X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Sender: To: lml@lancaironline.net Date: Sat, 07 Mar 2009 20:33:38 -0500 Message-ID: X-Original-Return-Path: Received: from mail11.syd.optusnet.com.au ([211.29.132.192] verified) by logan.com (CommuniGate Pro SMTP 5.2.12) with ESMTPS id 3532354 for lml@lancaironline.net; Sat, 07 Mar 2009 20:05:36 -0500 Received-SPF: pass receiver=logan.com; client-ip=211.29.132.192; envelope-from=fredmoreno@optusnet.com.au Received: from Razzle ([202.139.5.198]) (authenticated sender fredmoreno) by mail11.syd.optusnet.com.au (8.13.1/8.13.1) with ESMTP id n2814JFA023462; Sun, 8 Mar 2009 12:04:35 +1100 From: "Fred Moreno" X-Original-To: "'randy snarr'" , "Lancair Mail" Subject: RE: oil cooling X-Original-Date: Sun, 8 Mar 2009 10:04:14 +0900 X-Original-Message-ID: <88184A75AEE547D08237BD0AA5CAE863@Razzle> MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_000_0048_01C99FD5.4B423390" X-Priority: 3 (Normal) X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook, Build 10.0.6838 In-Reply-To: X-MIMEOLE: Produced By Microsoft MimeOLE V6.00.2900.5579 Importance: Normal Thread-Index: AcmfJOnyH/l81g92R1u2Zm0QTuJY+gAYZrug This is a multi-part message in MIME format. ------=_NextPart_000_0048_01C99FD5.4B423390 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0049_01C99FD5.4B423390" ------=_NextPart_001_0049_01C99FD5.4B423390 Content-Type: text/plain; charset="us-ascii" Content-Transfer-Encoding: quoted-printable Hi Randy:=20 =20 Invariably the high oil temperatures come from inadequate air flow = through the oil cooler either due to inadequate pressure available to push air through the cooler, or (effectively the same thing) too much friction in = the air flow delivered to the cooler which saps the pressure drop.=20 =20 The ugly solution is to enlarge the NACA duct which is probably too = small to take in the air flow required. You need to deliver more flow and ram pressure to the cooler. =20 =20 As an interim measure, if you can go to a larger SCAT hose, do it as the SCAT hose has a very high friction loss compared to smooth pipe due to = the corrugations inside. However from the pictures I suspect that the choke point is the NACA duct and the throat within the NACA duct. =20 Less painful than a new NACA duct is to put an extension on the NACA = duct to scoop in more air. The idea is to reach outside of the boundary layer = and scoop in some high speed air from the free stream. This should improve = the ram pressure and thus the pressure drop available across the oil cooler. Make something of foam and fibreglass putting some release tape on the = cowl and inside of the NACA duct so the fibreglass can be pulled off and finished, trim, and then fit with duct tape initially to test. Once you = get something that works, you can paint and perhaps attach the new raised = inlet lip with a couple of screws or adhesive and not have to fiddle with the = cowl or cowl paint. Some experimentation will be required. See sketch = below.=20 Another possibility that avoids fiddling with the cowl but which will be more work is to put a plenum on the oil cooler discharge and carry the = hot air oil cooler exhaust to a low pressure discharge point to improve the delta P across the oil cooler. The lowest pressure point would be at = the cowl hot air exit. As the hot cowl air accelerates out the exhaust duct = and out the belly, velocity rises and static pressure falls. If you can discharge the oil cooler air at that location, you will get a bit of = suction that improves the air flow through the oil cooler. See sketch below.=20 Let us know what you tried and if it works.=20 =20 Fred Moreno =20 -----Original Message----- From: randy snarr [mailto:randylsnarr@yahoo.com]=20 Sent: Saturday, 7 March 2009 9:54 AM To: lml@lancaironline.net Subject: oil cooling =20 All, I am looking for suggestions on how to lower my oil temps. I am running = an IO 320 on the original 235 frame. On warm days in a climb I have trouble keeping them below 220. I usually have to flatten out the climb to cool things down if they get up to 230 or so. Once in cruise it is not a = problem and they will settle around 210. I would like to get them down to 190 if possible. The problem is on a 75 plus degree day when the airplane is already warm from flying and I need to go again. I am picking up outside = air on a naca vent on the left side of the cowl. There is a 6" length scat = tube (4"diameter) connecting the cowl inlet to a glass expansion section that = is connected to the cooler.(see pics). It just dumps in the lower cowl = area. I am running a Stewart Warner oil cooler that many have had success = with. I have tried larger hoses to the cooler now using -8's and also removed = the 90 deg fittings I used to have to improve flow. I suspect my ducting and or connection to the cooler could be improved. = I am looking for suggestions that could be done without cutting the cowl. Thanks in advance! Randy L.Snarr =20 ------=_NextPart_001_0049_01C99FD5.4B423390 Content-Type: text/html; charset="us-ascii" Content-Transfer-Encoding: quoted-printable

