Fan drive gear system electrical conditioning circuit for hybrid electric gas turbine engine
10801443 ยท 2020-10-13
Assignee
Inventors
Cpc classification
F02C7/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02K5/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64D27/026
PERFORMING OPERATIONS; TRANSPORTING
F05D2220/76
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02K3/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/40311
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02T50/60
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F01D13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02K5/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02K3/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02C7/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A hybrid gas turbine engine comprises a turbine, a compressor, and a gear system that is driven by the turbine where the gear system includes a sun gear, a ring gear and a plurality of planet gears, where the ring gear has a ring gear radius of R.sub.Ring gear and the sun gear has a sun gear radius of R.sub.Sun gear such that the gear system provides a reduction ratio of R.sub.Ring gear/R.sub.Sun gear. A fan is driven by the ring gear, and a generator is driven by the ring gear and provides a generator output signal. A power circuit receives the generator output signal and provides a gain R.sub.Ring gear/R.sub.Sun gear to the generator output signal and provides a gain signal indicative thereof to an electrical load.
Claims
1. A hybrid gas turbine engine, comprising: a turbine; a compressor; a gear system that is driven by the turbine where the gear system includes a sun gear, a ring gear and a plurality of planet gears, where the ring gear has a ring gear radius of R.sub.Ring gear and the sun gear has a sun gear radius of R.sub.Sun gear such that the gear system provides a reduction ratio of R.sub.Ring gear/R.sub.Sun gear; a fan driven by the ring gear; a generator that is driven by the ring gear and provides a generator output signal; a power circuit that receives the generator output signal and provides an electrical gain R.sub.Ring gear/R.sub.Sun gear to the generator output signal and provides a gain signal indicative thereof; and an electrical load that receives the gain signal.
2. The hybrid gas turbine engine of claim 1, where the electrical load comprises a motor that drives the compressor.
3. The hybrid gas turbine engine of claim 2, where the electrical load further comprises a battery located electrically parallel to the motor.
4. The hybrid gas turbine engine of claim 3, where the power circuit comprises at least one operational amplifier that receives the generator output signal and applies the electrical gain R.sub.Ring gear/R.sub.Sun gear to generate the gain signal.
5. The hybrid gas turbine engine of claim 3, where the power circuit comprises a plurality of operational amplifiers that receive the generator output signal and each operational amplifier among the plurality of operational amplifiers applies the electrical gain R.sub.Ring gear/R.sub.Sun gear to generate the gain signal.
6. A hybrid gas turbine engine, comprising: a turbine; a compressor; a gear system that is driven by the turbine where the gear system includes a sun gear, a plurality of planet gears configured to rotate and spaced apart by a planet carrier configured to rotate in a direction common to the sun gear, and a non-rotating ring gear, where the non-rotating ring gear has a ring gear radius of R.sub.Ring gear and the sun gear has a sun gear radius of R.sub.Sun gear such that the gear system provides a reduction ratio of (1+R.sub.Ring gear/R.sub.Sun gear); a fan driven by the planet carrier; a generator that is driven by the planet carrier and provides a generator output signal; a power circuit that receives the generator output signal and provides an electrical gain (1+R.sub.Ring gear/R.sub.Sun gear) to the generator output signal and provides a gain signal indicative thereof; and an electrical load that receives the gain signal.
7. The hybrid gas turbine engine of claim 6, where the electrical load comprises a motor that drives the compressor.
8. The hybrid gas turbine engine of claim 7, where the electrical load further comprises a battery located electrically parallel to the motor.
9. The hybrid gas turbine engine of claim 8, where the power circuit comprises at least one operational amplifier that receives the generator output signal and applies the electrical gain (1+R.sub.Ring gear/R.sub.Sun gear) to generate the gain signal.
10. The hybrid gas turbine engine of claim 8, where the power circuit comprises a plurality of operational amplifiers that receive the generator output signal and each operational amplifier among the plurality of operational amplifiers the electrical gain (1+R.sub.Ring gear/R.sub.Sun gear) to generate the gain signal.
11. A hybrid gas turbine engine, comprising: a turbine; a compressor; a gear system that is driven by the turbine where the gear system includes a non-rotating sun gear, a ring gear, and a plurality of planet gears configured to rotate and spaced apart by a planet carrier configured to rotate in a direction common to the ring gear, where the ring gear has a ring gear radius of R.sub.Ring gear and the non-rotating sun gear has a sun gear radius of R.sub.Sun gear such that the gear system provides a reduction ratio of (1+R.sub.Sun gear/R.sub.Ring gear); a fan driven by the planet carrier; a generator that is driven by the planet carrier and provides a generator output signal; a power circuit that receives the generator output signal and provides an electrical gain (1+R.sub.Sun gear/R.sub.Ring gear) to the generator output signal and provides a gain signal indicative thereof; and an electrical load that receives the gain signal.
