X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Received: from aspensprings.uwyo.edu ([129.72.10.32] verified) by logan.com (CommuniGate Pro SMTP 5.4.0) with ESMTPS id 5024610 for flyrotary@lancaironline.net; Sat, 18 Jun 2011 13:24:04 -0400 Received-SPF: none receiver=logan.com; client-ip=129.72.10.32; envelope-from=SBoese@uwyo.edu Received: from ponyexpress-ht1.uwyo.edu (ponyexpress-ht1.uwyo.edu [10.84.60.208]) by aspensprings.uwyo.edu (8.14.4/8.14.4) with ESMTP id p5IHNSJi002259 (version=TLSv1/SSLv3 cipher=AES128-SHA bits=128 verify=FAIL) for ; Sat, 18 Jun 2011 11:23:28 -0600 (MDT) (envelope-from SBoese@uwyo.edu) Received: from ponyexpress-mb5.uwyo.edu ([fe80::9813:248c:2d68:a28b]) by ponyexpress-ht1 ([10.84.60.208]) with mapi; Sat, 18 Jun 2011 11:23:27 -0600 From: "Steven W. Boese" To: Rotary motors in aircraft Date: Sat, 18 Jun 2011 11:19:46 -0600 Subject: RE: [FlyRotary] Re: Blower does work Thread-Topic: [FlyRotary] Re: Blower does work Thread-Index: AcwtalRARIDWPzD4RBOlgijsF8L9AQAcZepl Message-ID: References: In-Reply-To: Accept-Language: en-US Content-Language: en-US X-MS-Has-Attach: yes X-MS-TNEF-Correlator: acceptlanguage: en-US Content-Type: multipart/mixed; boundary="_003_E1AA3B1AF41D8049B1E3FBD5E2256260088BDC596Eponyexpressmb_" MIME-Version: 1.0 --_003_E1AA3B1AF41D8049B1E3FBD5E2256260088BDC596Eponyexpressmb_ Content-Type: text/plain; charset="us-ascii" Content-Transfer-Encoding: quoted-printable Ernest, I've attached a couple of plots of MAP and RPM data collected from my 13B e= ngine stand which has a belt driven centrifugal supercharger installed. Th= e system is set up to maintain the pressure in the duct between the superch= arger and the throttle body at about 3" Hg above that in the intake plenum.= Without the supercharger, the plots are very similar except that the high= est map is 23' Hg (7200 ft altitude on the ground here) with a correspondin= g highest RPM. When you have your system all set up, I would expect your data would look = similar to mine. Steve Boese ________________________________________ From: Rotary motors in aircraft [flyrotary@lancaironline.net] On Behalf Of = Ernest Christley [echristley@nc.rr.com] Sent: Friday, June 17, 2011 9:45 PM To: Rotary motors in aircraft Subject: [FlyRotary] Re: Blower does work On 06/17/2011 06:10 PM, Ed Anderson wrote: > Hi Ernest, > > I think Tracy's question might have it roots in the following. > > First, the manifold pressure really did not change much with rpm. > Typically you would see an engine under load go from lets say 12" Hg > at idle to 29.8" Hg at WOT which in your units would be from approx > 40KPA to 100 KPA at WOT. Without the blower, it looks like most of the > orange was below 60 KPA although I think I see a bit up around 65 > KPA. So that would indicate approx 13" Hg at idle to around 19.0 "HG > at your highest - hardly what you would expect to see if the engine > was loaded and turning those rpm. > > So that indicates your blower is feeding a small throttle opening and > an engine that is not processing too many CFM of through put. The > blower appears to be producing approx 15 KPA above the orange or an > increase of approx 4.5 " Hg. However, the question is with less > restriction (WOT) would that pressure profile increase due to higher > rpms or drop due to less restriction? > I'll be working on getting more load this weekend, but in the meantime I probably should call the previous post a false alarm. This even I went set out to run a test that would be more methodical than the previous "grab whatever is in the logs" method. I set the engine up in three situations: with the blower charging the intake, with the air filter turned around to pull ambient air, and with no air filter at all. I attached a picture showing how I turned the filter around. (It should also be apparent why my front rotor is getting cheated as far as air supply goes. The air just goes rushing past it.) For each configuration, I made a run, trying to hold the throttle at every 500 RPM on the way up for 5 seconds (1500rpm, 2000rpm, 2500rpm, etc), then did the same on the way back down. I made a datalog for when the engine was warming up, with the blower active, with the filter turn around, with no filter (filterless), and again with the blower in action. That graph is attached. Basically, this shows the same MAP for every RPM, except for the filterless run, which has the MAP jumping all over the place. I don't know what the deal was with the data I got last night, but given the strict control and short time frame under which it was taken, I trust this data much more. Upon further reflection, I think I'm may be looking at the wrong thing. Given the constraints of such a light load, the RPM is going to follow whatever the MAP is. Is that a "No duh!" statement? Looking at the graphs, I think what would be more telling is RPM vs throttle opening, or MAP vs throttle opening. What say you all?= --_003_E1AA3B1AF41D8049B1E3FBD5E2256260088BDC596Eponyexpressmb_ Content-Type: image/x-png; name="rpm & map vs time.PNG" Content-Description: rpm & map vs time.PNG Content-Disposition: attachment; filename="rpm & map vs time.PNG"; size=18059; creation-date="Sat, 18 Jun 2011 11:20:25 GMT"; modification-date="Sat, 18 Jun 2011 11:20:25 GMT" Content-Transfer-Encoding: base64 iVBORw0KGgoAAAANSUhEUgAAArUAAAHeCAIAAAAKGWQSAAAABGdBTUEAALGPC/xhBQAARkJJREFU eF7tnbu1HTlwdvkHIIOuzDGUAAOQM65MOgqACcigK3McBUAFIIMp0GEATGFSmBTmx73ggLiNV6Hx KjT2WbNmXfbBo7CrGvgaQOP8v+/fv7/jAwEIQAACEIAABP4h8O///u/vjD7gAwEIQAACEIAABByB v//+G31APEAAAhCAAAQg8IbAG31g/sEHAhCAAAQgAIHTCITiCH1wWgzQXghAAAIQgMCVAPqAmIAA BCAAAQhAAH1ADEAAAhCAAAQgUCLA/EGJEN9DAAIQgAAEziOAPjjP57QYAhCAAAQgUCKAPigR4nsI QAACEIDAeQTQB+f5nBZDAAIQgAAESgTQByVCfA8BCEAAAhA4jwD64Dyf02IIQAACEIBAiQD6oESI 7yEAAQhAAALnEUAfnOdzWgwBCEAAAhAoEUAflAjxPQQgAAEIQOA8AuiD83xOiyEAAQhAAAIlAuiD 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