X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Received: from imo-m17.mx.aol.com ([64.12.138.207] verified) by logan.com (CommuniGate Pro SMTP 5.1c.3) with ESMTP id 1349072 for flyrotary@lancaironline.net; Fri, 25 Aug 2006 21:43:20 -0400 Received-SPF: pass receiver=logan.com; client-ip=64.12.138.207; envelope-from=Lehanover@aol.com Received: from Lehanover@aol.com by imo-m17.mx.aol.com (mail_out_v38_r7.6.) id q.513.4a73e080 (42809) for ; Fri, 25 Aug 2006 21:42:36 -0400 (EDT) From: Lehanover@aol.com Message-ID: <513.4a73e080.3221010c@aol.com> Date: Fri, 25 Aug 2006 21:42:36 EDT Subject: Exhaust systems To: flyrotary@lancaironline.net MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="part1_513.4a73e080.3221010c_boundary" X-Mailer: 9.0 Security Edition for Windows sub 5331 X-Spam-Flag: NO --part1_513.4a73e080.3221010c_boundary Content-Type: multipart/alternative; boundary="-----------------------------1156556542" -------------------------------1156556542 Content-Type: text/plain; charset="UTF-8" Content-Transfer-Encoding: quoted-printable Content-Language: en =20 Check for posts by Lynn Hanover =E2=80=93 he=E2=80=99s called out the exhau= st lengths and=20 diameters a bunch of times (I can=E2=80=99t remember exactly otherwise I= =E2=80=99d parrot it=20 here for you). =20 Although the rotary is a 4 Otto cycle engine it tunes like a 2 Otto cycle =20 engine. And it is very sensitive to inlet runner lengths and diameters and =20 exhaust lengths and diameters. So it tunes like a big dirt bike engine. You=20= =20 cannot make a huge gain in HP by doing it right, but you can leave a lot on=20= the =20 table by doing it wrong. Except for the RX-8 engine the intake and exhaust =20= are=20 connected during overlap at BDC and the exhaust can interfere with the inta= ke=20 to poor result.=20 =20 The number one factor in exhaust design is that both primary pipes join at =20 the same length and enter the collector at the same angle. Look at the Racin= g =20 Beat Catalog pictures of the street headers. Note the extra bends in the rea= r =20 tube to result in the same centerline length as the front tube. Any design=20 that does not collect the primary pipes is a non-starter, HP wise. =20 Primary tube diameters are just a bit larger than the exhaust liner. In mos= t=20 cases 1 7/8" to 2" ID is what you end up with. Measure the liner ID at the =20 face. I gave up on the exhaust gaskets years ago, and Just lay on a bead of=20 100% GE silicone around each port about 5/8" outboard of the hole, and bolt= on=20 the manifold before it sets up. Never had a leak. =20 Primary lengths in multiples of 10"-12" looking for 32" to 36" to the =20 collector if you have the room and can stand the complexity. Ceramic coate= d inside=20 and out would be good. Heat wrap makes an astounding difference. You can=20 touch the exhaust while the engine is screaming. The race car is not drivab= le=20 without heat wrap on the muffler. The interior sheet metal turns from white= to=20 brown with paint blisters. We run heat tape and a shield over a 4" ID=20 stainless packed Borla. =20 After the collector ending at 2 1/2" then up to 3" for the run to the =20 muffler if any. Only round will last very long. I thought the Spintech looke= d =20 promising with all of the vanes supporting both sides. If the design allows=20= for a=20 large volume to let the pulses drop to subsonic, velocity is traded for =20 pressure and generally the muffler is hammered to pieces in short order. Aft= er the=20 collector there is little affect in differing pipe lengths. In the RS series= =20 and in the Racing Beat catalogue there are recommendations for lengths that=20= =20 include having the collector right at the muffler 102" from the flange. Good for overall RPMs, but not particularly =20 good at any specific RPM. Even with the Mazda racing muffler at the very end= of =20 a long system under the rear bumper, it was a good idea to wire up both ends= =20 of the muffler so when it comes apart you don't drop pieces on the track.=20 =20 If you have minimal back pressure, any leaks will result in air being drawn=20= =20 into the system with much popping and banging on spool-down. =20 =20 The system has to be stainless. You must shield either the pipe (Easy and =20 light) or the equipment you don't want melted, (harder and heavier), or it w= ill =20 overheat. If the exhaust system can see it (line of sight) it will melt.=20 =20 If the engine can move and part of the exhaust system is tied down tight, i= t=20 will fracture a tube and set a fire going. Add or fabricate a flex joint. =20 Allow for a length change with temperature changes. =20 That's a start. =20 Lynn E. Hanover =20 =20 =20 =20 -------------------------------1156556542 Content-Type: text/html; charset="UTF-8" Content-Transfer-Encoding: quoted-printable Content-Language: en
<= FONT=20 style=3D"BACKGROUND-COLOR: transparent" face=3DArial color=3D#000080 size= =3D2>

