X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Received: from [64.4.51.82] (HELO hotmail.com) by logan.com (CommuniGate Pro SMTP 4.3.5) with ESMTP id 1024262 for flyrotary@lancaironline.net; Mon, 27 Jun 2005 22:41:18 -0400 Received-SPF: pass receiver=logan.com; client-ip=64.4.51.82; envelope-from=lors01@msn.com Received: from mail pickup service by hotmail.com with Microsoft SMTPSVC; Mon, 27 Jun 2005 19:40:32 -0700 Message-ID: Received: from 64.4.51.220 by BAY107-DAV10.phx.gbl with DAV; Tue, 28 Jun 2005 02:40:32 +0000 X-Originating-IP: [64.4.51.220] X-Originating-Email: [lors01@msn.com] X-Sender: lors01@msn.com From: "Tracy Crook" To: "Rotary motors in aircraft" References: Subject: Re: [FlyRotary] Re: NPG + use / Air cushion Date: Mon, 27 Jun 2005 22:40:02 -0400 MIME-Version: 1.0 Content-Type: multipart/related; type="multipart/alternative"; boundary="----=_NextPart_000_010F_01C57B69.27F1D5B0" X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: MSN 9 X-MimeOLE: Produced By MSN MimeOLE V9.10.0011.1703 Seal-Send-Time: Mon, 27 Jun 2005 22:40:02 -0400 X-OriginalArrivalTime: 28 Jun 2005 02:40:32.0858 (UTC) FILETIME=[C14B7BA0:01C57B8A] This is a multi-part message in MIME format. ------=_NextPart_000_010F_01C57B69.27F1D5B0 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0110_01C57B69.27F1D5B0" ------=_NextPart_001_0110_01C57B69.27F1D5B0 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Georges, the 'wall paper' is back. I love cats but make it go away : = ) OK, I'll give this a stab. But first an observation. I can't help = laughing every time I read something on this thread because for the most = part, everyone is right. It's just that everyone is right about a = different part of the subject. =20 In terms of *continuous* power production, the rotary is limited by = the number of BTU that can be dissipated through the combustion chamber = walls. There is nothing (in common use) that can equal the heat = dissipation ability of boiling water AS LONG AS IT DOES NOT PROGRESS TO = FILM BOILING. The available data suggests that the rotary relies on = nucleate boiling. This is not a simple subject so Google these terms = if you are not familiar with them. Because film boiling (or overt steam pockets, different subject) will = result in skyrocketing combustion chamber wall temps (and a long term = failure caused by cracking around the spark plug bosses in rotary = engines), you might conclude that PG would solve the problem. And it = might. It depends on the critical wall temperature that causes this = failure mode (which I don't know). At the power level at which nucleate = boiling occurs (about 170 continuous HP I think) PG use will cause = higher wall temps than EG. That is the reason I am sticking with 50/50 = EG & H2O. This is a related subject to the oft belabored subject of water pump = flow rates. If the flow rate is not high enough, nucleate boiling will = quickly degenerate into film boiling. =20 From this point, the discussion could go off into innumerable = permutations for which my beer befuddled brain is not prepared for this = evening. I'd better wait to comment on the air cushion. Everybody is = right on that too. Tracy=20 Rusty "boiling removes heat" I have a hard time understanding that = quote. When racers started using PG they were able to run 15:1 = compression on "pump" fuel=20 due to the fact that boiling coolant created hot spots in the = combustion chambers & in turn causes pre-ignition (they also reversed = the coolant flow direction to bring the cooled coolant to the hottest = part of the system, & all this with no pressure cap. The one = disadvantage I see in the 13b is that it can't handle the potential = higher boiling point of PG. I have a 3.0 L V6 that I reversed the = cooling system on to use in the Christavia (that was before I got hooked = on the 13B) Georges B. -------Original Message------- From: Rotary motors in = aircraft Date: 06/27/05 12:13:55 To: Rotary motors in = aircraft Subject: [FlyRotary] Re: NPG + use in aircraft?? Has anyone used the NPG+ coolant in an aircraft? What are the = pros and cons? =20 NPG+ is standard issue in the 912S, and perhaps the 912 also. = If I'm not mistaken, Dave Leonard is running NPG+ now, and I'm running = NPG-R. =20 The Evan's marketing folks can give you way more pros than I can = think of, but I do think it's working very well. The primary benefit is = the fact that it's native boiling point is in the 375F range, so you = don't have to worry about a cascade effect of boil over if you = unexpectedly run hot, lose pressure, etc. It's also not supposed to be = subject to localized boiling around hot spots in the engine. Evan's = claims this as a big benefit, but others, such as Tracy, think this = boiling helps remove heat. It's a bit more environmentally friendly = too, so it won't hurt the rats in John's hanger. =20 The high boiling temp means that you don't need to run a = pressurized system, which is my favorite part. There's less stress on = the system, and any leak that occurs, will be much slower (initially) = than if there was pressure. I added an air separator tank, with a = level sensor inside, so if I get a leak, I'll know about it before it = gets to the level of the top of the engine. That was the best detection = method I could think of.=20 The down side is the cost, and the fact that it doesn't transfer = heat as effectively as traditional EG/water mix. Your temps will almost = certainly go up some, but at least you won't boil over. =20 If the oil temp is below 180 F but the coolant is above 220F, = is this detrimental to the 13B??=20 Define "above" :-) I don't think there's anything harmful = about 220F, or a bit over that for coolant, since cars do it all the = time. I believe the power will be reduced a bit at those temps though, = and perhaps there will be more wear on the engine. I've heard that, but = can't say if it's significant, or even true. =20 Cheers, Rusty=20 =20 =20 =20 ------=_NextPart_001_0110_01C57B69.27F1D5B0 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
Georges, the 'wall paper' is back.   I love = cats but=20 make it go away :  )
 
