:0018291262.3
Donny Gardner0:001492930.0
James Wynd0:001447890.0
John Greenwood0:001485922.2
Curtis Greenwood0:001448892.7
Connor Hansen0:00461-92.7
Brett Huggan0:00495-60.0
Anthony Meechan0:00851293.0
Amber Tsai0:00430-120.0
Mark Tyminski0:00337-220.0

Delay = gate taken → SSS crossing. Behind km = extra distance to the next turnpoint vs the furthest-along already-started pilot at the moment of this start (time grid).

Race time lost against the fastest pilots, leg by leg

Measured in seconds · lower is better

For each completed speed-section leg, we compare the leg time of the pilot with the mean of the top 10 pilots by rank who completed that leg. Only the losses count, and we add them together. The sum of the leg times is the race time, and the rank defines the reference, so this metric follows the result by construction. Read the waterfall table, which shows every leg against the task winner, for the diagnosis. Do not read the correlation as a finding.

-0:11SSS→TOWONG+18:38TOWONG→CORRYCORRY→ESS
Donny Gardner, over 2 compared legs: +18:27 overall. — marks a leg the pilot or the winner did not complete; the table below has every pilot.

Leg waterfall — leg time vs the task winner

PilotSSS→TOWONGTOWONG→CORRYCORRY→ESSTotal
Andy Schmidt+0:00+0:00+0:00+0:00
Donny Gardner-0:11+18:38+18:27
James Wynd+6:13-0:28+5:46
John Greenwood+0:03+0:03
Curtis Greenwood+1:37+1:37
Anthony Meechan+13:41+13:41

Each cell is the leg time of this pilot minus the leg time of the winner. A + value is slower than the winner, and a − value is faster. A — means that the pilot or the winner did not complete the leg.

The scalar metric instead adds the losses against the mean of the top 10 pilots who completed each leg. A leg flown faster than that reference contributes 0.

Race time behind the leader at ESS

Measured in minutes · lower is better

At each speed-section turnpoint, we compare the elapsed race time of the pilot, which is the reaching time minus their own start, with the fastest pilot to that turnpoint. The value is the minutes behind at ESS. It follows the final rank almost exactly, because this metric is the sanity check of the evaluation.

A line that stops early is a pilot who landed. The top 5 are coloured; the table below has every pilot.

Horserace — minutes behind the leader at each turnpoint

PilotELLIOTTOWONGCORRYKHANCOKHANCO
Andy Schmidt0.00.20.00.00.0
Donny Gardner0.00.018.5
James Wynd0.06.45.8
John Greenwood0.00.2
Curtis Greenwood0.01.8
Connor Hansen0.0
Brett Huggan0.0
Anthony Meechan0.013.9
Amber Tsai0.0
Mark Tyminski0.0

The elapsed race time, from the pilot’s own start, minus the fastest elapsed time to that turnpoint. A — means that the pilot did not reach the turnpoint.

Arriving at ESS with height to spare

Measured in metres · lower is better

Height still available at ESS that the pilot no longer needed. That altitude was available for more speed, and the pilot did not use it. The value is the altitude at ESS minus the altitude needed to glide to goal at the standard glide ratio of the sport, which is 5.0 for HG and 4.0 for PG (S7F §13.4.6). A large positive margin means the pilot arrived too high. A margin near zero means they flew the final glide with little height to spare.

ESS altitude margin over final glide: top-10 median 231 m (n=1).