πNOTES ON Chinese GP:
-First race in 5 years! First time with 18" rimsπ
-First sprint of 2024
-Similar to Bahrain, where Aston struggled and Merc edged McL. That was 4 races ago, though!
-2 stops are likely
-1.4km full-throttle sectionπ
πΈ @pirellisport
Your prediction? π€
-First race in 5 years! First time with 18" rimsπ
-First sprint of 2024
-Similar to Bahrain, where Aston struggled and Merc edged McL. That was 4 races ago, though!
-2 stops are likely
-1.4km full-throttle sectionπ
πΈ @pirellisport
Your prediction? π€
β€3π3π€2π2π1
The Chinese GP features a 1.4km full-throttle section!β‘οΈTop speed: crucial for lap time and to attack/defendπ‘
Image: top speed achieved in the last qualifying, during each team's best lap.
π’Aston has solved their drag issues, contrary to β«οΈMercedes and π McL.
π΄Ferrari will likely run the same rear wing used in all the races so far.
Image: top speed achieved in the last qualifying, during each team's best lap.
π’Aston has solved their drag issues, contrary to β«οΈMercedes and π McL.
π΄Ferrari will likely run the same rear wing used in all the races so far.
π5π2
Formula Data Analysis
Chinese GP: Medium-high load wings β
Downforce CRUCIAL from T1 to T13. βThe 1.4km full-throttle section will punish excessive drag, especially if caused by the (fixed) lower plane! π΅RBR maximizes DRS effectiveness through an unloaded lower plane + very loadedβ¦
Significant differences among the teams: Mercedes. Ferrari, Alpine and Williams have a less loaded wing compared to Aston Martin, for example.
Compared to RBR, McL has a less loaded upper plane and more loaded lower plane, which should make their DRS less powerful.
Compared to RBR, McL has a less loaded upper plane and more loaded lower plane, which should make their DRS less powerful.
π7π€1
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Visualizing the effect of flexible wings!π
(Collab with @justf1car π€)
Downforce and drag are proportional to the speed squared: they are very small at low speeds, and become huge at high speeds.
This is a problem: cars have less grip at lower speeds (when they need it the most) and face a lot of air resistance at high speeds (on the straights)!
The clever F1 engineers invented flexible wings to get a better compromise:
-As much downforce as possible at lower speedsβ‘οΈCornering improves;
-Reduced drag at high-speed thanks to the flexion of the wingβ‘οΈTop speed improves!
(Collab with @justf1car π€)
Downforce and drag are proportional to the speed squared: they are very small at low speeds, and become huge at high speeds.
This is a problem: cars have less grip at lower speeds (when they need it the most) and face a lot of air resistance at high speeds (on the straights)!
The clever F1 engineers invented flexible wings to get a better compromise:
-As much downforce as possible at lower speedsβ‘οΈCornering improves;
-Reduced drag at high-speed thanks to the flexion of the wingβ‘οΈTop speed improves!
β€6β‘2π2π₯1
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πNotes on Chinese GP!
π΅VER won and made the difference: PER couldnβt gain over NOR on the last stint
π NOR was MVP: he needs a win now
π΄Solid race by LEC; Ferrari limited the damage waiting for the upgrades
β«οΈGood recovery by HAM
βͺοΈHUL in the points!
Whatβs YOUR take?π€
π΅VER won and made the difference: PER couldnβt gain over NOR on the last stint
π NOR was MVP: he needs a win now
π΄Solid race by LEC; Ferrari limited the damage waiting for the upgrades
β«οΈGood recovery by HAM
βͺοΈHUL in the points!
Whatβs YOUR take?π€
π11β€2π€2
AVERAGE TIME IN PITS - Chinese GP
π₯π‘RBR was fastest: flawless execution by
@F1mech and his crew!
π₯π McL: +0.06s slower
π₯π΄Ferrari: +0.10s
π’Sauber desperately needs the updated wheel nuts to fix their troublesome pit stops.
Astonβs average was high due to STR.
π₯π‘RBR was fastest: flawless execution by
@F1mech and his crew!
π₯π McL: +0.06s slower
π₯π΄Ferrari: +0.10s
π’Sauber desperately needs the updated wheel nuts to fix their troublesome pit stops.
Astonβs average was high due to STR.
π₯5π2
TYRE DEG
(PIA excluded due to the damaged floor)
Aston: 4 tyre sets
RBR/Mercedes: 3 sets
NOR: 2 sets (M-H)
Ferrari: 2 sets
π NOR: excellent pace on the Hards (same as π΅RBR); very good on Medium with low deg.
π΄Ferrari slower than NOR on both compounds.
Merc lacked pace on all compounds.
(PIA excluded due to the damaged floor)
Aston: 4 tyre sets
RBR/Mercedes: 3 sets
NOR: 2 sets (M-H)
Ferrari: 2 sets
π NOR: excellent pace on the Hards (same as π΅RBR); very good on Medium with low deg.
π΄Ferrari slower than NOR on both compounds.
Merc lacked pace on all compounds.
β€9π3π₯1π€1π€£1
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πPositions gained in the Chinese GP
πHamilton gained the most (P18 to P9).
πBottas lost the most (P10 to P20 due to his retirement).
Ferrari recovered well after a disappointing qualifying (4 places gained in total).
The opposite for Aston: ALO and STR lost 4 places each.
Via @JMP_software
πHamilton gained the most (P18 to P9).
πBottas lost the most (P10 to P20 due to his retirement).
Ferrari recovered well after a disappointing qualifying (4 places gained in total).
The opposite for Aston: ALO and STR lost 4 places each.
Via @JMP_software
π2
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