X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Received: from cdptpa-omtalb.mail.rr.com ([75.180.132.120] verified) by logan.com (CommuniGate Pro SMTP 5.2c1) with ESMTP id 2504433 for flyrotary@lancaironline.net; Sun, 25 Nov 2007 14:26:34 -0500 Received-SPF: pass receiver=logan.com; client-ip=75.180.132.120; envelope-from=eanderson@carolina.rr.com Received: from edward2 ([24.74.103.61]) by cdptpa-omta01.mail.rr.com with SMTP id <20071125192555.ORBH27254.cdptpa-omta01.mail.rr.com@edward2> for ; Sun, 25 Nov 2007 19:25:55 +0000 Message-ID: <001e01c82f99$5f34d9a0$2402a8c0@edward2> From: "Ed Anderson" To: "Rotary motors in aircraft" References: Subject: Re: [FlyRotary] Re: what are they Date: Sun, 25 Nov 2007 14:28:34 -0500 MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_001A_01C82F6F.760B8180" 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 This is a multi-part message in MIME format. ------=_NextPart_000_001A_01C82F6F.760B8180 Content-Type: multipart/alternative; boundary="----=_NextPart_001_001B_01C82F6F.760B8180" ------=_NextPart_001_001B_01C82F6F.760B8180 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable I can't understand anybody not pouring over that reporting (repeatedly) = it makes such interesting reading {:>)) However, I have read the report and I agree the radiators they are = discussing have no fins. The report describes two type cores they = tested. One was the flat plate cores tested for heat transfer and a set = of dummy cores made out of copper strips for testing drag and mass flow. = Clearly the only one of interest regarding heat transfer are the actual = flat plate cores. =20 My interpretation of the flat plates cores are they are constructed of = a stack of flat channels that run from one side to the other and = extending from the front of the core to the rear of the core. So a = stack of hollow, thin plates carrying the heated coolant which are like = 9 - 13" deep (from front of core to rear of core), 1/8" thick and span = across the width of the core.=20 Attached is a photo of one extracted from the report - which is = clearly quite thick, appears to have side tanks (holes on each side for = coolant?) and a number of plates in the stack. So, at least, = conceptually (with the exception of no fins), the cores do not appear to = be functionally different that my GM cores. A number of stacked plates = running from tank to tank, the plates being approx 1/8" thick and approx = 3 1/2" deep and approx 10" wide - with plenty of fins of course. They are certainly different in construction, bigger, thicker, etc than = our cores, the data was extrapolated to cores just 4" thick (deep). So = while I agree they are certainly not a direct match, I am convinced that = some of the test results might have some applicability to air flowing = through our cores relative to heat extraction. After all we are flowing = air over heated metal {:>) I certainly agree that the drag of our finned radiators would be much = higher, pressure drop greater - but what about the heat extracted per = inch of thickness?. However, I thought the report might be of interest because, if was = one of the few studies I have come across addressing the effects of core = thickness on the parameters we are interested in. At least it shows for = those cores, that thickness does contribute significantly to heat = rejection. But, you may be correct - too different to be applicable. Ed =20 ----- Original Message -----=20 From: Tracy Crook=20 To: Rotary motors in aircraft=20 Sent: Sunday, November 25, 2007 11:21 AM Subject: [FlyRotary] Re: what are they I don't think you guys are actually reading the NACA paper about these = rads. The flat plate rads in the paper have NO FINS at all and do not have = multiple layers of flat tubes, only a continuous flat tube from front to = back (as much as 20" !!! ) with NO FINS on the tubes. I have only seen = this type of rad in a museum so I'm not surprised that people are a bit = confused about this. That is why I said this study is not applicable to = our installations. =20 Ed K. may be correct that a similar core might be used inside water = to oil coolers. ------=_NextPart_001_001B_01C82F6F.760B8180 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
I can't understand anybody not pouring over that = reporting=20 (repeatedly) it makes such interesting reading {:>))
 
 
However,  I have read the report =  and=20  I agree the radiators they are discussing have no fins.  The = report=20 describes two type cores they tested.  One was the flat plate = cores=20 tested for heat transfer and a set of dummy cores made out of copper = strips for=20 testing drag and mass flow. Clearly the only one of interest regarding = heat=20 transfer are the actual flat plate cores. 
 
My interpretation of the flat plates cores =  are=20 they are constructed of a stack of  flat channels that run from one = side=20  to the other and extending from the front of the core to the rear = of the=20 core.  So a stack of hollow, thin plates carrying the = heated=20 coolant which are like 9 - 13" deep (from front of core to rear of = core), 1/8"=20 thick and span across the width of the core. 
 
 Attached is a photo of one =  extracted from=20 the report - which is clearly quite thick, appears to have side tanks = (holes on=20 each side for coolant?) and a number of plates in the stack.  So, = at least,=20 conceptually (with the exception of no fins), the cores do not appear to = be=20 functionally different that my GM cores.  A number of stacked = plates=20 running from tank to tank, the plates being approx 1/8" thick and approx = 3 1/2"=20 deep and approx 10" wide - with plenty of fins of course.
 
They are certainly different in construction, = bigger,=20 thicker, etc than our cores, the data was extrapolated to cores just 4" = thick=20 (deep).  So while I agree they are certainly not a direct match, I = am=20 convinced that some of the test  results might have some=20 applicability   to air flowing through our cores relative to = heat=20 extraction. After all we are flowing air over heated metal=20 {:>)
 
I certainly agree that the drag of our finned = radiators=20 would be much higher, pressure drop greater - but what about the heat = extracted=20 per inch of thickness?.
 
However,  I thought the report  might = be of=20 interest because,  if was one of the few studies I have come across = addressing the effects of core thickness on the parameters we are=20 interested in.  At least it shows for those cores, that thickness = does=20 contribute significantly to heat rejection.
 
But, you may be correct - too different to be=20 applicable.
 
Ed
 
 
----- Original Message -----
From:=20 Tracy=20 Crook
Sent: Sunday, November 25, 2007 = 11:21=20 AM
Subject: [FlyRotary] Re: what = are=20 they

I don't think you guys are actually reading the NACA paper about = these=20 rads.
 
  The flat plate rads in the paper have NO FINS at all and = do not=20 have multiple layers of flat tubes, only a continuous flat tube from = front to=20 back (as much as 20" !!! ) with NO FINS on the tubes.  I = have only=20 seen this type of rad in a museum so I'm not surprised that people are = a bit=20 confused about this.  That is why I said this study is not = applicable to=20 our installations. 
 
Ed K.  may be correct that a similar core might be used = inside water=20 to oil coolers.
 
 
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