Return-Path: Received: from mailout1.pacific.net.au ([61.8.0.84] verified) by logan.com (CommuniGate Pro SMTP 4.2.8) with ESMTP id 608005 for flyrotary@lancaironline.net; Sat, 15 Jan 2005 03:23:35 -0500 Received-SPF: none receiver=logan.com; client-ip=61.8.0.84; envelope-from=peon@pacific.net.au Received: from mailproxy2.pacific.net.au (mailproxy2.pacific.net.au [61.8.0.87]) by mailout1.pacific.net.au (8.12.3/8.12.3/Debian-7.1) with ESMTP id j0F8N2A6015373 for ; Sat, 15 Jan 2005 19:23:02 +1100 Received: from ar1 (ppp2059.dyn.pacific.net.au [61.8.32.89]) by mailproxy2.pacific.net.au (8.12.3/8.12.3/Debian-7.1) with SMTP id j0F8MkxG004748 for ; Sat, 15 Jan 2005 19:22:47 +1100 Message-ID: <003f01c4fadb$2aec2f40$5920083d@ar1> From: "Leon" To: "Rotary motors in aircraft" References: Subject: Experiement vs Theory take 2 was Re: [FlyRotary] Re: water cooled matrix in oil pan Date: Sat, 15 Jan 2005 19:21:07 +1100 MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_0039_01C4FB37.5D35DA80" X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook Express 6.00.2800.1409 X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2800.1409 This is a multi-part message in MIME format. ------=_NextPart_000_0039_01C4FB37.5D35DA80 Content-Type: multipart/alternative; boundary="----=_NextPart_001_003A_01C4FB37.5D35DA80" ------=_NextPart_001_003A_01C4FB37.5D35DA80 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Hi Al, THEORY vs EXPERIMENT I've been studing the development of the rotary for 30+ years. I also = had the dubious priviledge of working on NSU Ro80s in the early '70s. = Nothing that ever came out of the NSU Factory ever worked (for long). = MTBF of the engines was around 15,000 - 17,000 miles!!! All good = German Engineering Theory that didn't EVER work (for long) in practice. = For sure, the NSU Ro80 chassis itself was a magnificent road car = (thanks to Audi knowhow), but the powerplant and drivetrain was a = mobile (more often than not IM-mobile) mechanical disaster from day 1. = They were NEVER able to satisfactorily fix it. Many a divorce and many = a heart attack was caused by these infernal contraptions. =20 It also took Mazda several years to get it right. By 1974, with the = intro of 3mm steel seals, different alloy in the rotor housings, and = proper teflon/silicone water seals, most of the problems were fixed. = But it was mainly by trial and error, and observation, and sheer = dogged perseverence. The exercise nearly sent Mazda broke too. In the = end, it was what worked in practice that mattered. Bugger the theory!! By 1974, Mazda had fixed most of the basic intractable sealing = problems. Looked after, the engines would go well over 250,000 miles = between overhauls. Now, with the REW powered RX7s, the motors are so = reliable that Mazda don't even have an engine reconditioning facility = in Oz any more. However, I still get ignorant people coming up to me = telling me that rotary engines are no good because the "seals blow". = (But that is another issue) .. I do digress .... SUMP MOUNTED HEAT EXCHANGERS Back to the matter at hand. Personally, I can't see what oil flow rate = has to do with convective flow/heat transfer, at least in the = application I'm proposing. Maybe I'm like the bumble bee that is too = ignorant of physics to know what can't work?? As it happens, the flow = I've used is a kinematic inversion of a normal oil/water heat exchanger = !!! =20 The coolant is INSIDE the tubes) of the heat exchanger, and is at = normal block pressure (15-22 PSI). The hot oil is passing over the = EXTERNAL fins of the heat exchanger, so it will experience TURBULENT = flow. Really good for convective heat transfer, or so they tell me!! The HOT oil actually enters from the top and flows (drizzles - depending = on engine RPM) down to the bottom of the pan over the fins and is = continually removed by the pick-up, which is below the heat exchanger. = Bulk oil flow rate will depend on engine RPM. As Mike Wynn said, if = the oil dwells on the fins a little, so much the better. There's = (relatively) cold water running through the tube(s), taken from the cold = side of the rad, so it is just going to cool the oil a bit more ... =20 The flow of cooling water can be controlled either by a thermostat, a = manual heater tap, or an electronically controlled EBP. (Electronic = Booster Pump - shock horror Batman!) In cold climates, you want to be = able to warm the oil quickly, and keep it at near water temp when = running hard. As I mentioned in a previous post, the best heat exchanger unit I've = found is something like a Hayden auto tranny oil cooler. See attached = pic. The one on the right is about the G_O. Also see: http://www.powerdemon.com/Transaver.html Different sizes are available, and depending on the heat rejection = capacity required, (and available space), often it is better to run 2 = or 3 small ones in parallel rather than one giant one. So to summarise, COLD water passes through the tube(s), and the oil = flows over the outside fins. NOT expensive, NOT heavy, and really = easy to engineer, and a lot more compact than an oil/air heat = exchanger, AND no high pressure oil hoses to spew hot oil at 70+ PSI = all over your pristine engine bay and canopy!! Cheers, Leon ----- Original Message -----=20 From: Al Gietzen=20 To: Rotary motors in aircraft=20 Sent: Saturday, January 15, 2005 1:44 PM Subject: [FlyRotary] Re: water cooled matrix in oil pan And BTW, folks. A good balance of theory and experiment is where it's = at. Let' not forget that without the theory and engineering; there = wouldn't be a rotary engine. Al ------=_NextPart_001_003A_01C4FB37.5D35DA80 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
Hi Al,
 
