Return-Path: Received: from [216.52.245.18] (HELO ispwestemail2.mdeinc.com) by logan.com (CommuniGate Pro SMTP 4.2.5) with ESMTP id 481395 for flyrotary@lancaironline.net; Thu, 21 Oct 2004 07:50:31 -0400 Received-SPF: none receiver=logan.com; client-ip=216.52.245.18; envelope-from=wschertz@ispwest.com Received: from 7n7z201 (unverified [67.136.145.241]) by ispwestemail2.mdeinc.com (Vircom SMTPRS 3.2.315.0) with SMTP id for ; Thu, 21 Oct 2004 04:49:16 -0700 Message-ID: <025601c4b763$facc8810$07928843@7n7z201> From: "William" To: "Rotary motors in aircraft" References: Subject: Re: [FlyRotary] Re: nylon EWP's Date: Thu, 21 Oct 2004 06:49:06 -0500 MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_0252_01C4B73A.0F794B10" X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook Express 6.00.2800.1437 X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2800.1441 This is a multi-part message in MIME format. ------=_NextPart_000_0252_01C4B73A.0F794B10 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0253_01C4B73A.0F794B10" ------=_NextPart_001_0253_01C4B73A.0F794B10 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable MessageThe curves that start at zero and rise as the square of the flow = with data points are measured flow rates through an 'individual' = radiator core [measured both cores, they behaved the same]. I will be = running the cores in parallel, so the curve near the 'real rad test' is = a calculated curve that is the sum of two individual cores. I then plumbed the two evaporator cores into the flow loop, and got a = single point with pressure drop and flow rate for the two in parallel. = Here is the plumbing setup. You have to look hard to see that they = really are plumbed in parallel, but they are. Bill Schertz KIS Cruiser # 4045 ----- Original Message -----=20 From: Al Gietzen=20 To: Rotary motors in aircraft=20 Sent: Wednesday, October 20, 2004 11:35 PM Subject: [FlyRotary] Re: nylon EWP's Bill; Good stuff.=20 The flow curve shown for my dyno run, = http://members.cox.net/alg3/Dynamometer%20test%20report.htm is pumping through the engine and through the large radiator of the = facility. I think the pump on my 20B is geared about 1:1 with the = e-shaft. For the same RPMs, my data correlate reasonably well with = yours at 0 backpressure across the radiator. Are the core drops for evaporator cores? What is the "Real rad test" = data point on the chart? Ron Davis Racing gave me a pressure drop of = 2.25 psi at 20 gpm for the rad I got from them. Griffin did not provide = any pressure drop data on the rad they made for me that goes in the wing = root, but based on the configuration I'm sure it is higher. I'm = guessing that my two rads in parallel will get me out close to 40 gpm at = 5600 rpm, which is pretty much on my design point. Now if I just knew what the actual air-side flow was going to be . . . = Al Subject: [FlyRotary] Re: nylon EWP's Okay, A year or so ago I posted a graph of measured 13-B water pump = performance. I am enclosing it again with this post. Several points to = be made: 1. The water pump is on the engine, so the pressure indicated on the Y = axis is the pressure that is left over to push the water through the = radiator cores. 2. The measurements were made with 3 different size pulleys, to vary = the water pump speed. 3. At no flow, the pressure on the Y axis is the maximum pressure that = the pump can supply. At zero pressure, max flow, all the available head = pressure from the pump is taken up by the pressure drop through the = block, and there is no more pressure to force water through the = radiator. 4. Looking at the charts, you can see that at a flow of 20 gpm, the = pressure drop across the core is 5 psi, at 33 gpm the drop across the = core is 8.5 psi, and at 44 gpm, the drop across the core is 19 psi. At a later date, Barny located the full flow (no pressure) and zero = flow (max pressure) points for the Meziere pump. Dead head pressure was = 10 psi, and full flow was ~55gpm. These numbers did NOT have the = pressure drop across the core included. Tomorrow I will forward a graph = with this information overlayed on this chart. Based on these TESTS, and the CLAIMED performance (by the = manufacturer) of the EWP, I calculate that you can get ~ 20gpm max = through an engine core combination. If you need more you will start to = have heat extraction problems. Bill Schertz KIS Cruiser # 4045 -- Original Message -----=20 From: Al Gietzen=20 To: Rotary motors in aircraft=20 Sent: Wednesday, October 20, 2004 1:45 PM Subject: [FlyRotary] Re: nylon EWP's Subject: [FlyRotary] nylon EWP's I'd like to hear some more comments about nylon vs. AL EWP's. = should I be satisfied with "well, Leon uses them" and ask no more? the = nylon pumps seem light enough, 2 lbs., that they could be supported = simply by their rubber hoses, which should make a good vibration damper. = (I don't really know who Leon is, although I get the impression his word = rates right up there with Tracy's) the nylon ones only push 20 gpm, = whereas the AL claim 37 gpm. I have no idea what my 20B will require. = I would be using 2 in series. Two in series may not give much more flow than one; depending on = the back pressure vs the pressure at which those flows are based. If = those pumps are rated flow at 0 pressure, it is likely that even the AL = one is marginal. I've done the math on the 20B. The flow requirements depends on = the cooling system design (obviously); but if you were to design for a = sort of optimum system for an aircraft, you'd like to have 20 - 30 F = temp drop around the loop when you are running about 85% power, say, 220 = HP. So for a 50/50 EG/water mix, and 25F delta T; that says 39.5 gpm. = For pure water the number is 28.5 gpm The only real data I have on my pump is from the dyno runs. That = showed 43 gpm at 5000; 48 at 6000. That is without a thermostat, and on = a large capacity system with presumably relatively low back pressure. = 25-30% less with a thermostat. Unfortunately, I don't know what it is = on the airplane. ------=_NextPart_001_0253_01C4B73A.0F794B10 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Message
The curves that start at zero and rise = as the=20 square of the flow with data points are measured flow rates through an=20 'individual' radiator core [measured both cores, they behaved the same]. = I will=20 be running the cores in parallel, so the curve near the 'real rad test' = is a=20 calculated curve that is the sum of two individual cores.
 