12. The hybrid gas turbine engine of claim 11, where the electrical load comprises a motor that drives the compressor.
13. The hybrid gas turbine engine of claim 12, where the electrical load further comprises a battery located electrically parallel to the motor.
14. The hybrid gas turbine engine of claim 13, where the power circuit comprises at least one operational amplifier that receives the generator output signal and applies the electrical gain (1+R.sub.Sun gear/R.sub.Ring gear) to generate the gain signal.
15. The hybrid gas turbine engine of claim 13, where the power circuit comprises a plurality of operational amplifiers that receive the generator output signal and each operational amplifier among the plurality of operational amplifiers applies the electrical gain (1 R.sub.Sun gear/R.sub.Ring gear) to generate the gain signal.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(6) It is noted that various connections and steps are set forth between elements in the following description and in the drawings (the contents of which are incorporated in this specification by way of reference). It is noted that these connections and steps are general and, unless specified otherwise, may be direct or indirect and that this specification is not intended to be limiting in this respect. A coupling between two or more entities may refer to a direct connection or an indirect connection. An indirect connection may incorporate one or more intervening entities or a space/gap between the entities that are being coupled to one another.
(7) Aspects of the disclosure may be applied in connection with an aircraft gas turbine engine.
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(9) The fan drive gear system 12 may include an epicyclic gear train 12, which includes two gears so that the center of one gear revolves around the center of the other. The gear 12 may include a sun gear 29, a plurality of planet gears 30 and a ring gear 32. In one planetary gear embodiment, a carrier of the planet gears 30 is held stationary. The LP shaft 28 is connected to the sun gear 29 and the shaft 36 is connected to the ring gear 32. The plurality of planet gears 30 each roll on the inside of the ring gear 32.
(10) In one embodiment, the gear train 12 may be configured to provide a reduction of X (e.g., 3:1) in the speed of shaft 36 connecting the gear train 12 and the fan 26, versus the speed of the LP shaft 28 driven by the LP turbine 24. The gear 12 may be characterized by the reduction ratio of R.sub.Ring gear/R.sub.Sun gear, where R is the respective radius of the associated gear. For example, the ring gear has radius R.sub.Ring gear and the sun gear has sun gear radius of R.sub.Sun gear.
(11) The reduction X may of course be selected by a designer to provide a reduction ratio other than 3:1 based upon the system design requirements of the engine 10.
(12) In the hybrid engine 10, the motor 14 may be coupled (e.g., to the LP shaft 28) to selectively drive the LP compressor 16. A generator 40 may be driven by the shaft 36, and as a result provides a voltage signal on a line 42 related to the speed of the shaft 36/fan 26. The voltage signal on the line 42 is input to a power circuit 44 that conditions the signal on the line 42 based upon the reduction ratio R.sub.Ring gear/R.sub.Sun gear of the gear 12 and provides a gain conditioned signal. The system also includes a FADEC to control and monitor operation of the engine 10.
(13) For the hybrid electrical gas turbine illustrated in
(14) The magnitude of the gain R.sub.f/R.sub.in may be selected to match the reduction ratio of R.sub.Ring gear/R.sub.Sun gear associated with the gear 12 (
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(18) In another embodiment, the sun gear 29 (
(19) It is contemplated that a plurality of operational amplifiers may be arranged in parallel and each with the gain R.sub.f/R.sub.in (e.g., fixed carrier of planets) or the gain (1+R.sub.Ring gear/R.sub.Sun gear)(e.g., fixed ring gear), or the gain (1+R.sub.Ring gear/R.sub.Sun gear) (e.g., fixed sun gear), in order to provide the requisite power to drive the loads (e.g., the motor 14, the battery 60, et cetera).
(20) Although the different non-limiting embodiments have specific illustrated components, the embodiments of this invention are not limited to those particular combinations. It is possible to use some of the components or features from any of the non-limiting embodiments in combination with features or components from any of the other non-limiting embodiments. For example, a plurality of operational amplifiers may be arranged in parallel combining the embodiments of
(21) Although embodiments discussed herein have been discussed in the context of an operational amplifier, it is of course contemplated that the operational amplifier may be provided by various discrete components (e.g., transistors and resistors), may be provided on a semiconductor material, or may be part of an application specific integrated circuit (ASIC).
(22) It should be understood that like reference numerals identify corresponding or similar elements throughout the several drawings. It should also be understood that although a particular component arrangement is disclosed in the illustrated embodiment, other arrangements will benefit herefrom.
(23) The foregoing description is exemplary rather than defined by the features within. Various non-limiting embodiments are disclosed herein, however, one of ordinary skill in the art would recognize that various modifications and variations in light of the above teachings will fall within the scope of the appended claims. It is therefore to be understood that within the scope of the appended claims, the disclosure may be practiced other than as specifically described. For that reason the appended claims should be studied to determine true scope and content.