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#1
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Do any of you advance or retard cam timing based on n/a or boost? The cam I am using is a mild sig erson solid roller in a 535 with 360 cfm e-heads and D1SC Procharger.
Steve
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67 Firebird 3440 lbs, Pump gas 537 IA2, tiger heads, 4.86 rear, 32 x 17.5's, full interior, 4 mufflers, street shape 1.36 60', [email protected] 1/8 mi. 5.67@123 on small shot. |
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#2
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Now this is a good topic. Very complex!
Managing the pressure profiles of various parts of the cycle on a boosted engine , more specifically turbo engine is a big deal imo. Interested to see what the calculator jockeys have to say about the subject. |
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#3
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Not nearly as simple as advancing or retarding a given Cam . Ivo depends on pressure in the manifold versus pressure in the cylinder left over from the exhaust cycle . Ivc depends on how close your cylinder pressure is to your Intake pressure. Evo is dependent on how much residual pressure there will be in the cylinder when the Pistons coming up on the exhaust stroke after blowdown occurs ( pumping Loss). Evc will depend on the pressure in the combustion volume during overlap versus Inlet pressure versus exhaust back-pressure on the hot side of the turbo. See complex. |
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#4
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There are four events to a camshaft. Not all of them will want to be Advanced or retarded I can almost guarantee it. When you advance or retard a cam you are moving all 4 the same way at the same time. Wish my intake lobes and exhaust lobes were divorced on the camshaft !!!
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#5
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Isn't advancing or restarting the cam just moving the power band around?
GTO George |
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#6
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No. Often the intake and exhaust events require the opposite action to move the Power Band up or down. Like I said there are 4 events But just like with everything there's always one event that is Alpha in the system so by advancing or retarding the cam you can still get the result of moving the powerband. But that don't mean the events are right ! |
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#7
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Would cam timing affect boost any?
GTO George |
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#8
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Blower cams, IMHO, are TOTALLY different than n/a cams. N/A needs overlap to work at higher RPM and make bigger power - boosted motors just need a tiny bit to clear the chamber. Too much and you'll be blowing fuel out the exhaust. Blower cams can make killer power with "small" intake lobes, but need bigger exhaust lobes. I've had luck with some turbo designs by having the EVO happen earlier than you may expect, it seems to help the turbo spool more quickly.
I've only designed a dozen or so blower cams, so lots to learn still. But here is an example of "advance/retard" to highlight how different it can be. A friend built a 408" LS motor. He was using stock Chevy truck L92 heads (no porting at all, no fancy valve job, just betting springs/retainers/locks), and a home made turbo with an 88mm turbo. We used a hydraulic roller, .050" specs were 242/285, and it was ground on a 116 LSA. The cam was installed on a 104 ICL - so technically it was "advanced" 12 degrees. But I didn't design the cam, then try to figure out what the +/- should be. Rather figured out what the open & close events needed to be. the LSA & ICL were just by-products. Oh, with a VERY loose converter, on a DynoJet chassis dyno, that cam/motor put over 1100 to the wheels.
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'73 T/A (sold). Low budget stock headed 8.3:1 455, 222/242 116lsa .443/.435 cam. FAST Sportsman EFI, 317rwhp/385rwtq on 87 octane. 13.12 @103.2, 1.91 60'. '67 Firebird [sold], ; 11.27 @ 119.61, 7.167 @ 96.07, with UD 280/280 (108LSA/ 109 ICL)solid cam. [1.537, 7.233 @93.61, 11.46 @ 115.4 w/ old UD 288/296 108 hydraulic cam] Feb '05 HPP, home-ported "16" D-ports, dished pistons (pump gas only), 3.42 gears, 275/60 DR's, 750DP, T2, full exhaust |
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#9
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Good Post Lee. Check out this camshaft. It was done in 1998 for the Keen's 347 engine.
Worked very well with the Vortech Supercharger stuff. Matches a bunch of your comments. Intake Centerline 114.3 Exhaust Centerline 116.5 271/312 at .050" lift checking points Intake open 21.5 Intake closed 70.1 (21.5 + 70.1 + 180 = 271.6) Exhaust Open 92.5 Exhaust Closed 39.5 (92.5 + 39.5 + 180 = 312) Cam Lift .455 Intake .457 Exhaust Valve Lift .728 Intake .731 Exhaust Duration at .200 = 192.5 Intake 221.9 Exhaust. You do any camshafts of a similar design? Tom V.
