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 5.4c2) with ESMTPS id 4924134 for flyrotary@lancaironline.net; Sun, 27 Mar 2011 14:00:07 -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 p2RHxSDV022480 (version=TLSv1/SSLv3 cipher=AES128-SHA bits=128 verify=FAIL) for ; Sun, 27 Mar 2011 11:59:29 -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; Sun, 27 Mar 2011 11:59:28 -0600 From: "Steven W. Boese" To: Rotary motors in aircraft Date: Sun, 27 Mar 2011 11:59:20 -0600 Subject: RE: [FlyRotary] Re: Exhaust obstruction test Thread-Topic: [FlyRotary] Re: Exhaust obstruction test Thread-Index: AcvspFaXh9u2BHNOTfCdPGdDBg6B2wAAl6qA 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="_005_E1AA3B1AF41D8049B1E3FBD5E22562600889565147ponyexpressmb_" MIME-Version: 1.0 --_005_E1AA3B1AF41D8049B1E3FBD5E22562600889565147ponyexpressmb_ Content-Type: multipart/alternative; boundary="_000_E1AA3B1AF41D8049B1E3FBD5E22562600889565147ponyexpressmb_" --_000_E1AA3B1AF41D8049B1E3FBD5E22562600889565147ponyexpressmb_ Content-Type: text/plain; charset="us-ascii" Content-Transfer-Encoding: quoted-printable Bobby, The MAP in the plot is manifold pressure in inches of Hg. The throttle set= ting was not changed while the exhaust valve was closing or closed. The in= crease in manifold pressure results from the decreased air requirement when= the rpm decreases due to the choked off exhaust. A decrease in air volume= drawn out of the intake plenum along with an unchanged throttle body open= ing gives a manifold pressure rise. This is consistent with what you experienced. I've attached a couple of photos of the test setup. One other observation that I forgot to mention is that with the valve even = partly closed, the noise level decreased remarkably. Steve From: Rotary motors in aircraft [mailto:flyrotary@lancaironline.net] On Beh= alf Of Bobby J. Hughes Sent: Sunday, March 27, 2011 12:33 PM To: Rotary motors in aircraft Subject: [FlyRotary] Re: Exhaust obstruction test Steve, Thank you for conducting this test. The attachment contains the data my Adv= anced Flight Systems engine monitor captured. It logs in five second interv= als. A lot can happen in five seconds when the pilot is throwing switches a= nd opening and closing the throttle. The data shows I did not re-enable the= primary injector switch until after landing. So no rpm or fuel flow data w= as captured during most of the glide. Oil pressure indicates the prop was d= riving the engine. I don't remember if I bypassed part of the super charger= flow or not. The manifold pressure before the event was only 36" MP so I = was not a full power. The rpm dropped from 6700 to 2500. Manifold pressure = started dropping but I'm sure I was pumping the throttle and may have pulle= d the super charger bypass. What I don't understand is the last seven lines= of data. MP is between 18 and 29.4 at idle. This is while I was trying to = taxi but could not move the plane. Your data supports a sharp drop in rpm. Is the MAP plot EC2 fuel map or m= anifold pressure? If manifold pressure your test also indicates a high mani= fold pressure with a low rpm condition. Bobby --_000_E1AA3B1AF41D8049B1E3FBD5E22562600889565147ponyexpressmb_ Content-Type: text/html; charset="us-ascii" Content-Transfer-Encoding: quoted-printable

Bobby,

 

The MAP in the plot is manifold pressure in inches of Hg.&n= bsp; The throttle setting was not changed while the exhaust valve was closi= ng or closed.  The increase in manifold pressure results from the decr= eased air requirement when the rpm decreases due to the choked off exhaust.=   A decrease in air volume drawn out of the intake plenum  along = with an unchanged throttle body opening gives a manifold pressure rise.

 

This is consistent with what you experienced.=

 

I’ve attached a couple of photos of the test setup.<= /o:p>

 

One other observation that I forgot to mention is that wit= h the valve even partly closed, the noise level decreased remarkably.<= /o:p>

 

Steve

&n= bsp;

 

From: Rotary mot= ors in aircraft [mailto:flyrotary@lancaironline.net] On Behalf Of Bo= bby J. Hughes
Sent: Sunday, March 27, 2011 12:33 PM
To:= Rotary motors in aircraft
Subject: [FlyRotary] Re: Exhaust obstr= uction test

&nbs= p;

Steve,

&nbs= p;

Thank yo= u for conducting this test. The attachment contains the data my Advanced Fl= ight Systems engine monitor captured. It logs in five second intervals. A l= ot can happen in five seconds when the pilot is throwing switches and openi= ng and closing the throttle. The data shows I did not re-enable the primary= injector switch until after landing. So no rpm or fuel flow data was captu= red during most of the glide. Oil pressure indicates the prop was driving the engine. I don’t= remember if I bypassed part of the super charger flow or not.  The ma= nifold pressure before the event was only 36” MP so I was not a full = power. The rpm dropped from 6700 to 2500. Manifold pressure started droppin= g but I’m sure I was pumping the throttle and may have pulled the sup= er charger bypass. What I don’t understand is the last seven lines of= data. MP is between 18 and 29.4 at idle. This is while I was trying to tax= i but could not move the plane.

=  

Your data supports a sharp drop in rpm.  I= s the MAP  plot EC2 fuel map or manifold pressure? If manifold pressur= e your test also indicates a high manifold pressure with a low rpm conditio= n.

 

Bo= bby

 

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