Return-Path: Received: from [129.116.87.170] (HELO MAIL01.austin.utexas.edu) by logan.com (CommuniGate Pro SMTP 4.3c3) with ESMTP id 814205 for flyrotary@lancaironline.net; Mon, 21 Mar 2005 14:33:48 -0500 Received-SPF: none receiver=logan.com; client-ip=129.116.87.170; envelope-from=mark.steitle@austin.utexas.edu X-MimeOLE: Produced By Microsoft Exchange V6.5.7226.0 Content-class: urn:content-classes:message MIME-Version: 1.0 Content-Type: multipart/related; boundary="----_=_NextPart_001_01C52E4C.CC35B9A0"; type="multipart/alternative" Subject: RE: [FlyRotary] Re: BMW and EWP Date: Mon, 21 Mar 2005 13:33:02 -0600 Message-ID: <87DBA06C9A5CB84B80439BA09D86E69EC080BE@MAIL01.austin.utexas.edu> X-MS-Has-Attach: yes X-MS-TNEF-Correlator: Thread-Topic: [FlyRotary] Re: BMW and EWP Thread-Index: AcUuSYgrxu+Ftr45RFuvSu7ouICRiQAACBbQ From: "Mark R Steitle" To: "Rotary motors in aircraft" This is a multi-part message in MIME format. ------_=_NextPart_001_01C52E4C.CC35B9A0 Content-Type: multipart/alternative; boundary="----_=_NextPart_002_01C52E4C.CC35B9A0" ------_=_NextPart_002_01C52E4C.CC35B9A0 Content-Type: text/plain; charset="US-ASCII" Content-Transfer-Encoding: quoted-printable Rusty, This was posted years back on the "other" list. If your engine is assembled, then I don't think you could locate the hole with enough certainty as to not breach the water passage. There is very little margin for error. So, this is really something you would want to do while the engine is apart. =20 If not, then I'll try to explain how I did mine. There is a web very near the leading plug that is wide enough for a small hole to be drilled without breaching the water jacket. Drill a hole just large enough for the thermocouple wire to fit into (approx. 1/8"), and drill down through the web until the drill just barely touches the steel liner. Don't drill through the steel liner. =20 =20 The primary thing the "CHT" probes will tell me is if all 3 chambers are burning the same, and after a period of time, it will give me a "normal" CHT. Below is a chart showing rotor housing temps at various rpm's. It will be interesting to see what happens to the CHT's during SAG, not that I'm looking forward to it happening. =20 =20 Mark S. =20 =20 =20 ________________________________ You've probably mentioned this before, but can you refresh my memory as to where you put these probes? I'm guessing you could just use the ring type that go under the plug (if they'll fit in the recessed hole) Is there an official spec for these temps in the area you're measuring? =20 =20 ------_=_NextPart_002_01C52E4C.CC35B9A0 Content-Type: text/html; charset="US-ASCII" Content-Transfer-Encoding: quoted-printable Message

Rusty,

This was posted years back on the = “other” list.  If your engine is assembled, then I don’t think you = could locate the hole with enough certainty as to not breach the water = passage.  There is very little margin for error.  So, this is really = something you would want to do while the engine is apart.

 

If not, then I’ll try to = explain how I did mine.  There is a web very near the leading plug that is wide = enough for a small hole to be drilled without breaching the water jacket.  = Drill a hole just large enough for the thermocouple wire to fit into (approx. = 1/8”), and drill down through the web until the drill just barely touches the = steel liner.  Don’t drill through the steel liner.  =

 

The primary thing the = “CHT” probes will tell me is if all 3 chambers are burning the same, and after = a period of time, it will give me a “normal” CHT.  Below = is a chart showing rotor housing temps at various rpm’s.  It will = be interesting to see what happens to the CHT’s during SAG, not that = I’m looking forward to it happening. =   

 

Mark S.  =   

 


You've = probably mentioned this before, but can you refresh my memory as to where you put = these probes?  I'm guessing you could just use the ring type that go = under the plug (if they'll fit in the recessed hole)   Is there an official spec for these temps in the area you're = measuring?  

 

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