π‘After just 12 months, Mercedes looks unrecognisable:
-Sidepods: 'zero-pod'β‘οΈuniquely shaped inlets
-Rear suspension: pull-rodβ‘οΈpush-rod
-Radically different front upper wishbone orientation
The front wing is unique, and I love the livery!
Impressive! π₯
-Sidepods: 'zero-pod'β‘οΈuniquely shaped inlets
-Rear suspension: pull-rodβ‘οΈpush-rod
-Radically different front upper wishbone orientation
The front wing is unique, and I love the livery!
Impressive! π₯
π8π1
In 2023, Lewis Hamilton was critical about how much forward the Mercedes' cockpit was located...
The team seems to have followed his input for the W15π‘
The cockpit seems to have moved backwards (by 100mm, according to @Giorgio_Piola).
Just an optical effect?π€
The team seems to have followed his input for the W15π‘
The cockpit seems to have moved backwards (by 100mm, according to @Giorgio_Piola).
Just an optical effect?π€
π8β€3
Is your dream to work in Motorsport?π
In this interactive workshop, former team principal Rex Keen will show you the available career paths... and how to get started!π π‘
(Organized by United Motorsport Academy)
You can sign up hereπ
https://unitedmotorsportsacademy.graphy.com/courses/Motorsport-Engineering-Workshop-RexKeen-65b7266ee4b0e826f8b7f7e0?affCode=NBUQBO
In this interactive workshop, former team principal Rex Keen will show you the available career paths... and how to get started!π π‘
(Organized by United Motorsport Academy)
You can sign up hereπ
https://unitedmotorsportsacademy.graphy.com/courses/Motorsport-Engineering-Workshop-RexKeen-65b7266ee4b0e826f8b7f7e0?affCode=NBUQBO
β€1π1
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π₯1
SF24 vs RB20π
Notable differencesπ
π’Push vs Pull-Rod
Carbon fibre's tensile strength is higher: look at how thin RedBull's rod is!β‘οΈLower mass and airflow disruption
π£Different wishbone inclination
βͺοΈUnderbite vs Overbite
π Different upper-plane load distribution
Not to mention each team's signature difference: smaller triangular vs larger circular airscope
Notable differencesπ
π’Push vs Pull-Rod
Carbon fibre's tensile strength is higher: look at how thin RedBull's rod is!β‘οΈLower mass and airflow disruption
π£Different wishbone inclination
βͺοΈUnderbite vs Overbite
π Different upper-plane load distribution
Not to mention each team's signature difference: smaller triangular vs larger circular airscope
β€8π6π’3π¨1
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π₯1
Not even one day into testing, and we already have the first photo of a 2024 floor!π‘
Different angles, but the rear diffuser ramp seems quite similar to last year
[πΈ: Motorsport Images]
Bottom photo by @jiglesiash11
Different angles, but the rear diffuser ramp seems quite similar to last year
[πΈ: Motorsport Images]
Bottom photo by @jiglesiash11
β€2π2
TOP SPEEDS - DAY 1
(On each car's fastest lap)
Top speeds are very low compared to last qualiβ‘οΈTeams way down on power
βͺοΈHaas' top speed dropped the most (-18km/h)
π΅VCARB's (lol) the least (-6km/h), but RedBull is close, too (-8)... higher PU mode than most or improved drag?π€
(On each car's fastest lap)
Top speeds are very low compared to last qualiβ‘οΈTeams way down on power
βͺοΈHaas' top speed dropped the most (-18km/h)
π΅VCARB's (lol) the least (-6km/h), but RedBull is close, too (-8)... higher PU mode than most or improved drag?π€
π2π2π€1
Formula Data Analysis
TOP SPEEDS - DAY 1 (On each car's fastest lap) Top speeds are very low compared to last qualiβ‘οΈTeams way down on power βͺοΈHaas' top speed dropped the most (-18km/h) π΅VCARB's (lol) the least (-6km/h), but RedBull is close, too (-8)... higher PU mode than mostβ¦
3 teams have already gone quicker than in 2023 quali!π‘
LAPTIME CHANGE (s)
McL -0.40β
Ferrari -0.08β
VCARB -0.04β
Merc +0.73
Sauber +0.78
RedBull +0.97
Alpine +1.08
Williams +1.12
Aston +1.69
Haas +5.80 (Tyre testing)
SAI was quickest (C4 tyres, softer than quali's C3)
Consider that the early-2023 McLaren had terrible performance, which explains part of the improvement. Same for the AlphaTauri
Ferrari instead was already a competitive car (on a single lap)
LAPTIME CHANGE (s)
McL -0.40β
Ferrari -0.08β
VCARB -0.04β
Merc +0.73
Sauber +0.78
RedBull +0.97
Alpine +1.08
Williams +1.12
Aston +1.69
Haas +5.80 (Tyre testing)
SAI was quickest (C4 tyres, softer than quali's C3)
Consider that the early-2023 McLaren had terrible performance, which explains part of the improvement. Same for the AlphaTauri
Ferrari instead was already a competitive car (on a single lap)
π5π₯1
Ferrari has cooked: in the race simulation, Sainz was 0.59s/lap quicker (on average) than Verstappen in last year's race!π³
RACE PACE
SF24: 96.87s
RB19: 97.46s (+0.59s)
SF23: 98.33s (+1.46s βΌοΈ)
And his top speed was still 9km/h down vs last raceβ‘οΈTurned-down PUπ₯
The team seem to have solved their tyre wear issues, probably to a higher degree than we expected
In the last stint (on Hards) the laptimes improved throughout the stint: the tyre wear didn't even offset the decreasing fuel load!
So far, Ferrari IMHO looks clearly 2nd quickest
RACE PACE
SF24: 96.87s
RB19: 97.46s (+0.59s)
SF23: 98.33s (+1.46s βΌοΈ)
And his top speed was still 9km/h down vs last raceβ‘οΈTurned-down PUπ₯
The team seem to have solved their tyre wear issues, probably to a higher degree than we expected
In the last stint (on Hards) the laptimes improved throughout the stint: the tyre wear didn't even offset the decreasing fuel load!
So far, Ferrari IMHO looks clearly 2nd quickest
π€―8π₯7π4π₯°1π1π1
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πUse this linkπ
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Use this CHAT do discuss the contents posted in the main CHANNEL π¬
π₯1
TOP SPEEDS - DAY 2
(During the fastest laps)
Red Bull 320km/h (-3 vs quali)
Williams 317
Alpine 315
Ferrari 315 (-10 vs qualiβΌοΈ)
Aston 315
Merc 314
VCARB 312
McL 311
Haas 302β¬ οΈWorking on tyre deg
π‘Ferrari on a lower PU mode
πRB20 might have even less drag than the RB19!
(During the fastest laps)
Red Bull 320km/h (-3 vs quali)
Williams 317
Alpine 315
Ferrari 315 (-10 vs qualiβΌοΈ)
Aston 315
Merc 314
VCARB 312
McL 311
Haas 302β¬ οΈWorking on tyre deg
π‘Ferrari on a lower PU mode
πRB20 might have even less drag than the RB19!
β€6π₯2π1