X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Received: from mail01.syd.optusnet.com.au ([211.29.132.182] verified) by logan.com (CommuniGate Pro SMTP 5.0.5) with ESMTPS id 903501 for flyrotary@lancaironline.net; Wed, 28 Dec 2005 00:07:28 -0500 Received-SPF: none receiver=logan.com; client-ip=211.29.132.182; envelope-from=lendich@optusnet.com.au Received: from george (d58-105-94-193.dsl.nsw.optusnet.com.au [58.105.94.193]) by mail01.syd.optusnet.com.au (8.12.11/8.12.11) with SMTP id jBS56DCN024478 for ; Wed, 28 Dec 2005 16:06:16 +1100 Message-ID: <001901c60b6c$6d34fb00$c15e693a@george> From: "george lendich" To: "Rotary motors in aircraft" References: Subject: Re: [FlyRotary] Re: Props Date: Wed, 28 Dec 2005 15:06:13 +1000 MIME-Version: 1.0 Content-Type: multipart/related; type="multipart/alternative"; boundary="----=_NextPart_000_0015_01C60BC0.3E482660" X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook Express 6.00.2800.1106 X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2800.1106 This is a multi-part message in MIME format. ------=_NextPart_000_0015_01C60BC0.3E482660 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0016_01C60BC0.3E482660" ------=_NextPart_001_0016_01C60BC0.3E482660 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Bob, That goes for me too, my server deleted it - Thanks Greg for explaining. George ( down under) Bob my email server automatically deletes exe files, could you zip = first please. Thanks Greg Attached is a Prop Design program, which I found some time ago, that = has the following explanation on its help page. You can play with the = numbers to match your prop and see what speed you will get or you can = plug in the variables and see what size prop you should have. I hope = you can receive the attached file. -------------------------------------------------------------------------= --- From: Rotary motors in aircraft [mailto:flyrotary@lancaironline.net] = On Behalf Of Ed Anderson Sent: Thursday, December 22, 2005 7:46 AM To: Rotary motors in aircraft Subject: [FlyRotary] Re: Props I really do not know, George. I have known folks with aircraft = speeds somewhat faster than the "screw" calculations would have = predicted - perhaps this "lift" factor played a role. Most figures I = have seen puts efficient of prop around 80-85% mostly around 80. Ed ----- Original Message -----=20 From: george lendich=20 To: Rotary motors in aircraft=20 Sent: Thursday, December 22, 2005 4:45 AM Subject: [FlyRotary] Re: Props Thanks Ed, I like to reduce things down to the simplest formula, provided one = doesn't lose track of what's relevant. So I guess I should look at this as 100 % theoretically efficient = - whereas we may be looking at only 80 % efficiency ( in real terms), Do = you agree with 80%? However your saying that the lift may give more speed ( MPH, in = real terms) - So are you suggesting that these two (variables) may = balance out? Or should we use a fudge factor, and that could be what? I'm not looking for a finite answer, just close enough to be able = to access the experts opinion, and we all know what an expert is - " A = drip under pressure". George (down under) Yes, George. If we assumed no slip in the prop then = theoretically the formula will give you the pitch of the prop you would = need to screw through the air and achieve your MPH at your RPM input. = This is based simply on the screw principal. I am certainly not a prop = expert, but I also believe that since the prop is a spinning wing = (airfoil), that there is a lift component in the direction of flight = which may result in more speed than the formula could account for. =20 Your second equation can be reduced further from = (Inches/Minute)/(RPM) =3D (Inches/Minute)/(Revs/Minute) =3D inches/Rev Ed A -------------------------------------------------------------------------= --- -- Homepage: http://www.flyrotary.com/ Archive and UnSub: http://mail.lancaironline.net/lists/flyrotary/ ------=_NextPart_001_0016_01C60BC0.3E482660 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
Bob,
That goes for me too, my server deleted = it -=20 Thanks Greg for explaining.
George ( down under)
Bob my email server automatically = deletes exe=20 files, could you zip first please.
 
Thanks
Greg

Attached = is a Prop=20 Design program, which I found some time ago, that has the following=20 explanation on its help page. You can play with the numbers to match = your=20 prop and see what speed you will get or you can plug in the = variables and=20 see what size prop you should have.  I hope you can receive the = attached file.

 

 

 


From:=20 Rotary motors in aircraft [mailto:flyrotary@lancaironline.net] = On Behalf Of Ed = Anderson
Sent: Thursday, December 22, = 2005 7:46=20 AM
To: Rotary = motors in=20 aircraft
Subject: = [FlyRotary] Re: Props

 

I really do not know,=20 George.  I have known folks with aircraft speeds somewhat = faster than=20 the "screw" calculations would have predicted - perhaps this "lift" = factor=20 played a role.  Most figures I have seen puts efficient of prop = around=20 80-85% mostly around 80.

 

Ed

----- Original = Message -----=20

From: george=20 lendich

To: Rotary motors in = aircraft=20

Sent:=20 Thursday, December 22, 2005 4:45 AM

Subject:=20 [FlyRotary] Re: Props

 

Thanks=20 Ed,

I like to reduce = things down=20 to the simplest formula, provided one doesn't lose track of what's = relevant.

So I guess I should = look at=20 this as 100 % theoretically efficient - whereas we may be looking = at only=20 80 % efficiency ( in real terms), Do you agree with=20 80%?

However your saying = that the=20 lift may give more speed ( MPH, in real terms) - So are = you=20 suggesting that these two (variables) may balance=20 out?

 

Or should we use a = fudge=20 factor, and that could be what?

 

I'm not looking = for a=20 finite answer, just close enough to be able to access the experts = opinion,=20 and we all know what an expert is - " A drip under=20 pressure".

 

George (down=20 under)

Yes, George.  = If we=20 assumed no slip in the prop then theoretically the formula will = give you=20 the pitch of the prop you would need to screw through the air = and=20 achieve your MPH at your RPM input.  This is based simply = on the=20 screw principal.  I am certainly not a prop expert, but I = also=20 believe that since the prop is  a spinning wing (airfoil), = that=20 there is a lift component  in the direction of flight which = may=20 result in more speed than the formula could account = for.  =20

 

Your second = equation can be=20 reduced further from   (Inches/Minute)/(RPM) =3D=20 (Inches/Minute)/(Revs/Minute) =3D = inches/Rev

 

Ed = A

 


--
Homepage:  http://www.flyrotary.com/
Archive = and=20 UnSub:  =20 = http://mail.lancaironline.net/lists/flyrotary/
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