Return-Path: Received: from out009.verizon.net ([206.46.170.131] verified) by logan.com (CommuniGate Pro SMTP 4.2b3) with ESMTP id 92689 for flyrotary@lancaironline.net; Thu, 27 May 2004 10:37:06 -0400 Received: from verizon.net ([4.12.145.173]) by out009.verizon.net (InterMail vM.5.01.06.06 201-253-122-130-106-20030910) with ESMTP id <20040527143700.MMXV29216.out009.verizon.net@verizon.net> for ; Thu, 27 May 2004 09:37:00 -0500 Message-ID: <40B5FD0B.7010406@verizon.net> Date: Thu, 27 May 2004 10:36:59 -0400 From: Finn Lassen User-Agent: Mozilla/5.0 (Windows; U; Windows NT 5.1; en-US; rv:1.4) Gecko/20030624 Netscape/7.1 (ax; PROMO) X-Accept-Language: en-us, en MIME-Version: 1.0 To: Rotary motors in aircraft Subject: Re: [FlyRotary] Re: Fuel Pump Design References: In-Reply-To: Content-Type: multipart/alternative; boundary="------------020201010607030800060903" X-Authentication-Info: Submitted using SMTP AUTH at out009.verizon.net from [4.12.145.173] at Thu, 27 May 2004 09:37:00 -0500 This is a multi-part message in MIME format. --------------020201010607030800060903 Content-Type: text/plain; charset=us-ascii; format=flowed Content-Transfer-Encoding: 7bit 2nd fuel filter should be before the T ? If this is a low wing aircraft, you do NOT want direct connection between left and right tanks: you could be sucking air when one wing is lower than the other (with no fuel). Not an issue if the common pickup point is substantially lower then the lowest point of each tank, as in a high wing aircraft. Finn Bob Perkinson wrote: > The attached drawing is my idea of a simple fuel system for the 9a > that I am building, with Aux fuel tanks akin to Berne Kerr's Project. > I would like some feed back as to what problems this arrangement might > pose, and what the remedy would be for such problems. The plan is to > use large diameter pipe between the main fuel tanks so as to allow the > fuel to equalize > > Bob Perkinson. > > -----Original Message----- > From: Rotary motors in aircraft > [mailto:flyrotary@lancaironline.net]On Behalf Of Mark Steitle > Sent: Tuesday, May 25, 2004 3:06 PM > To: Rotary motors in aircraft > Subject: [FlyRotary] Fuel Pump Design > > Fuel system design hasn't come up in quite a while. But since a > large portion of accidents are fuel related, I thought this would > be worthy of discussion. > > I have experienced a failure mode during ground runs on my Lancair > ES with 20B that seems to be a problem with other types of > installations as well. I recently read a first flight report by a > professional test pilot, David Allen, that almost had to set a > Lancair ES, N711RG, down on I-70 due to the inability to restart > the engine after running a tank dry. (See > www.geocities.com/daveandjj for the full story.) This was a > certified fuel-injected engine installation. Also, the Subaru > guys (I have been lurking on the Eggenfelder Subie site today) had > a similar situation, resulting in some glider time and a > dead-stick landing. > > The problem is that after exhausting the fuel in one tank an > airlock forms between the fuel pump(s) and the fuel pressure > regulator that the efi pump cannot overcome due to lack of fuel in > the supply line. This is what I have experienced with my > installation on ground runs. I can't get the efi pumps to > re-prime unless I momentarily break a line loose between the pump > outlet and the pressure regulator. As soon as I do that the pump > will re-prime and all is well. > > For the record, I have two of Tracy's efi pumps, with two efi > filters, hooked in parallel. They are mounted low on the fire > wall. Upstream is a gascolator and an Andair 6-port selector > valve. Downstream of the pumps/filters is a map sensing pressure > regulator. There is a -6AN going to the fuel rail, and a -4 > return line back to the Andair valve/tank. > > I was curious if anyone else has had this happen and what they did > to resolve the issue. I have come up with two possible solutions. > > 1. Tee off the pump output and put an electric solenoid valve in > the line and tee the outlet of the solenoid to the fuel return > line, past the regulator. Push-button switch on panel would > activate the solenoid. If needed, a second or two of activation > should relieve the air-lock and allow the pumps to re-prime. > > 2. Install a bleed line around the pressure regulator with a > small metering orifice (.020-.030") that would bleed off any air > that might get trapped. (This appears to be the solution the > Subaru group is focusing on). This would be a full time bypass. > This seems to be the simpler solution. > > 3. Install a low pressure, high volume fuel pump in one, or both, > of the wing tanks. Procedure would be to always keep reserve fuel > in this tank. > > Any comments from seasoned flyers would be welcomed. > > Mark S. > > > ------------------------------------------------------------------------ > >------------------------------------------------------------------------ > > > >>> Homepage: http://www.flyrotary.com/ >>> Archive: http://lancaironline.net/lists/flyrotary/List.html >>> >>> --------------020201010607030800060903 Content-Type: multipart/related; boundary="------------000205020608000006020907" --------------000205020608000006020907 Content-Type: text/html; charset=us-ascii Content-Transfer-Encoding: 7bit 2nd fuel filter should be before the T ?

