Members Archives - Racecar Engineering https://www.racecar-engineering.com/category/members/ The leading motorsport technology magazine | F1, Le Mans, Formula Student, Super GT Fri, 03 Sep 2021 13:47:48 +0000 en-US hourly 1 https://wordpress.org/?v=6.2.3 UGR20 Powertrain Development https://www.racecar-engineering.com/articles/ugr20-powertrain-development/ https://www.racecar-engineering.com/articles/ugr20-powertrain-development/#respond Fri, 03 Sep 2021 13:47:48 +0000 https://www.racecar-engineering.com/?p=603096 Neil Dawson, Powertrain Manager at UGRacing, explains how UGRacing improved the engine's drivability for its 2021 Formula Student campaigning UGR20.

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Formula Student is Europe’s most established educational engineering competition and presents some unique technical challenges. Student teams worldwide design, build, test, and race small-scale formula-style racing cars and compete in static and dynamic events. The static events include engineering design, cost & manufacturing, business presentation and technical inspection. The deployment of the Formula Student car is in dynamic events, including figure 8 skidpad, 1 km autocross/sprint, 75 m acceleration and a 22 km endurance where judges also consider energy consumption. 

In the 2021 Formula Student event, the University of Glasgow Racing team, UGRacing, posted its best-ever result with an eighth-place overall finish while retook the Scottish Formula Student crown. It also won the Engineering Design event for 1st Year Vehicles and the Racecar Engineering Engagement, Outreach and Communications Award.

 

Figure 1. UGR19 Power-Torque Curve

One of the most significant developments of the UGR20 was that to its Honda CBR600 inline four-cylinder engine. Neil Dawson, Powertrain Manager at UGRacing, explains how UGRacing improved the engine’s drivability, eliminating the severe torque dip between 4-6krpm seen in UGR19’s engine (see Figure 1), thus allowing the powertrain to produce a predictable torque curve for the amateur driver to utilise.

 

‘Analysis of data from the 2018 endurance run showed that we spend >80% of an endurance lap at 4000-8000rpm,’ says Dawson. ‘Therefore, UGR19s torque curve is poorly tuned for Formula Student events. This correlates with driver feedback complaining of the engine “bogging down” coming out of slow-speed corners.’ This can be seen in Figure 2.

Figure 2. UGR18 Endurance Run RPM Frequencies

 

Through 1D simulation and empirical investigation, the team found reverse flow through the inlet port during the valve overlap period at lower engine speeds was the cause of this torque dip. ‘As the engine is port injection, the fuel cannot make it to the cylinder, and the engine runs lean in this torque dip, effectively burning exhaust gasses in the cylinder,’ notes Dawson. ‘The 20mm restrictor imposed by the formula student rules likely caused this, which results in lower inlet port pressures than those seen on the standard Honda CBR600 engine.’ 

The stock Honda camshafts are tuned for engine speeds above 12,000rpm (peak power @ 14,000) and therefore have large lifts and overlap periods to promote power production at higher rev ranges. UGRacing established a custom camshaft profile to reduce the valve overlap and produce a torque curve more suited to Formula Student competition. This, combined with more conventional methods of formula student powertrain design (exhaust length tuning, plenum runner tuning etc.) and internal engine modifications (higher compression pistons, superfinishing of gears, fitting a more extended first gear), mean that the team could produce an engine with better power at lower rev ranges, without completely sacrificing peak power.

The team developed a 1D model of its UGR19 powertrain in GT Suite to inform design decisions taken to establish its UGR20 powertrain. Members took physical measurements from the UGR19 powertrain to build the 1D model. ‘We validated the model against the UGR19 dyno data to validate its accuracy,’ says Dawson. ‘The 1D model also incorporated the ECU’s fuel and spark timing maps to allow the team to investigate potential map changes ahead of time to save valuable dyno time.’

The engineering team then used the Design of Experiments (DOE) feature within GT Suite to optimise the lift profiles of the camshafts thermodynamically. For the UGR20 camshafts, the DOE solver was instructed to maximise the area under the torque curve between 2500-11,000 rpm. The DOE solver was allowed to modify the lift, timing and duration of both the inlet and exhaust valves, as shown in figure 3 below. Note that multipliers of the stock camshaft controlled the durations and lifts. 