I then plumbed the two evaporator cores = into the=20 flow loop, and got a single point with pressure drop and flow rate for = the two=20 in parallel. Here is the plumbing setup. You have to look hard to see = that they=20 really are plumbed in parallel, but they are.
 
Bill Schertz
KIS Cruiser # 4045
----- Original Message -----
From:=20 Al = Gietzen=20
Sent: Wednesday, October 20, = 2004 11:35=20 PM
Subject: [FlyRotary] Re: nylon=20 EWP's

Bill;

 

Good stuff. =

The flow curve shown = for my dyno=20 run,  http= ://members.cox.net/alg3/Dynamometer%20test%20report.htm=

 is pumping = through the=20 engine and through the large radiator of the facility.  I think = the pump=20 on my 20B is geared about 1:1 with the e-shaft.  For the same = RPMs, my=20 data correlate reasonably well with yours at 0 backpressure across the = radiator.

 

Are the core drops for = evaporator cores?  What is the =93Real rad test=94 data point on = the=20 chart?  Ron Davis Racing gave me a pressure drop of 2.25 psi at = 20 gpm=20 for the rad I got from them.  Griffin did=20 not provide any pressure drop data on the rad they made for me that = goes in=20 the wing root, but based on the configuration I=92m sure it is = higher.  I=92m=20 guessing that my two rads in parallel will get me out close to 40 gpm = at 5600=20 rpm, which is pretty much on my design point.

 

Now if I just knew = what the=20 actual air-side flow was going to be . . .

 

Al

 

Subject:=20 [FlyRotary] Re: nylon EWP's

 

Okay,

A year or so ago I = posted a graph=20 of measured 13-B water pump performance. I am enclosing it again with = this=20 post. Several points to be made:

 

1. The water pump is on = the=20 engine, so the pressure indicated on the Y axis is the pressure that = is left=20 over to push the water through the radiator = cores.

2. The measurements were = made with=20 3 different size pulleys, to vary the water pump=20 speed.

3. At no flow, the = pressure on the=20 Y axis is the maximum pressure that the pump can supply. At zero = pressure, max=20 flow, all the available head pressure from the pump is taken up by the = pressure drop through the block, and there is no more pressure to = force water=20 through the radiator.

4. Looking at the = charts, you can=20 see that at a flow of 20 gpm, the pressure drop across the core is 5 = psi, at=20 33 gpm the drop across the core is 8.5 psi, and at 44 gpm, the drop = across the=20 core is 19 psi.

 

At a later date, Barny = located the=20 full flow (no pressure) and zero flow (max pressure) points for = the=20 Meziere pump. Dead head pressure was 10 psi, and full flow was ~55gpm. = These=20 numbers did NOT have the pressure drop across the core included.  = Tomorrow I will forward a graph with this information overlayed on = this=20 chart.

 

Based on these = TESTS,  and=20 the CLAIMED performance (by the manufacturer) of the EWP, I calculate = that you=20 can get ~ 20gpm max through an engine core combination. If you need = more you=20 will start to have heat extraction problems.

 

Bill Schertz
KIS = Cruiser #=20 4045

-- Original Message -----=20

From: Al = Gietzen=20

To: Rotary motors in = aircraft=20

Sent:=20 Wednesday, October 20, = 2004 1:45=20 PM

Subject:=20 [FlyRotary] Re: nylon EWP's

 

 

 

Subject:=20 [FlyRotary] nylon EWP's

 

I'd=20 like to hear some more comments about nylon vs. AL EWP's.  = should I be=20 satisfied with "well, Leon uses = them" and ask=20 no more?  the nylon pumps seem light enough, 2 lbs., that they = could be=20 supported simply by their rubber hoses, which should make = a good=20 vibration damper. (I don't really know who Leon is, = although I get=20 the impression his word rates right up there with = Tracy's) the = nylon ones=20 only push 20 gpm, whereas the AL claim 37 = gpm. =20 I have no idea what my 20B will require.  I would be using 2 in = series.

 

Two = in series=20 may not give much more flow than one; depending on the back = pressure vs=20 the pressure at which those flows are based. If those pumps are = rated flow=20 at 0 pressure, it is likely that even the AL one = is=20 marginal.

 

I=92ve done the=20 math on the 20B.  The flow requirements depends on the = cooling system=20 design (obviously); but if you were to design for a sort of = optimum system=20 for an aircraft, you=92d like to have 20 =96 30 F temp drop around = the loop=20 when you are running about 85% power, say, 220 HP.  So for a = 50/50=20 EG/water mix, and 25F delta T; that says 39.5 gpm.  For pure = water=20 the number is 28.5 gpm

 

The = only real=20 data I have on my pump is from the dyno runs.  That showed 43 = gpm at=20 5000; 48 at 6000.  That is without a thermostat, and on a = large=20 capacity system with presumably relatively low back pressure. =  25-30%=20 less with a thermostat.  Unfortunately, I don=92t know what = it is on=20 the airplane.

 

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