Return-Path: Received: from fed1rmmtao01.cox.net ([68.230.241.38] verified) by logan.com (CommuniGate Pro SMTP 4.2b1) with ESMTP id 3149020 for flyrotary@lancaironline.net; Tue, 06 Apr 2004 13:05:33 -0400 Received: from BigAl ([68.107.116.221]) by fed1rmmtao01.cox.net (InterMail vM.6.01.03.01 201-2131-111-101-20040311) with ESMTP id <20040406170531.EPWO3541.fed1rmmtao01.cox.net@BigAl> for ; Tue, 6 Apr 2004 13:05:31 -0400 From: "Al Gietzen" To: "'Rotary motors in aircraft'" Subject: MAP pressure drop Date: Tue, 6 Apr 2004 10:05:42 -0700 Message-ID: <000001c41bf9$65520fe0$6400a8c0@BigAl> MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_0001_01C41BBE.B8F337E0" X-Priority: 3 (Normal) X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook, Build 10.0.6626 Importance: Normal In-Reply-To: X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2800.1165 This is a multi-part message in MIME format. ------=_NextPart_000_0001_01C41BBE.B8F337E0 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0002_01C41BBE.B8F337E0" ------=_NextPart_001_0002_01C41BBE.B8F337E0 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable =20 Subject: [FlyRotary] Re: : Percent Power, Throttle position, & RD-1C performance =20 Took closer note of throttle position on todays flight. At 2000 ft the throttle was only about 1/3 open (position of throttle quadrant, but it closely mirrors butterfly position) at economy cruise setting which was = 6.0 GPH. This is about 42% power, 82 HP according to the EM2 which is = fairly close but not perfectly calibrated yet. The same power setting with the = -B drive would bave been a bit further open. Thanks for checking this out. My plane is a bit heavier, but I have 3 rotors, so I=92ll set the butterfly spring to default at about 35% open. = But now the bigger issue is: =20 I did a quick check of MAP at 1000 ft at full throttle and found I was = not getting any drop at 150 MPH and had .5" boost at 220 MPH (ram air = recovery I assume). I did not get around to checking it in slow climb which would = more accurately compare to what you would see on a dyno. =20 Tracy =20 What RPM do those speeds correspond to? I looked again at my plot of = MAP vs RPM and wonder if something is amiss =96 maybe I can get some insight on = this. If you go to = http://members.cox.net/alg3/Dynamometer%20test%20report.htm, at the = bottom of the page, you=92ll see the plot. About 2=94 HG drop at 5000 PRM, = almost 4=94 at 6000. The inlet plenum and TB can be seen on the attached photo. =20 I really don=92t think that my air intake plenum could be causing this = drop as the flow area is larger than the TB flow area, with smooth transition = into the barrels. My TB barrels themselves are 5=94 long, 44mm dia. The = butterfly is near the inside end, and the MAP sensing port is just downstream = from, and directly in line with, the butterfly shaft. Could there be a significant drop in the barrels? If the measured drop is =91real=92, = then a) I=92m surprised that I could get such good power, and b) eliminating the = drop would significantly increase the power.=20 =20 Tracy, what is the configuration of your TB, and where are you measuring = MAP =96 at the TB before any runner length? =20 Al =20 =20 =20 Thanks, Tracy. I was hoping there would be someone out there flying with = the same TB diameters. =20 Like most things, TB diameter is a tradeoff. My conclusion from the = dyno data is that 44mm per rotor (1 =BE) is a bit small as the MAP is = dropping off over 5000 RPM. But if you want to idle at 1500, and have a decent transition from there to 3000; 1 =BE is good. For a 2.85 to redrive, = I=92d want to increase that flow area by 30% or so =96 to about 2=94 dia for each = rotor.=20 =20 My data may not be representative because of restricted flow to the TB. = The =91airbox=92 size is restricted by the cowl, and may have restricted the = flow a bit. In hindsight, it would have been smart (and easy) to make a run = with the airbox off and see what difference it made. =20 Al =20 =20 ------=_NextPart_001_0002_01C41BBE.B8F337E0 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable

 

Subject: [FlyRotary] Re: : Percent Power, Throttle position, & RD-1C = performance

 

Took closer note of = throttle position on todays flight.  At 2000 ft the throttle was only about = 1/3 open (position of throttle quadrant, but it closely mirrors butterfly = position) at economy cruise setting which was 6.0 GPH.  This is about = 42% power, 82 HP according to the EM2 which is fairly close but not = perfectly calibrated yet.  The same power setting with the -B drive would = bave been a bit further open.

Thanks for checking this out. = =A0My plane is a bit heavier, but I have 3 rotors, so I’ll set the butterfly = spring to default at about 35% open.=A0 But now the bigger issue = is:

 

I did a quick check of MAP = at 1000 ft at full throttle and found I was not getting any drop at 150 MPH and = had .5" boost at 220 MPH (ram air recovery I assume).  I did not = get around to checking it in slow climb which would more accurately compare = to what you would see on a dyno.

 

Tracy

 

What RPM do those speeds = correspond to? =A0I looked again at my plot of MAP vs RPM and wonder if something is amiss = – maybe I can get some insight on this. =A0If you go to http://members.cox.net/alg3/Dynamometer%20test%20re= port.htm, at the bottom of the page, you’ll see the plot.=A0 = About 2” HG drop at 5000 PRM, almost 4” at 6000.=A0 The inlet plenum and TB = can be seen on the attached photo.

 

I really don’t think that = my air intake plenum could be causing this drop as the flow area is larger than = the TB flow area, with smooth transition into the barrels.=A0 My TB barrels = themselves are 5” long, 44mm dia.=A0 The butterfly is near the inside end, and = the MAP sensing port is just downstream from, and directly in line with, the butterfly = shaft. =A0Could there be a significant drop in the barrels? =A0If the measured drop is = ‘real’, then a) I’m surprised that I could get such good power, and b) eliminating the drop would significantly increase the power. =

 

Tracy, what is the configuration of your TB, and where are you = measuring MAP – at the TB before any runner length?

 

Al

 

 

=

 

Thanks, Tracy. I was hoping there would be someone out there flying with the same TB = diameters.

 

Like most things, TB diameter is a tradeoff.  My conclusion from the = dyno data is that 44mm per rotor (1 =BE) is a bit small as the MAP is dropping off = over 5000 RPM.  But if you want to idle at 1500, and have a decent = transition from there to 3000; 1 =BE is good.  For a 2.85 to redrive, = I’d want to increase that flow area by 30% or so – to about 2” dia for = each rotor.

 

My data may not be representative because of restricted flow to the = TB.  The ‘airbox’ size is restricted by the cowl, and may have = restricted the flow a bit.  In hindsight, it would have been smart (and easy) = to make a run with the airbox off and see what difference it = made.

 

Al

 

 

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