X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Sender: To: lml@lancaironline.net Date: Fri, 30 Dec 2011 12:07:29 -0500 Message-ID: X-Original-Return-Path: Received: from nm8-vm4.bullet.mail.ne1.yahoo.com ([98.138.91.168] verified) by logan.com (CommuniGate Pro SMTP 5.4.3) with SMTP id 5330754 for lml@lancaironline.net; Thu, 29 Dec 2011 16:30:14 -0500 Received-SPF: none receiver=logan.com; client-ip=98.138.91.168; envelope-from=casey.gary@yahoo.com Received: from [98.138.90.54] by nm8.bullet.mail.ne1.yahoo.com with NNFMP; 29 Dec 2011 21:29:37 -0000 Received: from [98.138.89.174] by tm7.bullet.mail.ne1.yahoo.com with NNFMP; 29 Dec 2011 21:29:37 -0000 Received: from [127.0.0.1] by omp1030.mail.ne1.yahoo.com with NNFMP; 29 Dec 2011 21:29:37 -0000 X-Yahoo-Newman-Property: ymail-3 X-Yahoo-Newman-Id: 398432.25516.bm@omp1030.mail.ne1.yahoo.com Received: (qmail 14412 invoked by uid 60001); 29 Dec 2011 21:29:37 -0000 DomainKey-Signature:a=rsa-sha1; q=dns; c=nofws; s=s1024; d=yahoo.com; h=X-YMail-OSG:Received:X-Mailer:References:Message-ID:Date:From:Reply-To:Subject:To:In-Reply-To:MIME-Version:Content-Type; b=SDOgFwpqhPyv0oGzw3XHwP92fyvXtI6Div5OA0zLT5q1zo8DEkjtncnDk+CyoNEYo67xA3JkOeVb7ClPrv3ZoHv4D98SyQ5hFgR0QjaizCJe2b463cgds9L/d4abET1JH+ZXB5eMYLxXcEWiotMeeh7aRrusOBZlqG+pRR6Lzj8=; X-YMail-OSG: S9Q0USoVM1mVyilDxRnHu3fKw93kcnNtT.1Fe.2uwBhepu_ IsrkodhOt2z6mSh83jVfQgOsZ.JWgblEjFCiT1oguRVZM8C9Dib_XKFSbh.N MIL7qDudhPNeTuRFCxZjEZ4ehyLmLXTpEDcrwyjdSK6xY0jStXWcEMOiuuwa FXsCjbAW.5rB1Jm3TlY31u5s2gbbHbhmEiIKHbWkbt4djNR8MMYcmDQun1cA MbygzWv0sduT_cjyGh77_UAf3FYbEj8xsj.5MtO9LJENWdCKz5T5e3XUM.Ss yxlbERF2sicr8nHIFY5VEQc6qVQKri3zwKQyMaeW7aBpOwqjnAOCBgrtvJHO Yrg2qZSWtOGfqB870cIO1bMDdpVhJGRZMbKMr15uKNiRnHJBr3Mv54jntBLZ Q7Uh7b8VYj5AEZyVyoA4cH26xyFL3v0ord6iFEHEp Received: from [97.122.186.31] by web125606.mail.ne1.yahoo.com via HTTP; Thu, 29 Dec 2011 13:29:37 PST X-Mailer: YahooMailWebService/0.8.115.331698 References: X-Original-Message-ID: <1325194177.9301.YahooMailNeo@web125606.mail.ne1.yahoo.com> X-Original-Date: Thu, 29 Dec 2011 13:29:37 -0800 (PST) From: Gary Casey Reply-To: Gary Casey Subject: Re: Performance specs X-Original-To: Lancair Mailing List In-Reply-To: MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="607277540-1492905490-1325194177=:9301" --607277540-1492905490-1325194177=:9301 Content-Type: multipart/alternative; boundary="607277540-2093783082-1325194177=:9301" --607277540-2093783082-1325194177=:9301 Content-Type: text/plain; charset=iso-8859-1 Content-Transfer-Encoding: quoted-printable =A0Colyn,=0AAttached is the spreadsheet modified for use with a turbocharge= d engine.=A0 All I did was fix the horsepower at the sea level value.=A0 Ho= wever, I think there will be some degradation at altitude, mostly because t= he aftercooler isn't 100% effective.=A0 It should still be reasonably close= .=A0 Other than that, all you do is change the takeoff speed to what you th= ink is correct and, of course, the weight.=A0 One could change the aerodyna= mic drag, but it isn't a large factor.=A0 The drag of the IV=A0would drop b= ecause of the smaller wing area, but would rise because of the gea configur= ation.=A0 I'm not sure which is=A0dominant, b ut at low speed it doesn't ma= tter.=A0 The higher wing loading mostly results in a higher takeoff speed -= I don't compensate for the increased induced drag.=A0 Perhaps I should.=0A= =A0=0APlaying around with the spreadsheet highlighted to me one possible re= ason there are recurring high elevation takeoff accidents.=A0 On my ES the = calculated takeoff distance at sea level, 59F, is 1450 feet.=A0 At 1,000 fe= et it increases just 130 feet - hardly enough to even notice.=A0 However, i= ncrease the pressure altitude from 7,000 to 8,000 at the same 59F and the d= istance increases from 3200 to 3600 feet - a whopping 400 feet increase.=0A= =A0=0AGary,=0A=0Ainteresting chart.=0AHow would it have to be modified for = a IVP?=0A=0AColyn --607277540-2093783082-1325194177=:9301 Content-Type: text/html; charset=iso-8859-1 Content-Transfer-Encoding: quoted-printable
 Colyn,
Attached is the spreadsheet modified for use with a turbocharged e= ngine.  All I did was fix the horsepower at the sea level value. = However, I think there will be some degradation at altitude, mostly becaus= e the aftercooler isn't 100% effective.  It should still be reasonably= close.  Other than that, all you do is change the takeoff speed to wh= at you think is correct and, of course, the weight.  One could change = the aerodynamic drag, but it isn't a large factor.  The drag of the IV=  would drop because of the smaller wing area, but would rise because o= f the gea configuration.  I'm not sure which is dominant, b ut at= low speed it doesn't matter.  The higher wing loading mostly results = in a higher takeoff speed - I don't compensate for the increased induced drag.  Perhaps I should.
 
Playing a= round with the spreadsheet highlighted to me one possible reason there are = recurring high elevation takeoff accidents.  On my ES the calculated t= akeoff distance at sea level, 59F, is 1450 feet.  At 1,000 feet it inc= reases just 130 feet - hardly enough to even notice.  However, increas= e the pressure altitude from 7,000 to 8,000 at the same 59F and the distanc= e increases from 3200 to 3600 feet - a whopping 400 feet increase.
 
Gary,
interesting chart.
How would it have to be modi= fied for a IVP?

Colyn
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