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From: Lehanover@aol.com
Message-ID: <2100f.49b6708c.3abe19ee@aol.com>
Date: Fri, 25 Mar 2011 12:16:46 EDT
Subject: Re: [FlyRotary] Radiator Caps [FlyRotary] Re: On the subject of installations...
To: flyrotary@lancaironline.net
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In a message dated 3/25/2011 8:29:30 A.M. Eastern Daylight Time,  
eanderson@carolina.rr.com writes:

One thing to keep in mind about the pressure rating of  the radiator cap 
you are using.  All are rated relative to a standard sea  level ambient 
pressure.  This means that he air pressure itself is  contributing 14.7 psi at sea 
level.  



Everything Ed said plus more whining from Hanover.
 
In systems where the pressure control cap is mounted on the radiator top,  
or on a tube, The system pressure builds to the cap pressure and the cap 
leaks  for a second or so, and system pressure drops a bit and the cap seals 
again.  This goes on until no more expansion occurs, and the system remains at 
cap  pressure until shut down. 
 
So long as the system pressure is higher than the local pressure in the  
make up bottle (catch can) no coolant can be recovered by the system. No 
coolant  will return to the system until the system temperature is very low, and 
system  pressure drops below that in the catch can, which can be a long time 
after  shut down. This system works fine, (same as millions of old cars) 
except that it  takes several heat cycles to expel all of the air from the 
coolant. 
 
Most modern cars have very small radiators, and low coolant volumes.  
Coolant costs lots of money. These system are not happy with even the smallest  
amount of air. So, they use a pressurized make up bottle, just like all 
Mazda's  had back in the 70s. Mazda's are unhappy with even the smallest amount 
of air in  the coolant. 
 
In the picture there is a swirl pot. I stole that from the Cosworth engine  
installation manual. For racing engines that cost more than your house. 
They  want the air out of the system in one lap or less. So if you don't have a 
swirl  pot, don't bother installing the engine. That is what Cosworth said 
not me. 
 
The pressure cap is on the make up bottle, the cap on the swirl pot is just 
 for filling, and it seals solid.
In this (stock Mazda) system as the coolant changes volume even slightly  
the coolant flows freely into and out of the make up bottle. The air space 
above  the coolant is at the cap pressure, and the cap only vents air when the 
relief  pressure is attained. When throttle is pulled off, system volume 
goes down and  coolant flows from the bottle to the engine, but not air. Any 
air that goes  through the swirl pot pops to the top and any volume increase 
carries the air to  the bottom of the bottle where it pops to the top.
 
So usually in one heat cycle the air is gone. This system requires only  
that you keep the bottle 1/3 full of coolant when cold. Advantages are that it 
 works perfectly. Mazda put it on millions of rotaries. You can break open 
the  system with the engine hot (engine change at the track) by opening the 
lever cap  as only air pressure is vented. It provides emergency coolant 
should a leak  develop. Not much but it may turn out that just another 100 
yards of power can  make a big difference. The system is not complex, and if you 
have a good high  spot to vent air to the bottle, even less complex. 
 
The pressure bottles can be made of expended fire extinguisher bottles  
(aluminum) and are available in aluminum from racing supply houses. The make up 
 bottle can be mounted anywhere, and without regard for elevation. It can 
be  mounted low on the firewall. Mine is mounted on the passenger side floor. 
The  filler neck determines what model of Stant lever caps can be used. 
Also  available from racing supply houses.
 