Figure 3. DOE setup parameters

 

The DOE simulation took those parameters and cycled through a total of ~400 camshaft designs to provide the team with the thermodynamically optimised camshaft. Compared to stock, this produced an exhaust camshaft with reduced duration, reduced lift, and a 6° advance. The intake camshaft also had a reduced duration, but the maximum lift and timing were the same as the stock camshaft. The new “thermodynamically optimised” camshafts produced a higher torque across the entire rev range with a smooth torque curve.

However, Dawson highlights that the thermodynamically optimised shapes were very aggressive, so the team conducted a mechanical analysis of the profiles to ensure the mechanical reliability of the engine. For this mechanical analysis, VTDesign was used to modify the new valve lift profiles found by the thermodynamic studies. ‘For this, we used the measured engine data to build a kinematic model of the valvetrain and analyse the forces acting on the valves and valve to piston clearances,’ says Dawson. ‘For valve velocity, we compared acceleration and jerk to the stock camshaft—the lift profiles of the new camshaft modified to bring these in line with the stock engine. We also monitored the valves’ spring rates and closure rate to avoid valve bounce and float.’ The shape of the inlet and outlet camshafts can be seen in Figure 4. 

 

Figure 4. Outlet (Right) Camshaft

Figure 4. Inlet (Left) Camshaft

These profiles were then machined from a set of stock CBR camshafts by Newman Cams and fitted to the UGR20 engine. In addition to the camshaft work, the team also reduced parasitic losses on the engine by “knife-edging” the crankshaft, superfinishing the gears in the gearbox and removing the stock mechanical water pump in favour of an electrical one. The 1D engine model also tuned the primary exhaust lengths, plenum volume, and intake runner lengths. All of this resulted in a torque curve that was much smoother than the one seen on UGR19. Driver feedback was that the new torque curve meant that the car was less “twitchy” coming out of slow-speed corners as the power was instant and predictable, rather than a delay before a lump of power came in (as it was on UGR19). A comparison of UGR19’s dyno data to UGR20’s is in figure 5 below.

 

Figure 5. UGR19 vs UGR20 Dyno Data

 

 

For further insight into UGRacing’s 2021 Formula Student campaign and the UGR20, check out the October 2021 issue of Racecar Engineering magazine here.  

ENDS

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Download your F1 2020 Preview Digimag now https://www.racecar-engineering.com/members/f1-members/download-your-f1-2020-preview-digimag-now/ https://www.racecar-engineering.com/members/f1-members/download-your-f1-2020-preview-digimag-now/#respond Thu, 12 Mar 2020 17:15:31 +0000 https://www.racecar-engineering.com/?p=577851 Whenever the 2020 F1 season does commence, Racecar Engineering has the perfect F1 supplement to accompany the start of the season – for free! In […]

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Whenever the 2020 F1 season does commence, Racecar Engineering has the perfect F1 supplement to accompany the start of the season – for free!

In our F1 2020 season preview, we review the tech at testing including; how DAS will help Mercedes; what changes teams have made to their 2020 machinery and why Racing Point have a ‘pink Mercedes’. We also reveal why teams unanimously agreed to stay with 2019 rubber and the affect this could have on this season.

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Register for your FREE Formula Student 2019 Digimag https://www.racecar-engineering.com/news/register-for-your-free-formula-student-uk-2019-digimag/ https://www.racecar-engineering.com/news/register-for-your-free-formula-student-uk-2019-digimag/#respond Fri, 25 Oct 2019 12:42:18 +0000 https://www.racecar-engineering.com/?p=572190 The post Register for your FREE Formula Student 2019 Digimag appeared first on Racecar Engineering.

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Formula Student once again provided the perfect platform for students to develop their skills, technical understanding and racecraft, which led to some fascinating innovations. With around one third of FSUK teams now fully electric, and 39 electric racers in Formula Student Germany, even the smaller teams are now turning to electric – so find out how to design, build and test an electric Formula Student car successfully in this digimag.