If this is a low wing aircraft, you do NOT want direct connection between left and right tanks: you could be sucking air when one wing is lower than the other (with no fuel). Not an issue if the common pickup point is substantially lower then the lowest point of each tank, as in a high wing  aircraft.

Finn

Bob Perkinson wrote:

The attached drawing is my idea of a simple fuel system for the 9a that I am building, with Aux fuel tanks akin to Berne Kerr’s Project.  I would like some feed back as to what problems this arrangement might pose, and what the remedy would be for such problems.  The plan is to use large diameter pipe between the main fuel tanks so as to allow the fuel to equalize 

Bob Perkinson.

-----Original Message-----
From: Rotary motors in aircraft [mailto:flyrotary@lancaironline.net]On Behalf Of Mark Steitle
Sent: Tuesday, May 25, 2004 3:06 PM
To: Rotary motors in aircraft
Subject: [FlyRotary] Fuel Pump Design

Fuel system design hasn't come up in quite a while.  But since a large portion of accidents are fuel related, I thought this would be worthy of discussion.

I have experienced a failure mode during ground runs on my Lancair ES with 20B that seems to be a problem with other types of installations as well.  I recently read a first flight report by a professional test pilot, David Allen, that almost had to set a Lancair ES, N711RG, down on I-70 due to the inability to restart the engine after running a tank dry.  (See www.geocities.com/daveandjj for the full story.)  This was a certified fuel-injected engine installation.  Also, the Subaru guys (I have been lurking on the Eggenfelder Subie site today) had a similar situation, resulting in some glider time and a dead-stick landing. 

The problem is that after exhausting the fuel in one tank an airlock forms between the fuel pump(s) and the fuel pressure regulator that the efi pump cannot overcome due to lack of fuel in the supply line.  This is what I have experienced with my installation on ground runs.  I can't get the efi pumps to re-prime unless I momentarily break a line loose between the pump outlet and the pressure regulator.  As soon as I do that the pump will re-prime and all is well. 

For the record, I have two of Tracy's efi pumps, with two efi filters, hooked in parallel.  They are mounted low on the fire wall.  Upstream is a gascolator and an Andair 6-port selector valve.  Downstream of the pumps/filters is a map sensing pressure regulator.  There is a -6AN going to the fuel rail, and a -4 return line back to the Andair valve/tank.

I was curious if anyone else has had this happen and what they did to resolve the issue.  I have come up with two possible solutions. 

1.  Tee off the pump output and put an electric solenoid valve in the line and tee the outlet of the solenoid to the fuel return line, past the regulator.  Push-button switch on panel would activate the solenoid.  If needed, a second or two of activation should relieve the air-lock and allow the pumps to re-prime.

2.  Install a bleed line around the pressure regulator with a small metering orifice (.020-.030") that would bleed off any air that might get trapped.  (This appears to be the solution the Subaru group is focusing on).  This would be a full time bypass.  This seems to be the simpler solution.

3.  Install a low pressure, high volume fuel pump in one, or both, of the wing tanks.  Procedure would be to always keep reserve fuel in this tank. 

Any comments from seasoned flyers would be welcomed.

Mark S.




 Homepage:  http://www.flyrotary.com/
 Archive:   http://lancaironline.net/lists/flyrotary/List.html
      
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