Lynn E. Hanover     

--part1_2100f.49b6708c.3abe19ee_alt_boundary
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<HTML><HEAD>
<META content=3D"text/html; charset=3DUS-ASCII" http-equiv=3DContent-Type>
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<DIV>
<DIV>In a message dated 3/25/2011 8:29:30 A.M. Eastern Daylight Time,=20
eanderson@carolina.rr.com writes:</DIV>
<BLOCKQUOTE  style=3D"BORDER-LEFT: blue 2px solid; PADDING-LEFT: 5px; MARG=
IN-LEFT: 5px"><FONT    style=3D"BACKGROUND-COLOR: transparent" color=3D#00=
0000 size=3D2 face=3DArial>
  <DIV><FONT face=3DArial>One thing to keep in mind about the pressure rat=
ing of=20
  the radiator cap you are using.&nbsp; All are rated relative to a standa=
rd sea=20
  level ambient pressure.&nbsp; This means that he air pressure itself is=
=20
  contributing 14.7 psi at sea level.&nbsp;=20
</FONT></DIV></FONT></BLOCKQUOTE></DIV>
<DIV></DIV>
<DIV>Everything Ed said plus more whining from Hanover.</DIV>
<DIV>&nbsp;</DIV>
<DIV>In systems where the pressure control cap is mounted on the radiator=
 top,=20
or on a tube, The system pressure builds to the cap pressure and the cap=
 leaks=20
for a second or so, and system pressure drops a bit and the cap seals agai=
n.=20
This goes on until no more expansion occurs, and the system remains at cap=
=20
pressure until shut down. </DIV>
<DIV>&nbsp;</DIV>
<DIV>So long as the system pressure is higher than the local pressure in=
 the=20
make up bottle (catch can) no coolant can be recovered by the system. No=
 coolant=20
will return to the system until the system temperature is very low, and sy=
stem=20
pressure drops below that in the catch can, which can be a&nbsp;long time=
 after=20
shut down. This system works fine, (same as millions of old cars) except=
 that it=20
takes several heat cycles to expel all of the air from the coolant.&nbsp;<=
/DIV>
<DIV>&nbsp;</DIV>
<DIV>Most modern cars have very small radiators, and low coolant volumes.=
=20
Coolant costs lots of money. These system are not happy with even the smal=
lest=20
amount of air. So, they use a pressurized make up bottle, just like all Ma=
zda's=20
had back in the 70s. Mazda's are unhappy with even the smallest amount of=
 air in=20
the coolant. </DIV>
<DIV>&nbsp;</DIV>
<DIV>In the picture there is a swirl pot. I stole that from the Cosworth=
 engine=20
installation manual. For racing engines that cost more than your house. Th=
ey=20
want the air out of the system in one lap or less. So if you don't have a=
 swirl=20
pot, don't bother installing the engine. That is what Cosworth said not me=
.=20
</DIV>
<DIV>&nbsp;</DIV>
<DIV>The pressure cap is on the make up bottle, the cap on the swirl pot=
 is just=20
for filling, and it seals solid.</DIV>
<DIV>In this (stock Mazda) system as the coolant changes volume even sligh=
tly=20
the coolant flows freely into and out of the make up bottle. The air space=
 above=20
the coolant is at the cap pressure, and the cap only vents air when the re=
lief=20
pressure is attained. When throttle is pulled off, system volume goes down=
 and=20
coolant flows from the bottle to the engine, but not air. Any air that goe=
s=20
through the swirl pot pops to the top and any volume increase carries the=
 air to=20
the bottom of the bottle where it pops to the top.</DIV>
<DIV>&nbsp;</DIV>
<DIV>So usually in one heat cycle the air is gone. This system requires on=
ly=20
that you keep the bottle 1/3 full of coolant when cold. Advantages are tha=
t it=20
works perfectly. Mazda put it on millions of rotaries. You can break open=
 the=20
system with the engine hot (engine change at the track) by opening the lev=
er cap=20
as only air pressure is vented. It provides emergency coolant should a lea=
k=20
develop. Not much but it may turn out that just another 100 yards of power=
 can=20
make a big difference. The system is not complex, and if you have a good=
 high=20
spot to vent air to the bottle, even less complex. </DIV>
<DIV>&nbsp;</DIV>
<DIV>The pressure bottles can be made of expended fire extinguisher bottle=
s=20
(aluminum) and are available in aluminum from racing supply houses. The ma=
ke up=20
bottle can be mounted anywhere, and without regard for&nbsp;elevation. It=
 can be=20
mounted low on the firewall. Mine is mounted on the passenger side floor.=
 The=20
filler neck determines what model of Stant lever caps can be used. Also=20
available from racing supply houses.</DIV>
<DIV>&nbsp;</DIV>
<DIV>Lynn E. Hanover&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;</DIV></FONT></BODY></HT=
ML>

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--part1_2100f.49b6708c.3abe19ee_boundary--