X-Virus-Scanned: clean according to Sophos on Logan.com From: "Steven W. Boese" Received: from [157.56.111.141] (HELO na01-bn1-obe.outbound.protection.outlook.com) by logan.com (CommuniGate Pro SMTP 6.1.8) with ESMTPS id 8326840 for flyrotary@lancaironline.net; Thu, 14 Jan 2016 14:22:13 -0500 Received-SPF: none receiver=logan.com; client-ip=157.56.111.141; envelope-from=SBoese@uwyo.edu Received: from BN3PR0501MB1138.namprd05.prod.outlook.com (10.160.113.148) by BN3PR0501MB1138.namprd05.prod.outlook.com (10.160.113.148) with Microsoft SMTP Server (TLS) id 15.1.365.19; Thu, 14 Jan 2016 19:21:54 +0000 Received: from BN3PR0501MB1138.namprd05.prod.outlook.com ([10.160.113.148]) by BN3PR0501MB1138.namprd05.prod.outlook.com ([10.160.113.148]) with mapi id 15.01.0365.023; Thu, 14 Jan 2016 19:21:54 +0000 To: Rotary motors in aircraft Subject: Re: [FlyRotary] Oil Scavenge Pump vs Custom Oil Pan Thread-Topic: [FlyRotary] Oil Scavenge Pump vs Custom Oil Pan Thread-Index: AQHRTu6qsY/ouiBvh0+OIntWnm47Cp77W3hM Date: Thu, 14 Jan 2016 19:21:54 +0000 Message-ID: References: In-Reply-To: Accept-Language: en-US Content-Language: en-US X-MS-Has-Attach: yes X-MS-TNEF-Correlator: authentication-results: spf=none (sender IP is ) smtp.mailfrom=SBoese@uwyo.edu; x-originating-ip: [69.146.103.188] x-microsoft-exchange-diagnostics: 1;BN3PR0501MB1138;5:tFGGe/w77zSCVnSC0X7PKilDw5fu+IFuIOFlvkDKL+0AaOddNhWCvVHIVmhXu6+QjLl5ZedwWkRotKYg8m+mbBmRnztKK4C+nS4sZk/tqYr/R6zvA3tT1T97qRA6+JAUb7Qyn2Gl8TAj4ot6yOyryQ==;24:iYs+EDPLukDPimpTkRX18n+F3SOlLmaECHrgn0yLPqZa307HQz7tUDy2IzaYV+xHHQvY468RMKkGkfVNbeAmdn466RKhFT8zF4DURSx0QkI= x-microsoft-antispam: UriScan:;BCL:0;PCL:0;RULEID:;SRVR:BN3PR0501MB1138; x-ms-office365-filtering-correlation-id: 7c69bfd1-be3a-46cb-d75a-08d31d17f677 x-microsoft-antispam-prvs: x-exchange-antispam-report-test: UriScan:; x-exchange-antispam-report-cfa-test: BCL:0;PCL:0;RULEID:(102615245)(601004)(2401047)(520078)(5005006)(8121501046)(3002001)(10201501046);SRVR:BN3PR0501MB1138;BCL:0;PCL:0;RULEID:;SRVR:BN3PR0501MB1138; x-forefront-prvs: 08213D42D3 x-forefront-antispam-report: SFV:NSPM;SFS:(10019020)(6009001)(189002)(53754006)(377454003)(51914003)(199003)(16236675004)(122556002)(1096002)(3846002)(80792005)(19625215002)(88552001)(19627405001)(586003)(2906002)(33656002)(10400500002)(89122001)(92566002)(5008740100001)(102836003)(76576001)(5890100001)(1220700001)(6116002)(66066001)(5003600100002)(2900100001)(450100001)(77096005)(2950100001)(87936001)(86362001)(40100003)(105586002)(101416001)(5004730100002)(50986999)(75432002)(106356001)(189998001)(74316001)(76176999)(1600100001)(54356999)(107886002)(5001960100002)(106116001)(99286002)(19580405001)(110136002)(99936001)(97736004)(5002640100001)(81156007)(19580395003)(11100500001)(90282001);DIR:OUT;SFP:1102;SCL:1;SRVR:BN3PR0501MB1138;H:BN3PR0501MB1138.namprd05.prod.outlook.com;FPR:;SPF:None;PTR:InfoNoRecords;MX:1;A:1;LANG:en; received-spf: None (protection.outlook.com: uwyo.edu does not designate permitted sender hosts) spamdiagnosticoutput: 1:23 spamdiagnosticmetadata: NSPM Content-Type: multipart/mixed; boundary="_004_BN3PR0501MB113807A1C73EBB6E0801DC1FB9CC0BN3PR0501MB1138_" MIME-Version: 1.0 X-OriginatorOrg: uwyo.edu X-MS-Exchange-CrossTenant-originalarrivaltime: 14 Jan 2016 19:21:54.2905 (UTC) X-MS-Exchange-CrossTenant-fromentityheader: Hosted X-MS-Exchange-CrossTenant-id: f9cdd7ad-825d-4601-8e9c-a325e02d52da X-MS-Exchange-Transport-CrossTenantHeadersStamped: BN3PR0501MB1138 --_004_BN3PR0501MB113807A1C73EBB6E0801DC1FB9CC0BN3PR0501MB1138_ Content-Type: multipart/alternative; boundary="_000_BN3PR0501MB113807A1C73EBB6E0801DC1FB9CC0BN3PR0501MB1138_" --_000_BN3PR0501MB113807A1C73EBB6E0801DC1FB9CC0BN3PR0501MB1138_ Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Dave, I have attached a