Hi Randy:

 

Invariably the high oil temperatures come from = inadequate air flow through the oil cooler either due to inadequate pressure available = to push air through the cooler, or (effectively the same thing) too much = friction in the air flow delivered to the cooler which saps the pressure drop. =

 

The ugly solution is to enlarge the NACA duct which = is probably too small to take in the air flow required.  You need to =  deliver more flow and ram pressure to the cooler. 

 

As an interim measure, if you can go to a larger SCAT = hose, do it as the SCAT hose has a very high friction loss compared to smooth = pipe due to the corrugations inside.  However from the pictures I = suspect that the choke point is the NACA duct and the throat within the NACA = duct.

 

Less painful than a new NACA duct is to put an = extension on the NACA duct to scoop in more air.  The idea is to reach outside = of the boundary layer and scoop in some high speed air from the free = stream.  This should improve the ram pressure and thus the pressure drop = available across the oil cooler.  Make something of foam and fibreglass = putting some release tape on the cowl and inside of the NACA duct so the fibreglass = can be pulled off and finished, trim, and then fit with duct tape initially to = test.  Once you get something that works, you can paint and perhaps attach the = new raised inlet lip with a couple of screws or adhesive and not have to = fiddle with the cowl or cowl paint.  Some experimentation will be = required.   See sketch below.

Another possibility that avoids fiddling with the = cowl but which will be more work is to put a plenum on the oil cooler = discharge and carry the hot air oil cooler exhaust to a low pressure discharge = point to improve the delta P across the oil cooler.  The lowest pressure = point would be at the cowl hot air exit.  As the hot cowl air accelerates = out the exhaust duct and out the belly, velocity rises and static pressure = falls.  If you can discharge the oil cooler air at that location, you will get a = bit of suction that improves the air flow through the oil cooler.  See sketch = below.

Let us know what you tried and if it works. =

 

Fred Moreno

 

-----Original Message-----
From: randy snarr [mailto:randylsnarr@yahoo.com]
Sent: Saturday, 7 March = 2009 9:54 AM
To: = lml@lancaironline.net
Subject: oil = cooling

 

All,
I am looking for suggestions on how to lower my oil temps. I am = running an IO 320 on the original 235 frame. On warm days in a climb I have trouble = keeping them below 220. I usually have to flatten out the climb to cool things = down if they get up to 230 or so. Once in cruise it is not a problem and = they will settle around 210. I would like to get them down to 190 if possible. = The problem is on a 75 plus degree day when the airplane is already warm = from flying and I need to go again. I am picking up outside air on a naca = vent on the left side of the cowl. There is a 6" length scat tube (4"diameter) connecting the cowl inlet to a glass expansion = section that is connected to the cooler.(see pics). It just dumps in the lower cowl = area.
I am running a Stewart Warner oil cooler that many have had success = with.

I have tried larger hoses to the cooler now using -8's and also = removed the 90 deg fittings I used to have to improve flow.
I suspect my ducting and or connection to the cooler could be = improved. I am looking for suggestions that could be done without cutting the = cowl.

Thanks in advance!

Randy L.Snarr

 

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