GEARBOX ASSEMBLY WITH LUBRICANT EXTRACTION VOLUME RATIO
A gearbox assembly includes a gearbox and a gutter for collecting a gearbox lubricant scavenge flow from the gearbox. The gutter is characterized by a lubricant extraction volume ratio between 0.01 and 0.3, inclusive of the endpoints. A gas turbine engine includes the gearbox assembly.
1 . A gearbox assembly comprising:
a gearbox; and
a gutter for collecting a gearbox lubricant scavenge flow from the gearbox, the gutter being characterized by a lubricant extraction volume ratio between 0.01 and 0.3, inclusive of the endpoints.
2 . The gearbox assembly of claim 1 , wherein the lubricant extraction volume ratio is between 0.03 and 0.3, inclusive of the endpoints, for a gearbox power less than or equal to thirty-five kHP.
3 . The gearbox assembly of claim 1 , wherein the lubricant extraction volume ratio is defined by a ratio of a gutter volume of the gutter to a gearbox volume of the gearbox.
4 . The gearbox assembly of claim 3 , wherein the gutter volume is defined by an inner surface of a gutter wall of the gutter.
5 . The gearbox assembly of claim 3 , wherein the gearbox volume is defined by an outer diameter of the gearbox and a gearbox length of the gearbox.
6 . The gearbox assembly of claim 5 , wherein the outer diameter of the gearbox is an outer diameter of a ring gear.
7 . The gearbox assembly of claim 5 , wherein the gearbox length is defined between a forwardmost end of a gear of the gearbox and an aftmost end of the gear.
8 . The gearbox assembly of claim 1 , wherein the gearbox includes a sun gear, a plurality of planet gears, and a ring gear.
9 . The gearbox assembly of claim 8 , wherein the lubricant extraction volume ratio is defined by a ratio of a gutter volume of the gutter to a gearbox volume of the gearbox.
10 . The gearbox assembly of claim 9 , wherein the gearbox volume is defined by an outer diameter of the ring gear and a length of the gearbox.
11 . The gearbox assembly of claim 1 , wherein the lubricant extraction volume ratio is defined by a power factor, a flow transition time, and a heat density parameter.
12 . The gearbox assembly of claim 11 , wherein the flow transition time is defined by a gutter volume of the gutter and a lubricant volumetric flow rate of a lubricant through the gearbox.
13 . The gearbox assembly of claim 11 , wherein the flow transition time is between 1.5 seconds and eleven seconds, inclusive of the endpoints.
14 . The gearbox assembly of claim 11 , wherein the power factor is defined by a power density of the gearbox and an efficiency of the gearbox.
15 . The gearbox assembly of claim 14 , wherein the power density is between fifteen thousand hp/ft 3 and forty-five thousand hp/ft 3 , inclusive of the endpoints, and the efficiency is between 99.2 percent and 99.8 percent, inclusive of the endpoints.
16 . A gas turbine engine comprising:
a gearbox assembly comprising:
a gearbox; and
a gutter for collecting a gearbox lubricant scavenge flow from the gearbox, the gutter being characterized by a lubricant extraction volume ratio between 0.01 and 0.3, inclusive of the endpoints.
17 . The gas turbine engine of claim 16 , wherein the lubricant extraction volume ratio is between 0.01 and 0.3, inclusive of the endpoints, when the gas turbine engine has an engine power greater than or equal to thirty-five kHP.
18 . The gas turbine engine of claim 17 , wherein the engine power is between thirty-five kHP and ninety kHP, inclusive of the endpoints.
19 . The gas turbine engine of claim 16 , wherein the lubricant extraction volume ratio is between 0.03 and 0.3, inclusive of the endpoints.
20 . The gas turbine engine of claim 16 , wherein the lubricant extraction volume ratio is between 0.03 and 0.3, inclusive of the endpoints, when the gas turbine engine has an engine power less than or equal to thirty-five kHP.