Патент США № | 10106267 |
---|---|
Автор(ы) | Visser и др. |
Дата выдачи | 23 октября 2018 г. |
Systems and methods for enhancing engine performance based on atmospheric ice particles are provided. For example, a method can include selecting one or more points along a flight path of an aircraft and receiving a reflectivity measurement for each of the one or more points obtained using a device located on the aircraft. The method can further include determining an estimate of ice water content for each of the one or more points based at least in part on the reflectivity measurements; and controlling at least one component of the aircraft engine (e.g., a variable bleed valve) based at least in part on the estimate of ice water content for at least one of the plurality of points.
Авторы: | Nicholas Visser (Grand Rapids, MI), Sridhar Adibhatla (Glendale, OH), David Michael Lax (Grand Rapids, MI) | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Патентообладатель: |
|
||||||||||
Заявитель: | GE Aviation Systems LLC (Grand Rapids, MI) |
||||||||||
ID семейства патентов | 57738203 | ||||||||||
Номер заявки: | 14/927,788 | ||||||||||
Дата регистрации: | 30 октября 2015 г. |
Document Identifier | Publication Date | |
---|---|---|
US 20170121028 A1 | May 4, 2017 | |
Класс патентной классификации США: | 1/1 |
Класс совместной патентной классификации: | B64D 31/06 (20130101); F01D 21/003 (20130101); F02C 9/18 (20130101); G01S 13/953 (20130101); F02C 9/00 (20130101); F02C 9/28 (20130101); F02C 9/52 (20130101); G01S 17/95 (20130101); F05D 2270/313 (20130101); F05D 2270/311 (20130101); F05D 2270/096 (20130101); F05D 2270/805 (20130101); B64D 2013/0618 (20130101); Y02T 50/671 (20130101); Y02T 50/56 (20130101); Y02A 90/18 (20180101); Y02A 90/19 (20180101) |
Класс международной патентной классификации (МПК): | B64D 31/06 (20060101); F01D 21/00 (20060101); G01S 13/95 (20060101); F02C 9/18 (20060101); F02C 9/00 (20060101); F02C 9/28 (20060101); G01S 17/95 (20060101); F02C 9/52 (20060101); B64D 13/06 (20060101) |
2931168 | February 1981 | Frank et al. |
4710095 | December 1987 | Freberg et al. |
5028929 | July 1991 | Sand et al. |
5488375 | January 1996 | Michie |
5546183 | August 1996 | Fegley et al. |
6283410 | September 2001 | Thompson |
6377207 | April 2002 | Solheim et al. |
6935119 | August 2005 | Placko et al. |
7492304 | February 2009 | Woodell |
7982658 | July 2011 | Kauffman et al. |
8068050 | November 2011 | Christianson |
8228227 | July 2012 | Bunch et al. |
8452516 | May 2013 | Rose et al. |
8490404 | July 2013 | Adibhatla et al. |
8869537 | October 2014 | Geis et al. |
8902100 | December 2014 | Woodell |
9221548 | December 2015 | Sishtla et al. |
9244166 | January 2016 | Finley et al. |
2009/0025393 | January 2009 | Sheldon |
2013/0234884 | September 2013 | Bunch |
2013/0255221 | October 2013 | Gaully et al. |
2016/0011334 | January 2016 | Khatwa et al. |
2016/0230677 | August 2016 | Feulner et al. |
2016/0274271 | September 2016 | Lukas et al. |
Noel, Vincent, Journal of the Atmospheric Sciences, vol. 63, 2006, pp. 2978-2991. cited by examiner . Zhang et al., "A Method for Estimating Rain Rate and Drop Size Distribution from Polarimetric Radar Measurements," IEEE Transactions on Geoscience and Remote Sensing, vol. 39, No. 4, Apr. 2001, pp. 830-841. cited by applicant . Cao et al., "Analysis of Video Disdrometer and Polarimetric Radar Data to Characterize Rain Microphysics in Oklahoma," Journal of Applied Meteorology and Climatology, vol. 47, Aug. 2008, pp. 2238-2255. cited by applicant . Non-Final Office Action issued in connection with related U.S. Appl. No. 14/927,709 dated Jun. 1, 2017. cited by applicant . Great Britain Combined Search and Examination Report issued in connection with related GB Application No. 1617979.8 dated Mar. 22, 2017. cited by applicant. |