photo of the drain from the turbo on my Renesis test stan= d. The orange fire sleeve covers a section of 1986 13B stock oil cooler ho= se that connects the turbo drain flange to an oil level sensor port (also 1= 986 13B) which is installed below the oil level in a custom oil pan that I = built. There is a steel tube brazed to the bottom of the turbo oil drain a= s close as possible to the drain flange. There is a hose connected to this= steel tube which is leads to a crankcase vent port near the oil filler loc= ation. This makes the fire sleeved hose essentially an extension of the oi= l pan where the turbo drains into it above the oil level in the pan. No ai= r lock should occur due to the connection to the crankcase vent. This has = worked for me so far. I initially had a scavenge pump to return the turbo = drain oil to the crankcase, but I decided to try the vented drain to simpli= fy things. I have had no oil coming from the RD1B input shaft seal in about 500 flight= hours on my NA 13B installation. The drain is a -6 aluminum tube with a s= light downhill slope from the RD drain to the side of a rotor housing leg. = A 5/8" id crankcase vent is installed in the center iron where the stock o= il filler standpipe was originally located. I haven't measured the crankca= se pressure under WOT throttle conditions. Is there any possibility that c= rankcase pressure is contributing to the oil leaking by your RD seal? Steve Boese RV6A, 1986 13B NA, RD1A, EC2 ________________________________ From: Rotary motors in aircraft on behalf of = David Leonard Sent: Thursday, January 14, 2016 10:11 AM To: Rotary motors in aircraft Subject: [FlyRotary] Oil Scavenge Pump vs Custom Oil Pan Hi All, I have decided to install an oil scavenge system to return the oil from Tra= cy's gear box and perhaps from my turbo as well. I am really getting tired= of all the oil getting all over everything. It clearly seems to be coming= from the area between the RD1B and engine, which means that it is probably= coming past the RD1B oil seal. Tracy calls for a nice big line and downhi= ll only run of the oil to a point that is higher than the oil level in the = sump. However, there is precious little elevation drop and I have not been= able to achieve those requirements with a gravity only system. If I run t= he oil level very low in the sump the problem is improved, but I think it i= s time for a better solution. I am considering either a custom oil pan that allows for a deeper drop of t= he oil, or a scavenge pump. The benefit of the custom oil pan is that it can be an improvement in weigh= t over the stock pan, and requires no moving parts or power and is unlikely= to fail. The scavenge pump is nice because it would be an easier installa= tion and will probably be more effective at fixing my solution, though I do= worry about adding another possible failure point. 1) Soliciting pinions on the decision between Scavenge pump and custom oil = pan. 2) Recommendations on someone who makes custom oil pans and pickups? 3) If I choose a pump, does that solution require a tank or can the drain l= ines be connected directly to the pump? This would create a suction on the= outlets of the RD1B and or the Turbo, does anyone see a problem with that?= Drain oil from the RD1B too fast? Bad for turbo bearings? 4) Would I need 2 pumps for redundancy? I am leaning that way, which means= I am leaning more toward custom oil pan. 5) Turbo drain back seem adequate, which means I could use the pump to isol= ate the Gear Box oil, allowing for different oil there. Thoughts on this o= ption? Thanks for the input! Dave Leonard Turbo Rotary RV-6 N4VY --_000_BN3PR0501MB113807A1C73EBB6E0801DC1FB9CC0BN3PR0501MB1138_ Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable