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"Engineers do stuff for reasons" Tom Vaught Despite small distractions, there are those who will go Forward, Learning, Sharing Knowledge, Doing what they can to help others move forward. |
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#10
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#11
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Quote:
__________________
'73 T/A (sold). Low budget stock headed 8.3:1 455, 222/242 116lsa .443/.435 cam. FAST Sportsman EFI, 317rwhp/385rwtq on 87 octane. 13.12 @103.2, 1.91 60'. '67 Firebird [sold], ; 11.27 @ 119.61, 7.167 @ 96.07, with UD 280/280 (108LSA/ 109 ICL)solid cam. [1.537, 7.233 @93.61, 11.46 @ 115.4 w/ old UD 288/296 108 hydraulic cam] Feb '05 HPP, home-ported "16" D-ports, dished pistons (pump gas only), 3.42 gears, 275/60 DR's, 750DP, T2, full exhaust |
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#12
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internet searching,
When you advance and retard the icl you are altering the dynamic compression ratio also. Too much advance can create too much cylinder pressure which will create detonation issues unless tuned around or a higher octane fuel is ran. Retarding it does the opposite which will lose power and lower the dynamic compression. Instead of just crutching a centrifugal like you are saying with advance you would use all of the cams specifications like duration and lsa to create the power band you want and not just relying on ICL advance. Same with a roots supercharger, use the other cam specifications to create the power band you want. The other thing you're missing is the intake manifold and cylinder heads. They will also play a big part and most of the time even bigger part in the RPM range that peak torque and horsepower are made in. A set of stock cylinder heads and your intake manifold that is apart of that blower no matter what the cam timing is due to the runner length, plenum volume and runner design just won't make anymore peak power past 6200-6300 as Pred Z said. That is why people will change out from the stock style type intake manifolds on say a nitrous car or a N/A H/C/I car to a single plane so that they can rev the motor higher while still staying in the peak power range of the motor. This is achieved by the shorter runners in the single plane and more plenum volume. Your intake has long runners and less plenum volume therefore making it limited in the amount of rpm and peak power it can make along with making a lot of usable low-mid range torque. GTO George |
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#13
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George sincerely not trying to pick on you or or your thoughts if that's what is in the text above. But most everything that was in that post is complete garbage. Magazine article type myths. Don't drink the Kool-Aid. Not going to comment on everything as to the complexity of the explanation but I will say that in most cases when somebody goes from a dual-plane manifold to a single plane manifold their biggest gain is because they have effectively doubled the size of the carburetor that the motor now recognizes. The motor now operates at a higher pressure/ far less pressure drop in the intake manifold. It's not a runner length issue, its not a plenum volume issue. Just a pressure issue. |
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#14
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Hell im not trying to drink anything.........just trying to learn.
Again (just trying to learn)...........advancing or retarding the camshaft (2,4 degrees or whatever) does that affect Boost in a blower car. GTO George |
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#15
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I get it, and my comment was not directed at you personally. And to answer your question.........yes ,but it's circumstantial. Depends on the timing events of the camshaft and the resulting pressures( on each side of the valve) before and after those events, all 4 of them. |
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#16
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George pressure is resistance to flow. Now are we getting our boost pressure because of head/manifold/cam timing restricting flow between the blower and the cylinder or are we actually achieving the same cylinder pressure at (swept volume) as our boost pressure. Same cylinder pressure at swept volume as boost pressure is all you could ever hope for. !
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#17
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George I have tried advancing my cam to as far as I could from the cam card recommended 110 . Went as far as 106, and what I learned from that is , Yes I got a couple of more cranking psi when advancing it but what really stood out was it made the turbo spool sooner and was a lot more valiant down in the rpm range . Wound up fracturing all the rod journals on the crank. The turbo went from being all in spooled @ 5000 to being all in @ 4200 when advanced. Bearings looked like the first day I put them in so it wasn't detonating either. After that I read on Yellow bullet that spooling and making power too low in a engines rpm is not good. Kind of like putting a ten speed bike in 10 gear and having the power in your legs to spin the tires from a standing stop, It would be real bad on your ankle's. lol Im no expert, but that's what I have experienced with advancing a cam..
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My Half AN Injun..... |
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#18
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subscribed.
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#19
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Quote:
__________________
67 Firebird 3440 lbs, Pump gas 537 IA2, tiger heads, 4.86 rear, 32 x 17.5's, full interior, 4 mufflers, street shape 1.36 60', [email protected] 1/8 mi. 5.67@123 on small shot. |
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#20
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The Keens were turning their 347 engine 9000 rpm in 1998 race season. It was not a problem making the bower they needed with the supercharger, it was getting rid of the exhaust and having a clean fresh charge for the next combustion event. The engine also had to have a large stepped header installed to remove the exhaust and this was even with the Motorsports Race head used on the engine. The whole system had to work. So yes the DNA is similar on what works. I worked on that camshaft design with Don Hubbard for the Keen Brothers program. Don Hubbard wrote The Book on Camshafts. "There's also Don Hubbard's Camshaft Reference Handbook. Regards, Chase Knight." Anyone actually know who Chase Knight was or what he did. Tom Vaught
__________________
"Engineers do stuff for reasons" Tom Vaught Despite small distractions, there are those who will go Forward, Learning, Sharing Knowledge, Doing what they can to help others move forward. |
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