Hi All,
I'm doing a clean sheet look at S54 header design. Eventually I will put everything up up in a github, including all scans and any cad files. There are many headers for the S54 but ther are are a few reasons I want to look at this again in 2025:
1) 3d scanning makes more complicated packaging much easier
2) Additive manufacturing. I have been using DMLS for parts and its reasonably affordable now. I think there could be some cool stuff possible with additive that wasn't necessarily feasible before.
3) Better informed header choices specific to people's cars and engine builds.
I have a first scan of an S54 head. I'll be re-scanning for a cleaner result before sharing it but its good enough for the port length and volume measurements I have been using. I have a stock cam S54 set up in Pipemax and I think its getting close to being configured correctly. It's putting out suggested header dimensions. I'll be building this to fit my S54 E36 M3 but I have an e46 chassis here that I can scan as well.

Questions for everyone here: I would really like to get my hands on some existing headers to measure and/or scan. Alternatively if anyone can carefully measure theirs that would be great. I'm interested in looking at what else has been done and seeing where that fits in with these header calculations. Specifically I'm interested in scanning or measuring a supersprint V1 and factory euro headers. CPI headers would also be good to get details on.
Important measurements are:
Runner lengths measured as well as is reasonable
Primary ID and (and OD too for completeness).
Collector/secondary ID dimensions
Pipemax as it is currently configured for stock cams:

