X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Received: from ms-smtp-01.southeast.rr.com ([24.25.9.100] verified) by logan.com (CommuniGate Pro SMTP 5.1.10) with ESMTP id 2185676 for flyrotary@lancaironline.net; Wed, 18 Jul 2007 15:17:20 -0400 Received-SPF: pass receiver=logan.com; client-ip=24.25.9.100; envelope-from=eanderson@carolina.rr.com Received: from edward2 (cpe-024-074-103-061.carolina.res.rr.com [24.74.103.61]) by ms-smtp-01.southeast.rr.com (8.13.6/8.13.6) with SMTP id l6IJGTXN005845 for ; Wed, 18 Jul 2007 15:16:30 -0400 (EDT) Message-ID: <005801c7c970$38e4fe40$2402a8c0@edward2> From: "Ed Anderson" To: "Rotary motors in aircraft" References: Subject: Re: [FlyRotary] Oil cooler inlet Date: Wed, 18 Jul 2007 15:17:02 -0400 MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_0054_01C7C94E.B17B2C20" 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-Virus-Scanned: Symantec AntiVirus Scan Engine This is a multi-part message in MIME format. ------=_NextPart_000_0054_01C7C94E.B17B2C20 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0055_01C7C94E.B17B2C20" ------=_NextPart_001_0055_01C7C94E.B17B2C20 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable I agree with Ernest (even if he clearly must be completely and totally = wrong {:>)), difficult to find any rule of thumb parameters for a vane.=20 I have marked the region (red color) in you duct that I think is most = critical in helping the slower moving boundary layer turn and to = prevent/minimize its effect on the rest of the air flow. Once you have = helped the boundary layer accelerate and get around the curve, then I = believe the vane has done about all it can. I would start out the vane = approx 1/2 the depth of your opening in order to try and capture some of = the higher velocity air outside the boundary layer. I would then = compress that air toward the roof of the duct by reducing the distance = between vane and top of duct in order to increase its velocity. =20 Depending on how fancy you want to make the vane, I though that perhaps = adding slots so the higher velocity air in the lower part of the duct = could help the boundary flow make the turn and further energize it.=20 Don't have a clue as to how much this well help, but I do believe it = will help some. Ed=20 ----- Original Message -----=20 From: Al Gietzen=20 To: Rotary motors in aircraft=20 Sent: Wednesday, July 18, 2007 2:15 PM Subject: [FlyRotary] Oil cooler inlet Attached is a more accurate drawing of the oil cooler inlet x-section; = with a few pressure measurements. Based on temps, the average flow = velocity into the scoop is about 85 fps (57 mph) - all at about 160 mph = airplane speed. (Point "A" is really about 4-5" ahead of the scoop.) Ernest; since you were first to propose the internal airflow, or vane; = what would you think is the appropriate shape, position, etc. I can = understand your non-participation on the 'other' list after being = labeled "completely and totally wrong". (That's what you get for not = reading his bookJ). Others ideas obliviously of interest as well - ED? Al -------------------------------------------------------------------------= ----- -- Homepage: http://www.flyrotary.com/ Archive and UnSub: = http://mail.lancaironline.net:81/lists/flyrotary/List.html ------=_NextPart_001_0055_01C7C94E.B17B2C20 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
I agree with Ernest (even if he clearly must be = completely=20 and totally wrong {:>)), difficult to find any rule of thumb = parameters for a=20 vane. 
 
 I have marked the region (red color) =  in you=20 duct that I think is most critical in helping the slower moving boundary = layer=20 turn and to prevent/minimize its effect on the rest of the air = flow.  Once=20 you have helped the boundary layer accelerate and get around the curve, = then I=20 believe the vane has done about all it can.  I would start out the = vane=20 approx 1/2 the depth of your opening in order to try and capture some of = the=20 higher velocity air outside the boundary layer. I would then compress = that air=20 toward the roof of the duct by reducing the distance between vane and = top of=20 duct in order to increase its velocity. 
 
Depending on how fancy you want to make the = vane, I though=20 that perhaps adding slots so the higher velocity air in the lower part = of the=20 duct could help the boundary flow make the turn and further energize it. =
 
Don't have a clue as to how much this well help, = but I do=20 believe it will help some.
 
Ed 
----- Original Message -----
From:=20 Al = Gietzen=20
Sent: Wednesday, July 18, 2007 = 2:15=20 PM
Subject: [FlyRotary] Oil cooler = inlet

Attached is a more = accurate=20 drawing of the oil cooler inlet x-section; with a few pressure = measurements.=20  Based on temps, the = average flow velocity into the scoop is about 85 fps (57 = mph) =96=20 all at about 160 mph airplane speed. (Point =93A=94 is really about = 4-5=94 ahead of=20 the scoop.)

 

Ernest; since you were = first to=20 propose the internal airflow, or vane; what would you think is the = appropriate=20 shape, position, etc.  I can understand your non-participation on = the=20 =91other=92 list after being labeled =93completely and totally = wrong=94. (That=92s what=20 you get for not reading his bookJ).

 

Others ideas = obliviously of=20 interest as well =96 ED?

 

Al


--
Homepage:  http://www.flyrotary.com/
Archive and=20 UnSub:  =20 = http://mail.lancaironline.net:81/lists/flyrotary/List.html
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