Check for posts= by=20 Lynn Hanover =E2=80=93 he=E2=80=99s called out the exhaust lengths and dia= meters a bunch of=20 times (I can=E2=80=99t remember exactly otherwise I=E2=80=99d parrot it he= re for you).=20

Although the rotary is a 4 Otto cycle engine it tunes like a 2 Otto cyc= le=20 engine. And it is very sensitive to inlet runner lengths and diameters and=20 exhaust lengths and diameters. So it tunes like a big dirt bike engine. You=20 cannot make a huge gain in HP by doing it right, but you can leave a lot on=20= the=20 table by doing it wrong. Except for the RX-8 engine the intake and exha= ust=20 are connected during overlap at BDC and the exhaust can interfere with the=20 intake to poor result.
 
The number one factor in exhaust design is that both primary pipes join= at=20 the same length and enter the collector at the same angle. Look at the Racin= g=20 Beat Catalog pictures of the street headers. Note the extra bends in the rea= r=20 tube to result in the same centerline length as the front tube. Any design t= hat=20 does not collect the primary pipes is a non-starter, HP wise.
 
Primary tube diameters are just a bit larger than the exhaust liner. In= =20 most cases 1 7/8" to 2" ID is what you end up with. Measure the liner ID at=20= the=20 face. I gave up on the exhaust gaskets years ago, and Just lay on a bead of=20= 100%=20 GE silicone around each port about 5/8" outboard of the hole, and bolt on th= e=20 manifold before it sets up. Never had a leak.
 
Primary lengths in multiples of 10"-12" looking for 32" to 36" to=20= the=20 collector if you have the room and can stand the complexity.  Ceramic=20 coated inside and out would be good. Heat wrap makes an astounding differenc= e.=20 You can touch the exhaust while the engine is screaming. The race car is not= =20 drivable without heat wrap on the muffler. The interior sheet metal turns fr= om=20 white to brown with paint blisters. We run heat tape and a shield over = a=20 4" ID stainless packed Borla.
 
After the collector ending at 2 1/2" then up to 3" for the run to the=20 muffler if any. Only round will last very long. I thought the Spintech looke= d=20 promising with all of the vanes supporting both sides. If the design allows=20= for=20 a large volume to let the pulses drop to subsonic, velocity is traded f= or=20 pressure and generally the muffler is hammered to pieces in short order. Aft= er=20 the collector there is little affect in differing pipe lengths. In the RS se= ries=20 and in the Racing Beat catalogue there are recommendations for lengths that=20 include having the collector right at the
muffler 102" from the flange. Good for overall RPMs, but not particular= ly=20 good at any specific RPM. Even with the Mazda racing muffler at the very end= of=20 a long system under the rear bumper, it was a good idea to wire up both ends= of=20 the muffler so when it comes apart you don't drop pieces on the=20 track. 
 
If you have minimal back pressure, any leaks will result in air being d= rawn=20 into the system with much popping and banging on spool-down.  
 
The system has to be stainless. You must shield either the pipe (Easy a= nd=20 light) or the equipment you don't want melted, (harder and heavier), or it w= ill=20 overheat. If the exhaust system can see it (line of sight) it will melt.
 
If the engine can move and part of the exhaust system is tied down tigh= t,=20 it will fracture a tube and set a fire going. Add or fabricate a flex joint.= =20 Allow for a length change with temperature changes.
 
That's a start.
 
Lynn E. Hanover
 
 
 
 
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