THEORY vs EXPERIMENT
 
I've been studing the development of = the rotary for=20 30+ years.  I also had the dubious priviledge of working on = NSU Ro80s=20 in the early '70s.   Nothing that ever came out of the NSU = Factory=20 ever worked (for long).  MTBF of the engines was  around = 15,000 -=20 17,000 miles!!!  All good = German=20 Engineering Theory that didn't EVER work (for long) in = practice. =20
 
For sure,  the NSU Ro80 chassis=20 itself was a magnificent road car (thanks to Audi knowhow),  = but the=20 powerplant and drivetrain was a mobile (more often than not IM-mobile)=20 mechanical disaster from day 1. They were NEVER able to = satisfactorily fix=20 it.   Many a divorce and many a heart attack was caused by = these=20 infernal contraptions. 
 
It also took Mazda several years = to get it=20 right.  By 1974,  with the intro of 3mm steel seals,  = different=20 alloy in the rotor housings,  and proper teflon/silicone water = seals, =20 most of the problems were fixed.  But it was mainly by trial = and=20 error,  and observation,  and sheer dogged perseverence. The = exercise=20 nearly sent Mazda broke too.  In the end,  it was what worked = in=20 practice that mattered.  Bugger the theory!!
 
By 1974,  Mazda had fixed most of = the basic=20 intractable sealing problems. Looked after,  the engines would = go well=20 over 250,000 miles between overhauls. Now,  with the REW = powered=20 RX7s,  the motors are so reliable  that Mazda don't even have = an=20 engine reconditioning facility in Oz any = more.  However, I still=20 get ignorant people coming up to me telling me that rotary engines are = no good=20 because the "seals blow". (But that is another issue) .. I do digress=20 ....
 
SUMP MOUNTED HEAT = EXCHANGERS
 
Back to the matter at hand.  = Personally, =20 I can't see what oil flow rate has to do with convective flow/heat=20 transfer,  at least in the application I'm proposing.  Maybe = I'm like=20 the bumble bee that is too ignorant of physics to know what can't = work?? =20 As it happens,  the flow = I've used is a=20 kinematic inversion of a normal oil/water heat=20 exchanger !!!  
 
The coolant is INSIDE the tubes) of the = heat=20 exchanger,  and is at normal block pressure (15-22 PSI). The = hot oil=20 is passing over the EXTERNAL fins of the heat exchanger,  so = it will=20 experience TURBULENT flow. Really good for convective heat=20 transfer,  or so they tell me!!
 
The HOT oil actually enters from the = top and flows=20 (drizzles - depending on engine RPM)  down to the bottom of the pan over the fins and is = continually=20 removed by the pick-up,  which is below the heat = exchanger.  Bulk=20 oil flow rate will depend on engine RPM.  As Mike Wynn said, =20 if the oil dwells on the fins a little,  so much the=20 better.  There's (relatively) cold water running through the=20 tube(s), taken from the cold side of the rad, so it is just = going to=20 cool the oil a bit more ... 
 
The flow of cooling water can be = controlled either=20 by a thermostat,  a manual heater tap,  or an electronically=20 controlled EBP.  (Electronic Booster Pump - shock horror = Batman!)  In=20 cold climates,  you want to be able to warm the oil quickly,  = and keep=20 it at near water temp when running hard.
 
As I mentioned in a previous = post,  the best=20 heat exchanger unit I've found is something like a Hayden auto tranny = oil=20 cooler.  See attached pic. The one on the right is about the=20 G_O.  Also see:
 
http://www.powerdemon.c= om/Transaver.html
 
Different sizes are available,  = and depending=20 on the heat rejection capacity required, (and available = space),  often=20 it is better to run 2 or 3 small ones in parallel rather than one = giant=20 one.
 
So to summarise,  COLD water = passes through=20 the tube(s),  and the oil flows over the outside fins.  NOT=20 expensive,  NOT heavy,  and really easy to engineer,  and = a lot=20 more compact than an oil/air heat exchanger,  AND no high pressure = oil=20 hoses to spew hot oil at 70+ PSI all over your pristine engine bay and=20 canopy!!
 
Cheers,
 
Leon
----- Original Message -----
From:=20 Al = Gietzen=20
Sent: Saturday, January 15, = 2005 1:44=20 PM
Subject: [FlyRotary] Re: water = cooled=20 matrix in oil pan

 

And BTW, = folks. A=20 good balance of theory and experiment is where it=92s at.  Let=92 = not forget=20 that without the theory and engineering; there wouldn=92t be a rotary=20 engine.

 

Al

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