Also in this issue, Racecar uncovers the most interesting tech from FSUK, Danny Nowlan unpicks the most important equations behind effective Race Engineering and the secrets behind the FSUK winning car from Modena are revealed.

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Formula Student | TU Munich Tech Analysis https://www.racecar-engineering.com/articles/formula-student-tu-munich-tech-analysis/ https://www.racecar-engineering.com/articles/formula-student-tu-munich-tech-analysis/#respond Fri, 12 Oct 2018 18:16:04 +0000 http://www.racecar-engineering.com/?p=552326 TU Munich EB018 Tech Analysis Over the last decade the TU Munich Formula Student team has been increasingly viewed as one of the more advanced […]

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TU Munich EB018 Tech Analysis

Over the last decade the TU Munich Formula Student team has been increasingly viewed as one of the more advanced competitors to take part in Formula Student UK. This was shown to the paddock when it first entered in 2004; finishing an impressive 11th overall. In 2013, TU Munich entered its NB013 combustion car with the teams first full aerodynamic package, but only achieved a 27th overall finish at FSUK. For the last 3 years competing with both a combustion and an electric powered car, TU Munich have only finished in the top 5 once; so the pressure was on for this year’s team.

RSZ_TU_Munich_Side
CREDIT: IMECHE Formula Student

TU Munich returned to Silverstone in 2018, after a year’s absence, to run their electric powered car, the EB018. This is a first for the German based team, with previously the combustion powered car being present at every other UK entry.

TU_Munich_FSUK_Results
At FSUK, TU Munich are becoming more consistent at finishing in the top quarter of entries, but are yet to break into the top 3

At this year’s FSUK competition, TU Munich enjoyed early success achieving 1st place in the first 3 of the 4 dynamic events. With only the endurance event to go, the German team looked comfortable at the top of the points table. However halfway through their Endurance  run, the car suffered a technical issue and so the car was unable to run at maximum pace. This meant they could only achieve a 13th place finish, 350 seconds off the leader. This costly result demoted them to 4th in the overall standings, although this is their joint best finish so far. But judging by the car’s performance in the first 3 dynamic events, the engineering under the skin of the EB018 is unquestionably impressive so we decided to take a look….

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Register for your FREE Formula Student 2018 Supplement https://www.racecar-engineering.com/featured/register-for-your-free-formula-student-2018-supplement/ https://www.racecar-engineering.com/featured/register-for-your-free-formula-student-2018-supplement/#respond Wed, 03 Oct 2018 14:53:48 +0000 http://www.racecar-engineering.com/?p=552314 This year’s Formula Student competitions have seen teams from all over the world design, develop and manufacture high performing racecars with some fantastically innovative technologies.  Racecar goes […]

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This year’s Formula Student competitions have seen teams from all over the world design, develop and manufacture high performing racecars with some fantastically innovative technologies. 
Racecar goes behind the scenes to bring you the latest in Formula Student Tech as we spoke to the experts to give you the hints and tips you need to help your team succeed this season.

Register for your FREE Formula Student 2018 Supplement bought to you by Racecar Engineering and Simscale:

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Members Content – Rallycross 2017 Guide https://www.racecar-engineering.com/news/members-content-rallycross-2017-guide/ Sat, 17 Jun 2017 10:24:18 +0000 http://www.racecar-engineering.com/?p=541466 The post Members Content – Rallycross 2017 Guide appeared first on Racecar Engineering.

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Members Content – Le Mans 2017 Guide https://www.racecar-engineering.com/members/members-content-le-mans-2017-guide/ Fri, 02 Jun 2017 13:36:15 +0000 http://www.racecar-engineering.com/?p=541336  Download Le Mans 2017 Guide Guide now

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Members Content – Formula 1 2017 Guide https://www.racecar-engineering.com/members/formula-1-2017-guide/ Thu, 01 Jun 2017 13:25:14 +0000 http://www.racecar-engineering.com/?p=541330 Download Formula 1 2017 Guide now

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