FLEXIBLE SUPPORT STRUCTURE FOR A GEARED ARCHITECTURE GAS TURBINE ENGINE
A gas turbine engine according to an example of the present disclosure includes, among other things, a fan shaft driving a fan having fan blades, a fan shaft support that supports the fan shaft and defines a fan shaft support transverse stiffness. A gear system connected to the fan shaft and includes a gear mesh defining a gear mesh transverse stiffness, and a reduction ratio greater than 2.3. A flexible support supports said gear system and defines a flexible support transverse stiffness. The flexible support transverse stiffness is less than 20% of the fan shaft support transverse stiffness.
1 . A gas turbine engine, comprising:
a fan shaft driving a fan having fan blades;
a fan shaft support that supports said fan shaft, said fan shaft support defining a fan shaft support transverse stiffness;
a gear system connected to said fan shaft, said gear system includes a gear mesh defining a gear mesh transverse stiffness and a reduction ratio greater than 2.3; and
a flexible support supporting said gear system defining a flexible support transverse stiffness, wherein said flexible support transverse stiffness is less than 20% of said fan shaft support transverse stiffness.
2 . The gas turbine engine of claim 1 , wherein said fan shaft support defines a fan shaft support lateral stiffness and said flexible support defines a flexible support lateral stiffness and said flexible support lateral stiffness is less than 11% of said fan shaft support lateral stiffness.
3 . The gas turbine engine of claim 2 , further comprising a fan section having a low fan pressure ratio of less than about 1.45, wherein said low fan pressure ratio is measured across the fan blades alone.
4 . The gas turbine engine of claim 3 , further comprising a low corrected fan tip speed less than about 1150 ft/second, wherein said low corrected fan tip speed is an actual fan tip speed at an ambient temperature divided by [(T ram ° R)/(518.7° R)] 0.5 , where T represents said ambient temperature in degrees Rankine.
5 . The gas turbine engine of claim 4 , further comprising a mid-turbine frame including at least one airfoil extending into a flow path, and wherein said fan shaft support is a K-frame bearing support.
6 . The gas turbine engine of claim 3 , wherein said flexible support transverse stiffness is less than 11% of said fan shaft support transverse stiffness.
7 . The gas turbine engine of claim 6 , wherein said gear mesh defines a gear mesh lateral stiffness and said flexible support lateral stiffness is less than 8% of said gear mesh lateral stiffness.
8 . The gas turbine engine of claim 7 , further comprising a high speed spool including a two stage high pressure turbine, and a low speed spool including a low pressure turbine with an inlet, an outlet, and a low pressure turbine pressure ratio greater than 5:1, wherein said low pressure turbine pressure ratio is a ratio of a pressure measured prior to said inlet as related to a pressure at said outlet prior to any exhaust nozzle.
9 . The gas turbine engine of claim 7 , wherein said flexible support transverse stiffness is less than 8% of said gear mesh transverse stiffness.
10 . The gas turbine engine of claim 9 , further comprising a two stage high pressure turbine, and a low corrected fan tip speed less than about 1150 ft/second, wherein said low corrected fan tip speed is an actual fan tip speed at an ambient temperature divided by [(Tram° R)/(518.7° R)]0.5, where T represents said ambient temperature in degrees Rankine.
11 . The gas turbine engine of claim 7 , further comprising an input coupling defining an input coupling transverse stiffness, wherein said input coupling transverse stiffness is less than 20% of said fan shaft support transverse stiffness.
12 . The gas turbine engine of claim 11 , wherein said input coupling transverse stiffness is less than 11% of said fan shaft support transverse stiffness.
13 . The gas turbine engine of claim 12 , wherein said input coupling defines an input coupling lateral stiffness and said input coupling lateral stiffness is less than 11% of said fan shaft support lateral stiffness.
14 . The gas turbine engine of claim 11 , wherein said input coupling defines an input coupling lateral stiffness and said input coupling lateral stiffness is less than 11% of said fan shaft support lateral stiffness.
