X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Received: from rg4.comporium.net ([208.104.2.24] verified) by logan.com (CommuniGate Pro SMTP 5.1.12) with ESMTPS id 2308816 for flyrotary@lancaironline.net; Mon, 03 Sep 2007 11:33:32 -0400 Received-SPF: neutral receiver=logan.com; client-ip=208.104.2.24; envelope-from=Jewen@comporium.net Received: from 208-104-81-95.lnhe.2wcm.comporium.net (HELO engineer1) ([208.104.81.95]) by rg4.comporium.net (MOS 3.8.4-GA FastPath queued) with SMTP id ACH10613; Mon, 03 Sep 2007 11:32:54 -0400 (EDT) Message-ID: <003c01c7ee3f$a9729e80$6505a8c0@cooleygroup.local> From: "Joe Ewen" To: "Rotary motors in aircraft" Subject: Interface between Primary fuel rail and diffuser(air bleed) 20B Date: Mon, 3 Sep 2007 11:32:39 -0400 MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_0038_01C7EE1E.222EF200" X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook Express 6.00.2900.3138 X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2900.3138 X-Junkmail-Status: score=10/70, host=rg4.comporium.net X-Junkmail-SD-Raw: score=unknown, refid=str=0001.0A090203.46DC2925.015B,ss=1,fgs=0, ip=208.104.81.95, so=2007-03-13 10:31:19, dmn=5.4.3/2007-08-17 This is a multi-part message in MIME format. ------=_NextPart_000_0038_01C7EE1E.222EF200 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0039_01C7EE1E.222EF200" ------=_NextPart_001_0039_01C7EE1E.222EF200 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Background When installing the primary fuel rail on my 20B, I noticed a gap between = the primary fuel rail and the diffuser (air bleed.) One of the original = air bleeds was damaged when the rebuilder was removing. He could not = locate a replacement. He supplied new air bleeds designated for a 93-95 = 13B, which he was informed were usable in the 20B. The gap between the = fuel rail and the diffuser seems to be between 0.110" and 0.145". This = measurement was determined by inserting the diffuser and measuring its = depth. Then the fuel rail was bolted in place. Through the intake = port, the injector was pushed up until it contacted the fuel rail. The = fuel rail was then removed and diffuser depth was measured. The = difference between the measurements was between 0.110" and 0.145". The = original diffuser returned by the rebuilder has no apparent seal, the = replacement has a rubber seal molded into the top. I took some measurements and drew up the primary, fuel rail / injector = /diffuser (see attached pdf.) It looks like there are 2 differences = between the diffusers that came on the 20B and the replacements recently = purchased. The height of the diffuser above the seating surface is much = lower on the replacements and the length of the area that projects into = the port/air stream is longer. The extra length extending into the port = is probably not an issue. =20 The shorter height of the replacement seems like it will be a problem, = the problem being a vacuum leak around the injector. A secondary issue = from a vacuum leak in this area may be an effect on fuel droplet size. = By looking at the injector, it appears that a metered amount of air is = intended to flow into the pintle cap, presumably to aid in reducing the = fuel droplet size. A vacuum leak in this area may reduce the air flow = through the pintle cap and the resulting droplet size reduction.=20 I would speculate that at medium or higher power levels the vacuum leak = would probably have little noticeable effect. I would expect that the = most significant effect would be at or near idle conditions. Since = smooth idle seems to be difficult to attain in many installations, it = would certainly be prudent to try and eliminate this issue (not to = mention that it would be good practice to get it right.) Questions 1. There seems to be a very small gap (~0.010") between the fuel rail = seating surface and the top of the original diffuser. It looks like = there should be a grommet that makes up the difference and provides a = positive seal. To anyone who has disassembled a 20B, is there a = grommet/seal the sits on top of the diffuser? 2. Same question as 1, for anyone who has disassembled a 93-95 13B = (13B-REW, I believe)? 3. Anyone have a source for the proper 20B diffusers? Any opinions and/or remedy suggestions are appreciated. Thanks, Joe ------=_NextPart_001_0039_01C7EE1E.222EF200 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
Background
When installing the primary fuel = rail on my=20 20B, I noticed a gap between the primary fuel rail and the diffuser (air = bleed.)  One of the original air bleeds was damaged when the = rebuilder was=20 removing.  He could not locate a replacement.  He supplied new = air=20 bleeds designated for a 93-95 13B, which he was informed were usable in = the=20 20B.  The gap between the fuel rail and the diffuser seems to be = between=20 0.110" and 0.145".  This measurement was determined by inserting = the=20 diffuser and measuring its depth.  Then the fuel rail was bolted in = place.  Through the intake port, the injector was pushed up until = it=20 contacted the fuel rail.  The fuel rail was then removed and = diffuser depth=20 was measured.  The difference between the measurements was between = 0.110"=20 and 0.145".  The original diffuser returned by the rebuilder has no = apparent seal, the replacement has a rubber seal molded into the=20 top.
 
I took some measurements and drew up = the primary,=20 fuel rail / injector /diffuser (see attached pdf.)  It looks like = there are=20 2 differences between the diffusers that came on the 20B and the=20 replacements recently purchased.  The height of the diffuser above = the=20 seating surface is much lower on the replacements and the length of the = area=20 that projects into the port/air stream is longer.  The extra length = extending into the port is probably not an issue.   =20
 
The shorter height of the replacement = seems like it=20 will be a problem, the problem being a vacuum leak around the = injector.  A=20 secondary issue from a vacuum leak in this area may be an effect on fuel = droplet=20 size.  By looking at the injector, it appears that a metered amount = of air=20 is intended to flow into the pintle cap, presumably to aid in reducing = the fuel=20 droplet size.  A vacuum leak in this area may reduce the air = flow=20 through the pintle cap and the resulting droplet size=20 reduction. 
 
I would speculate that at medium or = higher power=20 levels the vacuum leak would probably have little noticeable = effect.  I=20 would expect that the most significant effect would be at or near idle=20 conditions.  Since smooth idle seems to be difficult to attain in = many=20 installations, it would certainly be prudent to try and eliminate this = issue=20 (not to mention that it would be good practice to get it = right.)
 
Questions
1.  There seems to be a very small = gap=20 (~0.010") between the fuel rail seating surface and the top of the = original=20 diffuser.  It looks like there should be a grommet that makes up = the=20 difference and provides a positive seal.  To anyone who has = disassembled a=20 20B, is there a grommet/seal the sits on top of the = diffuser?
 
2.  Same question as 1, for anyone = who has=20 disassembled a 93-95 13B (13B-REW, I believe)?
 
3.  Anyone have a source for the = proper 20B=20 diffusers?
 
Any opinions and/or remedy suggestions are appreciated.
 
Thanks,
Joe
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