Return-Path: Received: from [24.25.9.102] (HELO ms-smtp-03-eri0.southeast.rr.com) by logan.com (CommuniGate Pro SMTP 4.2.8) with ESMTP id 618221 for flyrotary@lancaironline.net; Sun, 23 Jan 2005 08:14:50 -0500 Received-SPF: none receiver=logan.com; client-ip=24.25.9.102; envelope-from=eanderson@carolina.rr.com Received: from edward2 (cpe-024-074-185-127.carolina.rr.com [24.74.185.127]) by ms-smtp-03-eri0.southeast.rr.com (8.12.10/8.12.7) with SMTP id j0NDEFkd011448 for ; Sun, 23 Jan 2005 08:14:17 -0500 (EST) Message-ID: <004801c5014d$bee9cc70$2402a8c0@edward2> From: "Ed Anderson" To: "Rotary motors in aircraft" References: Subject: Re: [FlyRotary] Re: Ah Ha! Pressure Regulator Problem? Date: Sun, 23 Jan 2005 08:16:27 -0500 MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_000_003E_01C50123.D5E1B7F0"; type="multipart/alternative" X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook Express 6.00.2800.1106 X-MIMEOLE: Produced By Microsoft MimeOLE V6.00.2800.1106 X-Virus-Scanned: Symantec AntiVirus Scan Engine This is a multi-part message in MIME format. ------=_NextPart_000_003E_01C50123.D5E1B7F0 Content-Type: multipart/alternative; boundary="----=_NextPart_001_003F_01C50123.D5E1B7F0" ------=_NextPart_001_003F_01C50123.D5E1B7F0 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Some excellent observations, Barry. Regarding the workings at altitude - there would certainly be a = different fuel flow required at WOT at 4000 vs WOT at 12000 assuming NA = engine. A manifold referenced fuel pressure regulator should maintain a = constant pressure differential between the pressure in the fuel rail and = that in the manifold therefore insuring that the same amount of fuel in = injected for the same injector-on time duration (pulse). So as you = increased altitude(and decreased manifold pressure at WOT) I would = expect to see the fuel pressure drop correspondingly to maintain the = differential. Or if turbocharged, I would expect to see the fuel = pressure increase as the boost goes up. My fuel map has always been a bit rich at the lower rpm range (idle), so = it could be that when manifold pressure is low (such as at idle) that = the pressure differential is much larger meaning more fuel flows per = millisecond of injector on time than at higher manifold pressure. A different make of pressure regulator is likely the only way I will = know for certain. Ed A ----- Original Message -----=20 From: Barry Gardner=20 To: Rotary motors in aircraft=20 Sent: Sunday, January 23, 2005 6:31 AM Subject: [FlyRotary] Re: Ah Ha! Pressure Regulator Problem? Ed, If you look around at other regulator brands, you'll find you've got = your "adjustable" (meaning that you set the pressure) and your = "adjustable rising rate" regulators. Rotary Performance sells the SX = brand adjustable regulator, which they claim will flow as much fuel as = your pump can throw at it (http://rx7.com/store/rx7/fcfuel.html). Brian = Cain, a rotary racer based outside Dallas who posts on that other list = occasionally, uses a Malpassi adjustable rising rate regulator. I did a = quick internet search but did not turn up any Malpassi vendors outside = Australia However, the latter regulator is really intended for turbo = applications, where the rising rate regulator is intended as a kind of = kludge fix to get the injectors to flow more at the top end. One warning = I read was that you have to start your fuel maps all over again if your = fuel pressure increases, leading to a richer fuel flow depending on = manifold pressure.