X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Sender: To: lml@lancaironline.net Date: Sat, 12 Jul 2008 17:11:54 -0400 Message-ID: X-Original-Return-Path: Received: from mail03.syd.optusnet.com.au ([211.29.132.184] verified) by logan.com (CommuniGate Pro SMTP 5.2.5) with ESMTPS id 3022477 for lml@lancaironline.net; Sat, 12 Jul 2008 02:23:44 -0400 Received-SPF: pass receiver=logan.com; client-ip=211.29.132.184; envelope-from=fredmoreno@optusnet.com.au Received: from Razzle ([202.139.5.198]) (authenticated sender fredmoreno) by mail03.syd.optusnet.com.au (8.13.1/8.13.1) with ESMTP id m6C6MkjZ004318 for ; Sat, 12 Jul 2008 16:22:54 +1000 From: "Fred Moreno" X-Original-To: "Lancair Mail" Subject: LIV & Legacy - Economy Cruising IO-550 X-Original-Date: Sat, 12 Jul 2008 14:22:40 +0800 X-Original-Message-ID: <000001c8e3e7$b6215f10$c6058bca@Razzle> MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_000_0001_01C8E42A.C4449F10" X-Priority: 3 (Normal) X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook, Build 10.0.6838 Importance: Normal Thread-Index: Acjj569L7rcgeo2/T+OplSviBbSMGQ== X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2900.3198 This is a multi-part message in MIME format. ------=_NextPart_000_0001_01C8E42A.C4449F10 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0002_01C8E42A.C4449F10" ------=_NextPart_001_0002_01C8E42A.C4449F10 Content-Type: text/plain; charset="us-ascii" Content-Transfer-Encoding: quoted-printable It is tough to get repeatable, consistent, accurate performance figures. = It requires agreeable weather and very precise and patient flying with carefully calibrated instruments. I went through a careful calibration process so that my IAS and Chelton TAS are now accurate to better than = 1.6 knots across the speed range. It took a lot of fussing with the static ports. Once the airspeed instruments were calibrated, I collected performance data at a variety of power settings and altitudes. A lot of = it ended up being poor (lots of scatter) when plotted and checked for consistency. Grrr.. =20 So I cheated.=20 =20 I took the best (least scatter, most consistent) sets of runs for my = typical cruise conditions (8500 Feet, 55-65% power,50F lean of peak) and then compared to the Cessna/Columbia 350 performance tables from the pilots operating handbook that was once available at the Columbia web site. I found that if I multiplied the Columbia 350 speed by 1.27, I got a very = good fit over the full speed range I have examined. =20 =20 I then plotted the modified Columbia figures and with an Excel spread = sheet I generated tables and then curves for gallons/100 nautical miles as a measure of fuel economy. I argue that this provides the best measure of comparative operating costs, better than miles per gallon which distorts = the presentation. Here are the results.=20 =20 These curves support previous suggestions for economical flying: fly = slower, fly higher, and fly lean of peak.=20 =20 Except: you will note that at higher altitudes the curves flatten out a = lot so that at 12,000 feet, the curve is fairly flat over a wide speed = range. The cost penalty for increasing from say 180 knots (near the best L/D = for the LIV at 12,000 feet) to 220 knots, a 22% speed increase, is only = about 6-7% increase in cost per mile. =20 =20 But the cost of cranking it up to 75% and running rich of peak is +20% = in cost while gaining only about +6% in speed. Or, if you like, it costs = 20% more to arrive 3.6 minutes sooner for each hour of flight.=20 =20 So I would say that for my airplane, 65%, 12,000 feet, and ~220 knots is = a good trade-off. You Legacy guys are a bit faster, but I would think the same conclusion applies.=20 =20 Fred Moreno ------=_NextPart_001_0002_01C8E42A.C4449F10 Content-Type: text/html; charset="us-ascii" Content-Transfer-Encoding: quoted-printable

It is tough to get repeatable, consistent, accurate performance figures.  It requires agreeable weather and very = precise and patient flying with carefully calibrated instruments.  I went = through a careful calibration process so that my IAS and Chelton TAS are now = accurate to better than 1.6 knots across the speed range.  It took a lot of = fussing with the static ports.  Once the airspeed instruments were = calibrated, I collected performance data at a variety of power settings and = altitudes.  A lot of it ended up being poor (lots of scatter) when plotted and = checked for consistency.  Grrr……

 

So I cheated.

 

I took the best (least scatter, most consistent) sets = of runs for my typical cruise conditions (8500 Feet, 55-65% power,50F lean = of peak) and then compared to the Cessna/Columbia 350 performance tables = from the pilots operating handbook that was once available at the Columbia web = site.  I found that if I multiplied the Columbia 350 speed by 1.27, I got a very good fit = over the full speed range I have examined. 

 

I then plotted the modified Columbia figures and with an Excel spread sheet I = generated tables and then curves for gallons/100 nautical miles as a measure of = fuel economy.  I argue that this provides the best measure of = comparative operating costs, better than miles per gallon which distorts the = presentation.  Here are the results.

 

These curves support previous suggestions for = economical flying: fly slower, fly higher, and fly lean of peak.

 

Except: you will note that at higher altitudes the = curves flatten out a lot so that at 12,000 feet, the curve is fairly flat over = a wide speed range.  The cost penalty for increasing from say 180 knots = (near the best L/D for the LIV at 12,000 feet) to 220 knots, a 22% speed increase, = is only about 6-7% increase in cost per mile. 

 

But the cost of cranking it up to 75% and running = rich of peak is +20% in cost while gaining only about +6% in speed.  Or, if = you like, it costs 20% more to arrive 3.6 minutes sooner for each hour of = flight.

 

So I would say that for my airplane, 65%, 12,000 = feet, and ~220 knots is a good trade-off.  You Legacy guys are a bit faster, = but I would think the same conclusion applies.

 

Fred Moreno

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