Dave,


I have attached a photo of the drain from the turbo on my Renesis test s= tand.  The orange fire sleeve covers a section of 1986 13B stock oil c= ooler hose that connects the turbo drain flange to an oil level sensor port= (also 1986 13B) which is installed below the oil level in a custom oil pan that I built.  There is a steel tub= e brazed to the bottom of the turbo oil drain as close as possible to the d= rain flange.  There is a hose connected to this steel tube which is&nb= sp;leads to a crankcase vent port near the oil filler location.  This makes the fire sleeved hose essentially an ext= ension of the oil pan where the turbo drains into it above the oil level in= the pan.  No air lock should occur due to the connection to the crank= case vent.  This has worked for me so far.  I initially had a scavenge pump to return the turbo drain oil to the crank= case, but I decided to try the vented drain to simplify things.


I have had no oil coming from the RD1B input shaft seal in about 500 fli= ght hours on my NA 13B installation.  The drain is a -6 aluminum tube = with a slight downhill slope from the RD drain to the side of a rotor = housing leg.  A 5/8" id crankcase vent is installed in the center iron where the stock oil filler standpipe was= originally located.  I haven't measured the crankcase pressure under = WOT throttle conditions.  Is there any possibility that crankcase pres= sure is contributing to the oil leaking by your RD seal?  


Steve Boese
RV6A, 1986 13B NA, RD1A, EC2



From: Rotary motors in ai= rcraft <flyrotary@lancaironline.net> on behalf of David Leonard <f= lyrotary@lancaironline.net>
Sent: Thursday, January 14, 2016 10:11 AM
To: Rotary motors in aircraft
Subject: [FlyRotary] Oil Scavenge Pump vs Custom Oil Pan
 
Hi All,

I have decided to install an oil scavenge system to return the oil fro= m Tracy's gear box and perhaps from my turbo as well.  I am really get= ting tired of all the oil getting all over everything.  It clearly see= ms to be coming from the area between the RD1B and engine, which means that it is probably coming past the RD1B oil = seal.  Tracy calls for a nice big line and downhill only run of the oi= l to a point that is higher than the oil level in the sump.  However, = there is precious little elevation drop and I have not been able to achieve those requirements with a gravity only sys= tem.  If I run the oil level very low in the sump the problem is impro= ved, but I think it is time for a better solution.

I am considering either a custom oil pan that allows for a deeper drop= of the oil, or a scavenge pump.

The benefit of the custom oil pan is that it can be an improvement in = weight over the stock pan, and requires no moving parts or power and is unl= ikely to fail.  The scavenge pump is nice because it would be an easie= r installation and will probably be more effective at fixing my solution, though I do worry about adding another po= ssible failure point.

1) Soliciting pinions on the decision between Scavenge pump and custom= oil pan.

2) Recommendations on someone who makes custom oil pans and pickups?

3) If I choose a pump, does that solution require a tank or can the dr= ain lines be connected directly to the pump?  This would create a suct= ion on the outlets of the RD1B and or the Turbo, does anyone see a problem = with that?  Drain oil from the RD1B too fast?  Bad for turbo bearings? 

4) Would I need 2 pumps for redundancy?  I am leaning that way, w= hich means I am leaning more toward custom oil pan.

5) Turbo drain back seem adequate, which means I could use the pump to= isolate the Gear Box oil, allowing for different oil there.  Thoughts= on this option?

Thanks for the input!

Dave Leonard
Turbo Rotary RV-6 N4VY
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