Start{µ.toDate(target.data.boatClass.run.date,"UTC:dddd dd mmmm ' at ' HH:MM 'UTC'")}
Total distance{µ.toNumber(target.data.line.dtf," ¤1¤.")} nm
Position | {µ.toDate(target.boat.track.currentLocation.timecode*1000,"UTC:HH:MM")} | UTC |
---|---|---|
Heading | {target.boat.track.currentLocation.heading} | ° |
Speed | {µ.toNumber(target.boat.track.currentLocation.getSpeed()," ¤1¤.")} | kts |
Hour retained | {µ.toDate(target.data.line.date,"UTC:HH:MM")} | UTC | ||
Dist. to finish | {µ.toNumber(target.data.line.dtf," ¤1¤.")} | nm | ||
Dist. to first | +{µ.toNumber(target.data.line.dtl," ¤1¤.")} | nm | {µ.toNumber(Math.abs(target.data.line.dtlProgress)," ¤1¤.")} | nm |
Heading | {target.data.line.heading} | ° | ||
Speed | VMC | {µ.toNumber(target.data.line.speed," ¤1¤.")} | kts | {µ.toNumber(target.data.line.vmg," ¤1¤.")} | kts |
Over 4 hours | {µ.toNumber(target.data.line.dist4h/240*60," ¤1¤.")} | kts | {µ.toNumber(target.data.line.dist4h," ¤1¤.")} | nm |
overground | {µ.toNumber(target.data.line.dog4h/240*60," ¤1¤.")} | kts | {µ.toNumber(target.data.line.dog4h," ¤1¤.")} | nm |
Over 24 hours | {µ.toNumber(target.data.line.dist24h/1440*60," ¤1¤.")} | kts | {µ.toNumber(target.data.line.dist24h," ¤1¤.")} | nm |
overground | {µ.toNumber(target.data.line.dog24h/1440*60," ¤1¤.")} | kts | {µ.toNumber(target.data.line.dog24h," ¤1¤.")} | nm |
Arrival{µ.toDate(target.boat.arrival.date,"UTC:dd/mm/yyyy ' at ' HH:MM:ss 'UTC'")}
Race time{µ.toRacetime(target.boat.arrival.racetime, "[0]d [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
Penalty{µ.toRacetime(Math.abs(target.boat.arrival.penalty), "[0]j [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
Bonification{µ.toRacetime(Math.abs(target.boat.arrival.penalty), "[0]j [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
Official time{µ.toRacetime(target.boat.arrival.jury, "[0]j [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
Gap to first{µ.toRacetime(target.boat.arrival.gapToFirst, "[0]j [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
gap to previous{µ.toRacetime(target.boat.arrival.gapToPrevious, "[0]j [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
Over orthodromy{µ.toNumber(target.boat.arrival.orthoDistance, " ¤1¤.")} nm / {µ.toNumber(target.boat.arrival.orthoSpeed, " ¤1¤.")} kts
Overground{µ.toNumber(target.boat.arrival.overgroundDistance, " ¤1¤.")} nm / {µ.toNumber(target.boat.arrival.overgroundSpeed, " ¤1¤.")} kts
sur le temps intermédaire sélectionné