=20 One thought I had was that you might be needlessly introducing a = complicating variable if you threw on an adjustable rising rate = regulator. Wouldn't there be a difference in the fuel pressure you got = from your regulator if you were at WOT at 4000' vs WOT at 12,000'? Your = manifold pressure would be lower at the higher elevation (without a = turbo), leading your regulator to flow less. I haven't worked out any = math on this but on initial reflection it might be a problem in an = airplane that auto racers don't face (unless they're in the Pike's Peak = hill climb). Barry Gardner Wheaton, IL Ed Anderson wrote:=20 I think I may have found my problem with the pressure regulator. = Seen below (the Boost Adjustable one is the one I use). In the = description they mention are adjustable from 36-45 psi with a flow rate = of 9.2-10.5 gal/hr. I presume that means the return rate flow or if = they mean the engine fuel used flow rate then clearly it is = under-capacity to handle our rotary fuel flow. =20 The Pump I use (see below) is rated at 45 gal/hr at 40 psi. My = nominal fuel flow at cruise is 7-8 gph. If my logic is correct that = would mean the pressure regulator would need to dump the unused flow of = 45-8 =3D 37 gal/hour. Yet, it seems that the regulator unit will only = flow a max of 10.5 gal/hr. Is a return of 10.5 gal/hr sufficient to = keep the pressure at 40 psi while using 8 gal/hr?? In fact, would that = return rate be sufficient to respond to manifold pressure variations? = I would not think so - but would like to hear what others may have as an = opinion or knowledge on the topic. Thanks Ed Ed Anderson Rv-6A N494BW Rotary Powered Matthews, NC eanderson@carolina.rr.com Fuel Pressure Regulators Maintaining accurate fuel system pressure on any multiport EFI = system is crucial to performance. MSD's Adjustable Fuel Pressure = Regulators allow you to fine tune the fuel pressure to meet the demands = of your engine and injection system. Both Regulators are adjustable from = 36-45 psi with a flow rate of 9.2-10.5 gal/hr. The inlet and outlets are = 5/16" and a jam nut is supplied for special threads on the bottom to = ease mounting to a bracket. These rugged Regulators are free standing so = they don't have to be mounted directly to a fuel rail and can be = installed in any position. Fuel pressure is set with an adjusting bolt = and is locked in position with a locking nut. PN MSD2220=20 Boost Adjustable This Regulator is designed for turbo or supercharged engines. As = boost pressure increases, more fuel is required by the engine. This = regulator features a boost reference circuit that adds more fuel in = relation to boost pressure. Boost/Fuel Pressure Regulator PN MSD2222=20 High Pressure Electric Fuel Pump=20 Multiport EFI systems require a stable fuel supply to maintain best = performance throughout the engine's rpm range. This high pressure and = high flow Fuel Pump features a roller vane pump mechanism which is = extremely resistant to clogging and jamming. The pump mounts in-line = (out of the fuel tank) with two supplied cushioned clamps for a quick = and sturdy installation. The nipple inlet is 3/8" with a 5/16" outlet. = The wire terminals feature brass studs for secure connections. Made in = the USA, the pump is ideal for use as a "booster" for nitrous oxide = applications, or as a stand alone pump for multiport EFI systems on = engines up to approximately 500 HP. Capable of 43 gph at 40 psi/162l/h. PN MSD2225 ------=_NextPart_001_003F_01C50123.D5E1B7F0 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
Some excellent observations, = Barry.
 