OK, I'll give this a stab.  But first an observation.  I = can't=20 help laughing every time I read something on this thread = because for=20 the most part, everyone is right.  It's just that everyone is right = about=20 a different part of the subject. 
 
In terms of  *continuous*  power production, the rotary = is=20 limited by the number of BTU that can be dissipated through the = combustion=20 chamber walls.  There is nothing (in common use) that can equal the = heat=20 dissipation ability of boiling water AS LONG AS IT DOES NOT PROGRESS TO = FILM=20 BOILING.  The available data suggests that the rotary relies on = nucleate=20 boiling.  This is not a simple subject so Google  these terms = if you=20 are not familiar with them.
 
Because film boiling (or overt steam pockets, different subject) = will=20 result in skyrocketing combustion chamber wall temps (and a long term = failure=20 caused by cracking around the spark plug bosses in rotary engines), you = might=20 conclude that PG would solve the problem.  And it might.  It = depends=20 on the critical wall temperature that causes this failure mode (which I = don't=20 know).  At the power level at which nucleate boiling occurs (about = 170=20 continuous HP I think) PG use will cause higher wall temps than = EG. =20 That is the reason I am sticking with 50/50 EG & H2O.
 
This is a related subject to the oft belabored subject of water = pump flow=20 rates.  If the flow rate is not high enough,  nucleate boiling = will=20 quickly degenerate into film boiling. 
 
From this point, the discussion could go off into innumerable = permutations=20 for which my beer befuddled brain is not prepared for this = evening.  I'd=20 better wait to comment on the air cushion.  Everybody is = right on=20 that too.
 
Tracy 
Rusty
"boiling removes heat" I have a hard time understanding = that quote.=20 When racers started using PG they were able to run 15:1 = compression on=20 "pump" fuel 
 due to the fact that boiling coolant created hot = spots in the=20 combustion chambers & in turn causes pre-ignition (they also = reversed the coolant flow direction to bring the cooled coolant = to the=20 hottest part of the system, & all this with no pressure cap. = The one=20 disadvantage I see in the 13b is that it can't handle the = potential=20 higher boiling point of PG. I have a 3.0 L V6 that I reversed = the=20 cooling system on to use in the Christavia (that was before I = got hooked=20 on the 13B)
Georges B.
-------Original=20 Message-------
 
From: Rotary motors in=20 aircraft
Date: = 06/27/05=20 12:13:55
To: Rotary motors in=20 aircraft
Subject: = [FlyRotary]=20 Re: NPG + use in aircraft??
 
Has anyone used the NPG+ coolant in an aircraft?  What = are the=20 pros and cons?   
 
NPG+ = is standard issue in the 912S, and perhaps the 912=20 also.  If I'm not mistaken, Dave Leonard is running = NPG+ now,=20 and I'm running NPG-R.   
 
The=20 Evan's marketing folks can give you way more pros than I = can=20 think of, but I do think it's working very well.  = The=20 primary benefit is the fact that it's native boiling = point is=20 in the 375F range, so you don't have to worry about a = cascade=20 effect of boil over if you unexpectedly run hot, lose pressure,=20 etc.  It's also not supposed to be subject = to=20 localized boiling around hot spots in the engine.  Evan's = claims=20 this as a big benefit, but others, such as Tracy, think this = boiling=20 helps remove heat.  It's a bit more environmentally = friendly=20 too, so it won't hurt the rats in John's=20 hanger.      
 
The = high=20 boiling temp means that you don't need to run a pressurized = system,=20 which is my favorite part.  There's less stress on the = system, and=20 any leak that occurs, will be much slower (initially) than if = there was=20 pressure.   I added an air separator tank, with a = level sensor=20 inside, so if I get a leak, I'll know about it before it gets to = the=20 level of the top of the engine.  That was the best=20 detection method I could think = of. 
 
The down=20 side is the cost, and the fact that it doesn't transfer heat as=20 effectively as traditional EG/water mix.  Your temps will = almost=20 certainly go up some, but at least you won't boil=20 over.    
 
 If the oil = temp is=20 below 180 F but the coolant is above 220F, is this detrimental = to the=20 13B?? 
 
Define "above"=20 :-)   I don't think there's anything harmful about = 220F, or a=20 bit over that for coolant, since cars do it all the = time.  I=20 believe the power will be reduced a bit at those temps though, = and=20 perhaps there will be more wear on the engine.  I've = heard=20 that, but can't say if it's significant, or even = true. =20
 
Cheers,
Rusty=20
 
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