15 . The gas turbine engine of claim 3 , wherein said flexible support transverse stiffness is less than 11% of said fan shaft support transverse stiffness.
16 . The gas turbine engine of claim 15 , further comprising a low corrected fan tip speed less than about 1150 ft/second, wherein said low corrected fan tip speed is an actual fan tip speed at an ambient temperature divided by [(T ram ° R)/(518.7° R)] 0.5 , where T represents said ambient temperature in degrees Rankine, and further comprising at least one bearing system, a high speed spool including an outer shaft and a low speed spool including an inner shaft, wherein said gear system includes a planet carrier and said fan shaft is mounted to said planet carrier and said inner shaft and outer shaft are concentric and rotate via said at least one bearing system about a longitudinal axis of said engine.
17 . A gas turbine engine, comprising:
a fan shaft driving a fan having fan blades;
a fan shaft support that supports said fan shaft, said fan shaft support defining a fan shaft support transverse stiffness;
a gear system connected to said fan shaft, said gear system includes a gear mesh defining a gear mesh lateral stiffness, and a reduction ratio greater than 2.3; and
a flexible support supporting said gear system defining a flexible support transverse stiffness and a flexible support lateral stiffness, wherein said flexible support transverse stiffness is less than 20% of said fan shaft support transverse stiffness, and said flexible support lateral stiffness is less than 8% of said gear mesh lateral stiffness.
18 . The gas turbine engine of claim 17 , further comprising a fan section having a low fan pressure ratio of less than about 1.45, said low fan pressure ratio measured across the fan blades alone.
19 . The gas turbine engine of claim 18 , further comprising a low corrected fan tip speed less than about 1150 ft/second, wherein said low corrected fan tip speed is an actual fan tip speed at an ambient temperature divided by [(T ram ° R)/(518.7° R)] 0.5 , where T represents said ambient temperature in degrees Rankine.
20 . The gas turbine engine of claim 19 , further comprising a mid-turbine frame including at least one airfoil extending into a flow path.
21 . The gas turbine engine of claim 18 , wherein said gear mesh defines a gear mesh transverse stiffness and said flexible support transverse stiffness is less than 8% of said gear mesh transverse stiffness.
22 . The gas turbine engine of claim 21 , further comprising a low pressure turbine driving said gear system having an inlet, an outlet, and a low pressure turbine pressure ratio greater than about 5:1, wherein said low pressure turbine pressure ratio is a ratio of a pressure measured prior to said inlet as related to a pressure at said outlet prior to an exhaust nozzle.
23 . The gas turbine engine of claim 22 , further comprising a low corrected fan tip speed less than about 1150 ft/second, wherein said low corrected fan tip speed is an actual fan tip speed at an ambient temperature divided by [(T ram ° R)/(518.7° R)] 0.5 , where T represents said ambient temperature in degrees Rankine.
24 . The gas turbine engine of claim 23 , wherein said gear system drives a compressor rotor at a common speed with said fan shaft.
25 . The gas turbine engine of claim 24 , further comprising a three stage low pressure compressor, and a two stage high pressure turbine.
26 . The gas turbine engine of claim 18 , further comprising an input coupling defining an input coupling transverse stiffness, wherein said input coupling transverse stiffness is less than 20% of said fan shaft support transverse stiffness.
27 . The gas turbine engine of claim 26 , further comprising said input coupling defining an input coupling lateral stiffness and said fan shaft support defining a fan shaft support lateral stiffness, wherein said input coupling lateral stiffness is less than 11% of said fan shaft support lateral stiffness.
28 . The gas turbine engine of claim 27 , wherein said input coupling transverse stiffness is less than 11% of said fan shaft support transverse stiffness.
29 . The gas turbine engine of claim 18 , further comprising an input coupling defining an input coupling transverse stiffness, wherein said input coupling transverse stiffness is less than 11% of said fan shaft support transverse stiffness.
30 . The gas turbine engine of claim 29 , wherein said input coupling both transfers torque and facilitates the segregation of vibrations.