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FORMULA DATA ANALYSIS (Formula 1 Tech/Telemetry) (@fdataanalysis) on...
📈| Learn To Read F1 Telemetry Data 📊
⚙️| Mech Engineer, PhD in Vehicle Dynamics 🏎️
📖| FOLLOW to Learn, and click the link for more! ↙️. 20K Followers.
⚙️| Mech Engineer, PhD in Vehicle Dynamics 🏎️
📖| FOLLOW to Learn, and click the link for more! ↙️. 20K Followers.
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MCLAREN TEAMMATES BATTLE⚔️
Rookie Piastri was no match for the experienced Norris:
Norris:
-Got over twice his points (205 vs 97)
-Qualified ahead in 15 races
-Finished ahead in 17 races
-Got 7 podiums: just 2 off Perez in the RB19!
Both got P2 in qualifying and races.
Do you think the gap will close significantly next year?🤔
Rookie Piastri was no match for the experienced Norris:
Norris:
-Got over twice his points (205 vs 97)
-Qualified ahead in 15 races
-Finished ahead in 17 races
-Got 7 podiums: just 2 off Perez in the RB19!
Both got P2 in qualifying and races.
Do you think the gap will close significantly next year?🤔
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Formula Data Analysis
MCLAREN TEAMMATES BATTLE⚔️ Rookie Piastri was no match for the experienced Norris: Norris: -Got over twice his points (205 vs 97) -Qualified ahead in 15 races -Finished ahead in 17 races -Got 7 podiums: just 2 off Perez in the RB19! Both got P2 in qualifying…
In general Norris received the updates sooner than Piastri, even though for most of the season they were driving identical cars.
Norris' outperformance is clear, even though IMHO Piastri did a nice debut.
Norris' outperformance is clear, even though IMHO Piastri did a nice debut.
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VIEW IN TELEGRAM
Every F1 Team DRS effectiveness compared 🏎🔥
🔵RB: Most effective (18.7% drag reduction)
🟢Aston: Least effective (only 13.2%)
Which car surprised you the most?🤔
(📊Data by me, 🎞Video by
justf1car)
🔵RB: Most effective (18.7% drag reduction)
🟢Aston: Least effective (only 13.2%)
Which car surprised you the most?🤔
(📊Data by me, 🎞Video by
justf1car)
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Formula Data Analysis
FIA banned the 'Inerter' (also called 'J-Damper') in 2022... but WHAT is that? And HOW does it work?🤔 I will give you the answers in this thread... and explain how it could have mitigated porpoising!👀 👇Read on, and get ready to learn!👇
Car suspensions have two components:
-Spring: applies a force proportional to its deflection➡️'Transmits' the energy of the bump to the car body
-Damper: force proportional to HOW QUICKLY it deflects➡️Dissipates such energy
F1 cars also had the Inerter... but what is it for?
The inerter applies a force proportional to the acceleration of its two extremities
So:
Suspension Deflection➡️Spring Force
Deflection speed➡️Damper Force
Deflection acceleration➡️Inerter Force
Invented in 2002 by a professor, F1 teams quickly adapted it to their needs!
-Spring: applies a force proportional to its deflection➡️'Transmits' the energy of the bump to the car body
-Damper: force proportional to HOW QUICKLY it deflects➡️Dissipates such energy
F1 cars also had the Inerter... but what is it for?
The inerter applies a force proportional to the acceleration of its two extremities
So:
Suspension Deflection➡️Spring Force
Deflection speed➡️Damper Force
Deflection acceleration➡️Inerter Force
Invented in 2002 by a professor, F1 teams quickly adapted it to their needs!
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Formula Data Analysis
Car suspensions have two components: -Spring: applies a force proportional to its deflection➡️'Transmits' the energy of the bump to the car body -Damper: force proportional to HOW QUICKLY it deflects➡️Dissipates such energy F1 cars also had the Inerter...…
A scheme:
When the suspension extends or compresses, the right ring moves relatively to the left ring↔️
Due to the thread profile, this produces a rotation of the inertial body (in🔴red)
This produces an inertial force proportional to the acceleration between the two rings.
How is this useful?
For any oscillation:
Acceleration: - Deflection*Frequency^2
1)The higher the frequency, the higher the acceleration vs the deflection
2)The acceleration has OPPOSITE sign compared to the deflection
So the Inerter 'contrasts' the spring at high frequencies!
So, the Inerter effectively makes the suspension softer at higher frequencies!
This is the 'holy grail':
-Engineers can use stiffer suspensions➡️More stable aero, more responsive car✅
-At higher frequency (kerbs/bumps), the suspensions soften➡️Less bouncing on unevenness!✅
When the suspension extends or compresses, the right ring moves relatively to the left ring↔️
Due to the thread profile, this produces a rotation of the inertial body (in🔴red)
This produces an inertial force proportional to the acceleration between the two rings.
How is this useful?
For any oscillation:
Acceleration: - Deflection*Frequency^2
1)The higher the frequency, the higher the acceleration vs the deflection
2)The acceleration has OPPOSITE sign compared to the deflection
So the Inerter 'contrasts' the spring at high frequencies!
So, the Inerter effectively makes the suspension softer at higher frequencies!
This is the 'holy grail':
-Engineers can use stiffer suspensions➡️More stable aero, more responsive car✅
-At higher frequency (kerbs/bumps), the suspensions soften➡️Less bouncing on unevenness!✅
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Formula Data Analysis
A scheme: When the suspension extends or compresses, the right ring moves relatively to the left ring↔️ Due to the thread profile, this produces a rotation of the inertial body (in🔴red) This produces an inertial force proportional to the acceleration between…
A practical example:
Vertical axis: tyre load oscillation (bad!)
Horizontal: frequency
First, the engineer stiffens the suspension to improve the aero (solid to dashed line)➡️Problem: the peak increases
Then, they employ the inerter (bold line)➡️The peak reduces significantly!
FIA banned the inerter in 2022, on the grounds of cost-reduction🚫
The problem was that neither the FIA nor most teams predicted the porpoising
The Inerter would have been the perfect weapon to fight it! (By having different stiffnesses at lower and higher frequencies).
So that was the Inerter!🛠
Now you are one step closer to becoming an F1 engineer... or just a more tech-savvy fan!📚
Share the thread with your friends if you enjoyed it, and follow my page to understand Formula 1 better!🤩🏎
Vertical axis: tyre load oscillation (bad!)
Horizontal: frequency
First, the engineer stiffens the suspension to improve the aero (solid to dashed line)➡️Problem: the peak increases
Then, they employ the inerter (bold line)➡️The peak reduces significantly!
FIA banned the inerter in 2022, on the grounds of cost-reduction🚫
The problem was that neither the FIA nor most teams predicted the porpoising
The Inerter would have been the perfect weapon to fight it! (By having different stiffnesses at lower and higher frequencies).
So that was the Inerter!🛠
Now you are one step closer to becoming an F1 engineer... or just a more tech-savvy fan!📚
Share the thread with your friends if you enjoyed it, and follow my page to understand Formula 1 better!🤩🏎
👍6🔥5❤1
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[Chat] - Formula Data Analysis
Use this CHAT do discuss the contents posted in the main CHANNEL 💬
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👇
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