Return-Path: Received: from [24.25.9.101] (HELO ms-smtp-02-eri0.southeast.rr.com) by logan.com (CommuniGate Pro SMTP 4.3c3) with ESMTP id 854570 for flyrotary@lancaironline.net; Mon, 04 Apr 2005 15:13:16 -0400 Received-SPF: pass receiver=logan.com; client-ip=24.25.9.101; envelope-from=eanderson@carolina.rr.com Received: from edward2 (cpe-024-074-185-127.carolina.res.rr.com [24.74.185.127]) by ms-smtp-02-eri0.southeast.rr.com (8.12.10/8.12.7) with SMTP id j34JCQ0W007518 for ; Mon, 4 Apr 2005 15:12:27 -0400 (EDT) Message-ID: <001201c5394a$3e4c0620$2402a8c0@edward2> From: "Ed Anderson" To: "Rotary motors in aircraft" References: Subject: Re: [FlyRotary] Re: A lot to learn Date: Mon, 4 Apr 2005 15:12:28 -0400 MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_000E_01C53928.B6FEE3C0" 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_000E_01C53928.B6FEE3C0 Content-Type: multipart/alternative; boundary="----=_NextPart_001_000F_01C53928.B6FEE3C0" ------=_NextPart_001_000F_01C53928.B6FEE3C0 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable John, I was referring to curvature of the duct walls which should impose on = the higher pressure area in front of the core. By pushing the duct = walls into the higher pressure area in front of the core, the higher = pressure helps to keep the flow from separating as it flows along the = wall of the duct. Here are a couple of photos. One photo (MVC-033s) shows some = templates I used and shows the outline of my duct with the opening = toward the bottom and the core toward the top of the photo. Notice how = the outer walls of the template stay close to the centerline until = diverging near the core (top). The inlet is approx 6" long from inlet = to core which is too short for the Streamline duct coordinates I modeled = it on - So I try some creative things with the curve of the duct walls = which I believe worked out. I make the curvature more extreme than the = stream line duct. A second photo shows the current set of ducts I am flying with which = have a total combined opening of 28 sq inches for both cores. Here I = actually decrease the size of the duct after the opening until I expand = it before the core. My theory is that this initially accelerates the = air entering my inlet giving it higher energy which helps maintain a = higher pressure dome in front of the core> This in turn permits me to = curve the duct walls more without separation of flow. Separation of = course creates eddies which effectively blocks flow through a portion of = the core reducing your cooling effectiveness. =20 At least for the power my engine is putting out at the current time 28 = sq inches appears to be the minimum total duct opening that I can fly = with. I have tolerable temps on climbout (200F oil, 210F coolant) and = 170-180F at my nominal cruise (5600 rpm). If I go to WOT at 7500 MSL the = temps will slowly climb to the 190F range and stabilize - indicating = that I am probably about as close to the minimum cooling as advisable. = To give myself a bit more margin, I will probably open the duct area up = from the current 28 sq inch to 38 sq inch - in the future - maybe {:>) Ed ----- Original Message -----=20 From: John Slade=20 To: Rotary motors in aircraft=20 Sent: Monday, April 04, 2005 2:49 PM Subject: [FlyRotary] Re: A lot to learn The only part that really counted was understanding what was = necessary to keep air flow from separating from the walls in a diffuser. = =20 er.... what was that bit? I must have missed it. :) John ------=_NextPart_001_000F_01C53928.B6FEE3C0 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
John,
 
I was referring to curvature of the = duct walls=20 which should impose on the higher pressure area in front of the = core.  By=20 pushing the duct walls into the higher pressure area in front of the = core, the=20 higher pressure helps to keep the flow from separating as it flows along = the=20 wall of the duct.
Here are a couple of photos.  =   One  photo (MVC-033s) shows some templates I used and=20 shows the outline of my duct with the opening toward the bottom and = the=20 core toward the top of the photo.  Notice how the outer walls of = the=20 template stay close to the centerline until diverging near the core = (top). =20 The inlet is approx 6" long from inlet to core which is too short for = the=20 Streamline duct coordinates I modeled it on - So I try some creative = things with=20 the curve of the duct walls which I believe worked out.  I make the = curvature more extreme than the stream line duct.
 
 
A second photo shows the current = set of ducts=20 I am flying with which have a total combined opening of 28 sq inches for = both=20 cores.  Here I actually decrease the size of the duct after the = opening=20 until I expand it before the core.  My theory is that this = initially=20 accelerates the air entering my inlet giving it higher energy which = helps=20 maintain a higher pressure dome in front of the core>  This in=20 turn permits me to curve the duct walls more without separation of=20 flow.  Separation of course creates eddies which effectively blocks = flow=20 through a portion of the core reducing your cooling effectiveness.  =
 
At least for the power my engine is = putting out at=20 the current time 28 sq inches appears to be the minimum total duct = opening that=20 I can fly with.  I have tolerable temps on climbout (200F oil, 210F = coolant) and 170-180F at my nominal cruise (5600 rpm). If I go to WOT at = 7500=20 MSL the temps will slowly climb to the 190F range and stabilize=20 - indicating that I am probably about as close to the minimum = cooling as=20 advisable.  To give myself a bit more margin, I will probably open = the duct=20 area up from the current 28 sq inch to 38 sq inch - in the future - = maybe=20 {:>)
 
Ed
----- Original Message -----
From:=20 John=20 Slade
Sent: Monday, April 04, 2005 = 2:49=20 PM
Subject: [FlyRotary] Re: A lot = to=20 learn

The only part  that really = counted was=20 understanding what was necessary to keep air flow from separating from = the=20 walls in a diffuser.   
 
er.... what was=20 that bit? I must have missed it. :)
John
 
 
 
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