Regarding the workings at altitude - = there would=20 certainly be a different fuel flow required at WOT at 4000 vs WOT at = 12000=20 assuming NA engine.  A manifold referenced fuel pressure regulator = should=20 maintain a constant pressure differential between the pressure in the = fuel rail=20 and that in the manifold therefore insuring that the same amount of fuel = in=20 injected for the same injector-on time duration (pulse).  So as you = increased altitude(and decreased manifold pressure at WOT) I would = expect to see=20 the fuel pressure drop correspondingly to maintain the=20 differential.  Or if turbocharged, I would expect to see the = fuel=20 pressure increase as the boost goes up.
 
My fuel map has always been a bit rich = at the lower=20 rpm range (idle), so it could be that when manifold pressure is low = (such as at=20 idle) that the pressure differential is much larger meaning more = fuel flows=20 per millisecond of injector on time than at higher manifold=20 pressure.
A  different make of pressure = regulator is=20 likely the only way I will know for certain.
 
Ed A
 
 
----- Original Message -----
From:=20 Barry Gardner
Sent: Sunday, January 23, 2005 = 6:31=20 AM
Subject: [FlyRotary] Re: Ah Ha! = Pressure=20 Regulator Problem?

Ed,

If you look around at other regulator = brands, you'll=20 find you've got your "adjustable" (meaning that you set the pressure) = and your=20 "adjustable rising rate" regulators. Rotary Performance sells the SX = brand=20 adjustable regulator, which they claim will flow as much fuel as your = pump can=20 throw at it (http://rx7.com/store/rx7/fc= fuel.html).=20 Brian Cain, a rotary racer based outside Dallas who posts on that = other list=20 occasionally, uses a Malpassi adjustable rising rate regulator. I did = a quick=20 internet search but did not turn up any Malpassi vendors outside = Australia=20 However, the latter regulator is really intended for turbo = applications, where=20 the rising rate regulator is intended as a kind of kludge fix to get = the=20 injectors to flow more at the top end. One warning I read was that you = have to=20 start your fuel maps all over again if your fuel pressure increases, = leading=20 to a richer fuel flow depending on manifold pressure.

One = thought I=20 had was that you might be needlessly introducing a complicating = variable if=20 you threw on an adjustable rising rate regulator. Wouldn't there be a=20 difference in the fuel pressure you got from your regulator if you = were at WOT=20 at 4000' vs WOT at 12,000'? Your manifold pressure would be lower at = the=20 higher elevation (without a turbo), leading your regulator to flow = less. =20 I haven't worked out any math on this but on initial reflection it = might be a=20 problem in an airplane that auto racers don't face (unless they're in = the=20 Pike's Peak hill climb).

Barry Gardner
Wheaton, IL

Ed = Anderson wrote:=20
I think I may have found my problem = with the=20 pressure regulator.  Seen below (the Boost Adjustable one is = the one I=20 use).  In the description they mention are adjustable from = 36-45 psi=20 with a flow rate of 9.2-10.5 gal/hr.   I presume that = means the=20 return rate flow or if they mean the engine fuel used flow rate = then=20 clearly it is under-capacity to handle our rotary fuel=20 flow.  
 
 The Pump I use (see below) =  is rated=20 at 45 gal/hr at 40 psi.  My nominal fuel flow at cruise is 7-8=20 gph.  If my logic is correct that would mean the pressure = regulator=20 would need to dump the unused flow of 45-8 =3D 37 gal/hour.  = Yet, it=20 seems that the regulator unit will only flow a max of 10.5 = gal/hr.  Is=20 a return of 10.5 gal/hr sufficient to keep the pressure at 40 psi = while=20 using 8 gal/hr?? In fact, would that return rate be sufficient = to=20 respond to manifold pressure variations?   I would not = think so -=20 but would like to hear what others may have as an opinion or = knowledge on=20 the topic.
 
Thanks
 
Ed
 
 
Ed Anderson
Rv-6A N494BW Rotary=20 Powered
Matthews, NC
eanderson@carolina.rr.com
 
Fuel Pressure = Regulators
Maintaining=20 accurate fuel system pressure on any multiport EFI system is crucial = to=20 performance. MSD=92s Adjustable Fuel Pressure Regulators allow you = to fine=20 tune the fuel pressure to meet the demands of your engine and = injection=20 system. Both Regulators are adjustable from 36-45 psi with a flow = rate of=20 9.2-10.5 gal/hr. The inlet and outlets are 5/16=94 and a jam nut is = supplied=20 for special threads on the bottom to ease mounting to a bracket. = These=20 rugged Regulators are free standing so they don=92t have to be = mounted=20 directly to a fuel rail and can be installed in any position. Fuel = pressure=20 is set with an adjusting bolt and is locked in position with a = locking=20 nut.
PN MSD2220
=20

Boost=20 Adjustable
This Regulator is designed for turbo or supercharged = engines.=20 As boost pressure increases, more fuel is required by the engine. = This=20 regulator features a boost reference circuit that adds more fuel in = relation=20 to boost pressure.
Boost/Fuel Pressure Regulator
PN = MSD2222=20

 

 

 

High Pressure = Electric Fuel=20 Pump

Multiport EFI systems require a = stable fuel=20 supply to maintain best performance throughout the engine=92s rpm = range. This=20 high pressure and high flow Fuel Pump features a roller vane pump = mechanism=20 which is extremely resistant to clogging and jamming. The pump = mounts=20 in-line (out of the fuel tank) with two supplied cushioned clamps = for a=20 quick and sturdy installation. The nipple inlet is 3/8=94 with a = 5/16=94 outlet.=20 The wire terminals feature brass studs for secure connections. Made = in the=20 USA, the pump is ideal for use as a =93booster=94 for nitrous oxide=20 applications, or as a stand alone pump for multiport EFI systems on = engines=20 up to approximately 500 HP. Capable of 43 gph at 40 = psi/162l/h.
PN=20 MSD2225

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