And the header calculations for a stepped header:
My current pipemax config for anyone who wants to mess around with it
I'm doing a clean sheet look at S54 header design. Eventually I will put everything up up in a github, including all scans and any cad files. There are many headers for the S54 but ther are are a few reasons I want to look at this again in 2025:
1) 3d scanning makes more complicated packaging much easier
2) Additive manufacturing. I have been using DMLS for parts and its reasonably affordable now. I think there could be some cool stuff possible with additive that wasn't necessarily feasible before.
3) Better informed header choices specific to people's cars and engine builds.
I have a first scan of an S54 head. I'll be re-scanning for a cleaner result before sharing it but its good enough for the port length and volume measurements I have been using. I have a stock cam S54 set up in Pipemax and I think its getting close to being configured correctly. It's putting out suggested header dimensions. I'll be building this to fit my S54 E36 M3 but I have an e46 chassis here that I can scan as well.
Questions for everyone here: I would really like to get my hands on some existing headers to measure and/or scan. Alternatively if anyone can carefully measure theirs that would be great. I'm interested in looking at what else has been done and seeing where that fits in with these header calculations. Specifically I'm interested in scanning or measuring a supersprint V1 and factory euro headers. CPI headers would also be good to get details on.
Important measurements are:
Runner lengths measured as well as is reasonable
Primary ID and (and OD too for completeness).
Collector/secondary ID dimensions
Pipemax as it is currently configured for stock cams:
And the header calculations for a stepped header:
Code:
Calculated Exhaust Port Flow @7 kPa= 76.7064 -to- 82.1417 L/S @ 9.956450 mm Lift (no Flow Pipe) User's Exhaust Port Flow input @7 kPa= 94.3895 Liters/Second @ 12.000001 mm Lift (no Flow Pipe) Engine Application = Race Engine • Mid-Range Peak TQ • Hi RPM Peak HP Exhaust Header Type = --- Primary Tube Specs : Race Header • Multiple Steps --- --- 2-Step Primary Pipe Specs --- ( Total Length= 555.329 to 646.081 mm ) 1st Step Diameter mm= 40.556 Length= 277.664 to 323.041 mm 2nd Step Diameter mm= 43.731 Length= 277.664 to 323.041 mm --- 2-Step Primary Pipe Specs --- ( possibly higher RPM HP ) 1st Step Diameter mm= 40.556 Length= 138.832 to 161.520 mm 2nd Step Diameter mm= 43.731 Length= 416.497 to 484.561 mm --- 3-Step Primary Pipe Specs --- ( possibly higher RPM HP than 2-Step Headers ) 1st Step Diameter mm= 40.556 Length= 277.664 to 323.041 mm 2nd Step Diameter mm= 43.731 Length= 138.832 to 161.520 mm 3rd Step Diameter mm= 46.906 Length= 138.832 to 161.520 mm --- 3-Step Primary Pipe Specs --- ( possibly higher RPM HP than 2-Step Headers ) 1st Step Diameter mm= 40.556 Length= 138.832 to 161.520 mm 2nd Step Diameter mm= 43.731 Length= 138.832 to 161.520 mm 3rd Step Diameter mm= 46.906 Length= 277.664 to 323.041 mm --- 4-Step Primary Pipe Specs --- ( possibly higher RPM HP than 3-Step Headers ) 1st Step Diameter mm= 40.556 Length= 138.832 to 161.520 mm 2nd Step Diameter mm= 43.731 Length= 138.832 to 161.520 mm 3rd Step Diameter mm= 46.906 Length= 138.832 to 161.520 mm 4th Step Diameter mm= 50.081 Length= 138.832 to 161.520 mm --- Primary Tube Harmonics --- ( One-End-Closed Tube = Odd Numbered Harmonics ) 1st Harmonic = 1825.687 to 1916.439 mm long ... typically never used ( too long to fit any Vehicle ) 3rd Harmonic = 555.329 to 646.081 mm long ... highly recommended , best Torque and HP Curve 5th Harmonic = 301.257 to 392.009 mm long ... shortest recommended ( Shorty or very Hi-RPM Header ) 7th Harmonic = 192.370 to 283.122 mm long ... shortest recommended ( Shorty, Hugger, or Log Style ) 9th Harmonic = 131.876 to 222.628 mm long ... shortest recommended ( Log Style or Cast-Manifold ) 11th Harmonic = 93.381 to 184.133 mm long ... shortest recommended ( Log Style or Cast-Manifold ) ------------------------------------------------------------------------------------------------------ --- Collector Specs : Merge Collector • Straight Tube --- Peak TQ Diameter Range = 64.168 -to- 67.343 Best Length= 499.338 -or- 998.675 mm Best Mid-Range Diameter = 67.343 Best Length= 499.338 -or- 998.675 mm Peak HP Diameter Range = 67.343 -to- 70.518 Best Length= 499.338 -or- 249.669 mm H-Pipe Location= 499.338 or 249.669 mm X-Pipe Location= 1997.351 or 998.675 mm ( both H-Pipe and X-Pipe locations are measured from Primary Tube ends inside the Collector ) Dual-Exhaust System Diameter = 64.168 to 70.518 mm Dual-Exhaust's each Muffler L/S = 187 Single-Exhaust System Diameter = 90.747 to 97.097 mm Single-Exhaust's one Muffler L/S = 374 --- Collector's Harmonics --- ( Both-Ends-Open Tube = Odd and Even Numbered Harmonics ) 1st Harmonic = 3994.701 mm long ... longest recommended with Mufflers and TailPipes 2nd Harmonic = 1997.351 mm long ... longest recommended with Mufflers and TailPipes 3rd Harmonic = 998.675 mm long ... greater Low RPM Torque -to- Peak Torque RPM 4th Harmonic = 499.338 mm long ... highly recommended , best Torque and HP Curve combination 5th Harmonic = 249.669 mm long ... reduced Peak Torque , higher RPM HP gains possible 6th Harmonic = 124.834 mm long ... reduced Low RPM Torque , even though Tuned Length Best TQ + HP Tuned Collector Lengths= 124.834, 249.669, 499.338, 998.675, 1997.351, 3994.701 mm long Worst TQ + HP Loss Collector Lengths= 187.252, 374.503, 749.006, 1498.013, 2996.026, 5992.052 mm long Collector definition: from the Primary Tube's ending inside the Collector -to- Atmospheric exit point Note : all Tube Outside Diameters are based-off your Header Tube Thickness choice's value ------------------------------------------------------------------------------------------------------ Bore=87.00008 mm Stroke=91.00007 mm 3.24580304 Liters @ 7900 RPM Intake System= 100.00000 VE% Complete Intake System Flow @7 kPa= 94.9698 -to- 101.6991 L/S @ 12.000001 mm Lift (5.00000 VE% Loss) Cylinder Head Intake Port Flow @7 kPa= 122.7063 -to- 131.4010 L/S @ 12.000001 mm Lift (105.00000 VE%) Cylinder Head's Exhaust Port CenterLine Length = 79.8500 millimeters Target EGT= 1295.3 degrees F or 701.9 degrees C at end of 4 second 600 RPM/Sec Dyno accel. test EGT Probe location = 19.05 to 25.40 mm from Header gasket flange at 12:00 O'Clock position EGT Probe tip depth = 12.70 to 19.05 mm depth into Header Primary Tube Speed of Sound = 626.0 Meters per Second at 25.40 mm distance into Header Primary Tube Header Collector Spear Length = 0.0000 mm Exhaust/Intake Port Flow Ratio = 76.923 % Exhaust System operating RPM Range from 5900 to 8400 RPM Hertz frequency = 65.8 Hz at 7900 RPM ------------------------------------------------------------------------------------------------------ Camshaft = OverHead • Finger - Follower Arm 600 RPM/Sec Dyno Test Level=7 Level=8 Level=9 Level=10 Piston MPM Peak Power KiloWatts @ 7900 RPM 258.3 261.6 264.9 268.3 1437.80 Peak Torque Ntn-Meter @ 4900 RPM 338.9 346.0 350.4 354.8 891.80 ------------------------------------------------------------------------------------------------------ Fuel BTU=18310.1 Air/Fuel Ratio=12.686790 BSFC=276.2444 Mixture Distribution= 90.0 Quality= 90.0 Dyno HP Weather Correction Equation = 8• SAE J607 (June1974) • STP • SuperFlow-FTQ • (Default) HP Correction Factor= 1.000000000 Fuel Type= Ethanol • E10 • 10% Ethanol • 90% Gasoline Station Barometer=1013.20748118 Air DegC=15.56 Vapor Pressure=0.000 Air Correction=1.00000000 Station Barometer NOAA= 1013.50748075 Pressure Altitude Meters= 0.4 Z•Elevation Meters= 0.0 Density Altitude Meters = 20.5 Relative Humidity % = 0.00 Dew Point DegC = -164.11 Virtual Temperature DegC = 15.56 Water Grains = 0.00 Wet Bulb DegC = 3.74
My current pipemax config for anyone who wants to mess around with it











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