X-Virus-Scanned: clean according to Sophos on Logan.com From: "Jeff Whaley" Received: from hub026-NJ-5.exch026.serverdata.net ([206.225.166.168] verified) by logan.com (CommuniGate Pro SMTP 6.1c2) with ESMTPS id 7443753 for flyrotary@lancaironline.net; Thu, 29 Jan 2015 10:06:05 -0500 Received-SPF: none receiver=logan.com; client-ip=206.225.166.168; envelope-from=jwhaley@datacast.com Received: from MBX026-E1-NJ-2.exch026.domain.local ([10.240.14.52]) by HUB026-NJ-5.exch026.domain.local ([10.240.14.42]) with mapi id 14.03.0174.001; Thu, 29 Jan 2015 07:05:28 -0800 To: Rotary motors in aircraft Subject: Re: [FlyRotary] swirl / expansion tank configuration Thread-Topic: Re: [FlyRotary] swirl / expansion tank configuration Thread-Index: AdA71QO3ltmIJbexTEyerXzivXFJPQ== Date: Thu, 29 Jan 2015 15:05:27 +0000 Message-ID: <234B758DE9A64449BEB6BB5D1345CA7A48EACCA8@mbx026-e1-nj-2.exch026.domain.local> Accept-Language: en-CA, en-US Content-Language: en-US X-MS-Has-Attach: yes X-MS-TNEF-Correlator: x-originating-ip: [209.87.232.162] Content-Type: multipart/mixed; boundary="_007_234B758DE9A64449BEB6BB5D1345CA7A48EACCA8mbx026e1nj2exch_" MIME-Version: 1.0 --_007_234B758DE9A64449BEB6BB5D1345CA7A48EACCA8mbx026e1nj2exch_ Content-Type: multipart/related; boundary="_006_234B758DE9A64449BEB6BB5D1345CA7A48EACCA8mbx026e1nj2exch_"; type="multipart/alternative" --_006_234B758DE9A64449BEB6BB5D1345CA7A48EACCA8mbx026e1nj2exch_ Content-Type: multipart/alternative; boundary="_000_234B758DE9A64449BEB6BB5D1345CA7A48EACCA8mbx026e1nj2exch_" --_000_234B758DE9A64449BEB6BB5D1345CA7A48EACCA8mbx026e1nj2exch_ Content-Type: text/plain; charset="us-ascii" Content-Transfer-Encoding: quoted-printable Charlie, I don't think your system will work as you expect and I'm pretty s= ure it is not the same as the Hanover-Setup. Attached is the Hanover cooli= ng system diagram ... note all the cooling elements (radiator, hoses, fille= r bottle) are completely full of glycol (green); only the expansion tank (a= pprox 1 litre, with stant lever cap) has room for air, filled only about 1/= 3. The location of the expansion tank is shown higher than everything else= in the diagram but can actually be located lower; what is important is the= connections be as shown, i.e., highest point of saturated cooling system c= onnects to bottom of expansion tank, expansion tank is only 1/3 full and th= is is where you install the pressure cap. The location of your steam lines to top of expansion tank is correct but I = think with your bottom connection going to pump inlet what will happens is = any portion of the expansion tank lower than highest point in the system wi= ll simply back-fill with coolant and you will no longer have an expansion t= ank but rather a coolant tank. I believe your methodology will work if at = least 1/3 of expansion tank is the highest point in the system. One thing = for sure is with the pressure sensor located on the pump inlet side, you wi= ll be measuring the lowest pressure in the system. Jeff From: Charlie England Subject: swirl / expansion tank configuration Date: Wed, 28 Jan 2015 17:57:34 -0600 To: flyrotary [Message Header] [Undecoded Message] I'm setting up the cooling plumbing for the Renesis (RV-7) & wanted to try = the setup used in a lot of current autos, where the 'steam' lines go to the= expansion tank and the coolant in the expansion tank is constantly pulled = back into the input to the water pump. I'm hoping that this will do a conti= nuous purge, similar to Lynn Hanover's setup with the extra swirl tank. I c= ouldn't get the swirl/expansion tank higher than the water pump outlet (hig= hest point of the system), so I modified the hotrod expansion tank shown, w= ith the hope that when the system cools, it will be forced to pull only coo= lant back into the 'steam' lines. The plan is to collect the steam lines fr= om the radiator, flywheel end iron, and pump outlet & return them to the po= rt located at the 10 o'clock position on the tank. I'm assuming that I'll need to add a fill port on the pump outlet (top of e= ngine) and fill from there after partially filling & capping the expansion = tank. Any thoughts/criticisms? Charlie This message, and the documents attached hereto, is intended only for the a= ddressee and may contain privileged or confidential information. Any unauth= orized disclosure is strictly prohibited. If you have received this message= in error, please notify us immediately so that we may correct our internal= records. Please then delete the original message. Thank you. --_000_234B758DE9A64449BEB6BB5D1345CA7A48EACCA8mbx026e1nj2exch_ Content-Type: text/html; charset="us-ascii" Content-Transfer-Encoding: quoted-printable

Charlie, I don’t think your system will work a= s you expect and I’m pretty sure it is not the same as the Hanover-Se= tup.  Attached is the Hanover cooling system diagram … note all = the cooling elements (radiator, hoses, filler bottle) are completely full of glycol (green); only the expansion tank (approx 1 litre= , with stant lever cap) has room for air, filled only about 1/3.  The = location of the expansion tank is shown higher than everything else in the = diagram but can actually be located lower; what is important is the connections be as shown, i.e., highest point of s= aturated cooling system connects to bottom of expansion tank, expansion tan= k is only 1/3 full and this is where you install the pressure cap.

 

The location of your steam lines to top of expansion= tank is correct but I think with your bottom connection going to pump inle= t what will happens is any portion of the expansion tank lower than highest= point in the system will simply back-fill with coolant and you will no longer have an expansion tank but rather a co= olant tank.  I believe your methodology will work if at least 1/3 of e= xpansion tank is the highest point in the system.  One thing for sure = is with the pressure sensor located on the pump inlet side, you will be measuring the lowest pressure in the system.<= o:p>

 

Jeff

From:

Charlie England <flyrotary@lancai= ronline.net>

Subject:

swirl / expansion tank configuration=

Date:

Wed, 28 Jan 2015 17:57:34 -0600=

To:

flyrotary <flyrotary@lancaironlin= e.net>

3D"Message

I'm setting up the cooling plumbing for the Renesis (RV-7)= & wanted to try the setup used in a lot of current autos, where the 's= team' lines go to the expansion tank and the coolant in the expansion tank is constantly pulled back into the input to the wate= r pump. I'm hoping that this will do a continuous purge, similar to Lynn Ha= nover's setup with the extra swirl tank. I couldn't get the swirl/expansion= tank higher than the water pump outlet (highest point of the system), so I modified the hotrod expansion t= ank shown, with the hope that when the system cools, it will be forced to p= ull only coolant back into the 'steam' lines. The plan is to collect the st= eam lines from the radiator, flywheel end iron, and pump outlet & return them to the port located at the 10 = o'clock position on the tank.

I'm assuming that I'll need to add a fill port on the pump outlet (top of = engine) and fill from there after partially filling & capping the expan= sion tank. Any thoughts/criticisms?

Charlie

 

 

 

 

This message, and the documents attached hereto, is intended only for the a= ddressee and may contain privileged or confidential information. Any unauth= orized disclosure is strictly prohibited. If you have received this message= in error, please notify us immediately so that we may correct our internal records. Please then delete the origin= al message. 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