Fluid diffusion device for sealed bearing compartment drainback system
A diffuser for an oil drainback system drain tube includes a flow chamber configured for attachment to an open end of a drain tube, wherein the flow chamber has a side wall and an end wall, and openings in at least the side wall.
1. A diffuser for an oil drainback system drain tube, comprising:
a flow chamber configured for attachment to an open end of a drain tube, wherein the flow chamber has a side wall and an end wall, and openings in at least the side wall, wherein the flow chamber further comprises at least one end opening in the end wall, further comprising at least one baffle in the flow chamber between an inlet end where the flow chamber connects to the drain tube, and the at least one end opening, wherein the openings in the side wall are distributed upstream and downstream of the baffle, and wherein openings upstream of the baffle have a smaller diameter than openings downstream of the baffle.
2. The diffuser of claim 1 , wherein the side wall defines a cylinder, and wherein the openings are distributed around a circumference of the cylinder.
3. The diffuser of claim 2 , wherein the openings are also distributed along a length of the cylinder.
4. A diffuser for an oil drainback system drain tube, comprising:
a flow chamber configured for attachment to an open end of a drain tube, wherein the flow chamber has a side wall and an end wall, and openings in at least the side wall, wherein the flow chamber further comprises at least one end opening in the end wall, and wherein a collective flow area of the openings in the side wall is greater than a collective flow area of the at least one end opening.
5. An oil drainback system for a bearing compartment of a gas turbine engine, comprising:
a bearing compartment;
a buffer air area around the bearing compartment;
a sump for scavenging oil from the bearing compartment;
a gutter system for collecting oil from the buffer air area;
an oil flow path connected to the gutter system and exposed to pressure within the buffer air area;
a drain tube connected to the oil flow path and extending into the bearing compartment to return oil collected from the buffer air area to the bearing compartment; and
means for diffusing gas flow from the drain tube within the bearing compartment.
6. The oil drainback system of claim 5 , wherein the means for diffusing comprises a flow chamber attached to an open end of the drain tube, wherein the flow chamber has a side wall and an end wall, and openings in at least the side wall.
7. The system of claim 6 , wherein the flow chamber further comprises at least one end opening in the end wall.
8. The system of claim 7 , wherein a collective flow area of the openings in the side wall is greater than e a collective flow area of the at least one end opening.
9. The system of claim 7 , further comprising at least one baffle in the flow chamber between an inlet end where the flow chamber connects to the drain tube, and the at least one end opening.
10. The system of claim 9 , wherein the openings in the side wall are distributed upstream and downstream of the baffle.
11. The system of claim 10 , wherein openings upstream of the baffle have a smaller diameter than openings downstream of the baffle.
12. The system of claim 5 , wherein the side wall defines a cylinder, and wherein the openings are distributed around a circumference of the cylinder.
13. The system of claim 12 , wherein the openings are also distributed along a length of the cylinder.
14. A method for upgrading an oil drainback system for a gas turbine engine, wherein the oil drainback system comprises a bearing compartment; a buffer air area around the bearing compartment; a sump for scavenging oil from the bearing compartment; a gutter system for collecting oil from the buffer air area; an oil flow path connected to the gutter system and exposed to pressure within the buffer air area; and a drain tube connected to the oil flow path and extending into the bearing compartment to return collected oil from the buffer air area to the bearing compartment, wherein the method comprises mounting a diffuser to an open end of the drain tube, wherein the diffuser comprises a flow chamber configured for attachment to the open end of the drain tube, the flow chamber having a side wall and an end wall, and openings in at least the side wall.
15. The method of claim 14 , wherein the drain tube contains an orifice for restricting flow through the drain tube, and wherein the method further comprises removing the orifice from the drain tube in advance of the mounting step.