Patents by Inventor Rex Allen Morgan

Rex Allen Morgan has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20160305341
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective power output to match a nominal power output value, and subsequently measuring an actual emissions value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual emissions value and a nominal emissions value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Publication number: 20160305342
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective fuel flow to match a nominal fuel flow value, and subsequently measuring an actual power output value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual power output value and a nominal power output value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Publication number: 20160305335
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective emissions value to match a nominal emissions value, and subsequently measuring an actual exhaust energy value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual exhaust energy value and a nominal exhaust energy value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Publication number: 20160305334
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective exhaust energy to match a nominal exhaust energy value, and subsequently measuring an actual power output value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual power output value and a nominal power output value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Publication number: 20160305340
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective exhaust energy to match a nominal exhaust energy value, and subsequently measuring an actual fuel flow value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual fuel flow value and a nominal fuel flow value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Publication number: 20160305339
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective fuel flow to match a nominal fuel flow value, and subsequently measuring an actual emissions value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual emissions value and a nominal emissions value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Publication number: 20160305344
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective fuel flow value to match a nominal fuel flow value, and subsequently measuring an actual exhaust energy value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual exhaust energy value and a nominal exhaust energy value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Publication number: 20160305343
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective emissions value to match a nominal emissions value, and subsequently measuring an actual fuel flow value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual fuel flow value and a nominal fuel flow value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Publication number: 20160305333
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective power output to match a nominal power output value, and subsequently measuring an actual exhaust energy value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual exhaust energy value and a nominal exhaust energy value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Publication number: 20160305332
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective exhaust energy to match a nominal exhaust energy value, and subsequently measuring an actual emissions value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual emissions value and a nominal emissions value at the ambient condition.
    Type: Application
    Filed: April 14, 2015
    Publication date: October 20, 2016
    Inventors: Rex Allen Morgan, Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR.
  • Patent number: 9435219
    Abstract: A gas turbomachine inlet system includes a duct member having an inlet portion fluidically coupled to an outlet portion through an intermediate portion. The inlet portion, outlet portion, and intermediate portion define a fluid flow zone. A throttling system is arranged in the duct member at one of the inlet portion, outlet portion and intermediate portion. The throttling system is configured and disposed to selectively establish a pressure drop through the fluid flow zone. A method of controlling inlet pressure drop through an inlet system for a gas turbomachine is also described herein.
    Type: Grant
    Filed: April 24, 2012
    Date of Patent: September 6, 2016
    Assignee: General Electric Company
    Inventors: Michael Corey Mullen, Rex Allen Morgan
  • Patent number: 9422869
    Abstract: A method of tuning a gas turbine includes receiving a first plurality of operating parameters as the gas turbine engine is operated at a first operating state. Further, the method includes operating the gas turbine engine at a second operating state to measure a second plurality of operating parameters at the second operating state. In addition, the method includes operating the gas turbine engine at a third operating state to measure a third plurality of operating parameters at the third operating state, wherein the first, second, and third operating states are different from each other. Additionally, the method includes generating a correction factor based on the first, second, and third plurality of operating parameters. The method also includes adjusting the operation of the gas turbine engine based on the correction factor.
    Type: Grant
    Filed: March 13, 2013
    Date of Patent: August 23, 2016
    Assignee: General Electric Company
    Inventors: Lewis Berkley Davis, Jr., Rex Allen Morgan, Harold Lamar Jordan, Jr., Scott Richard Baker
  • Publication number: 20160138479
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective output to match a nominal mega-watt power output value, and subsequently measuring an actual fuel flow value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual fuel flow value and a nominal fuel flow value at the ambient condition.
    Type: Application
    Filed: November 18, 2014
    Publication date: May 19, 2016
    Inventors: Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR., Rex Allen Morgan
  • Publication number: 20160138482
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective output to match a nominal mega-watt power output value, and subsequently measuring an actual emissions value for each GT; adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual emissions value and a nominal emissions value at the ambient condition; and further adjusting an operating condition of each GT in the set of GTs based upon a determined emissions measurement error.
    Type: Application
    Filed: November 18, 2014
    Publication date: May 19, 2016
    Inventors: Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR., Rex Allen Morgan
  • Publication number: 20160138470
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective output to match a nominal mega-watt power output value, and subsequently measuring an actual fuel flow value and an actual emissions value for each GT; adjusting at least one of a fuel flow or a water flow for each GT to an adjusted water/fuel ratio in response to the actual emissions value deviating from an emissions level associated with the base load level, while maintaining the respective adjusted output; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual fuel flow value and a nominal fuel flow value at the ambient condition, while maintaining the adjusted water/fuel ratio.
    Type: Application
    Filed: November 18, 2014
    Publication date: May 19, 2016
    Inventors: Lewis Berkley Davis, JR., Harold Lamar Jordan, JR., Rex Allen Morgan, Raub Warfield Smith
  • Publication number: 20160138481
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective output to match a nominal mega-watt power output value, and subsequently measuring an actual emissions value for each GT; adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual emissions value and a nominal emissions value at the ambient condition; and calculating a degradation for each GT in the set of GTs over a period.
    Type: Application
    Filed: November 18, 2014
    Publication date: May 19, 2016
    Inventors: Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR., Rex Allen Morgan
  • Publication number: 20160138483
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective output to match a nominal mega-watt power output value, and subsequently measuring an actual fuel flow value for each GT; adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual fuel flow value and a nominal fuel flow value at the ambient condition; commanding each GT in the set of GTs to a part load level, the part load level representing a fraction of the base load level, and subsequently measuring an actual fuel flow value for each GT at the part load level; and calibrating the set of GTs based upon a difference between the measured actual fuel flow value at the part load level and the measured actual fuel flow value
    Type: Application
    Filed: November 18, 2014
    Publication date: May 19, 2016
    Inventors: Lewis Berkley Davis, JR., Scott Arthur Day, Paul Robert Fernandez, Harold Lamar Jordan, JR., Rex Allen Morgan
  • Publication number: 20160138480
    Abstract: Various embodiments include a system having: at least one computing device configured to tune a set of gas turbines (GTs) by performing actions including: commanding each GT in the set of GTs to a base load level, based upon a measured ambient condition for each GT; commanding each GT in the set of GTs to adjust a respective output to match a nominal mega-watt power output value, and subsequently measuring an actual emissions value for each GT; and adjusting an operating condition of each GT in the set of GTs based upon a difference between the respective measured actual emissions value and a nominal emissions value at the ambient condition.
    Type: Application
    Filed: November 18, 2014
    Publication date: May 19, 2016
    Inventors: Lewis Berkley Davis, JR., Scott Arthur Day, Harold Lamar Jordan, JR., Rex Allen Morgan
  • Patent number: 9322333
    Abstract: A method for determining a cooling flow parameter of a cooling medium supplied through a gas turbine is disclosed. The method may generally include receiving a signal associated with a first value of a combustion product parameter at a location within a combustion zone of the gas turbine, receiving a signal associated with a second value of a combustion product parameter at a location downstream of the combustion zone, comparing the first and second values of the combustion product parameter and determining a cooling flow parameter of the cooling medium based on the comparison of the first and second values.
    Type: Grant
    Filed: January 6, 2012
    Date of Patent: April 26, 2016
    Assignee: GENERAL ELECTRIC COMPANY
    Inventor: Rex Allen Morgan
  • Publication number: 20160053767
    Abstract: An airflow inlet may include a bellmouth component having a substantially uneven internal surface, and a variable thickness coating in a measurement annulus region of the substantially uneven internal surface. The measurement annulus region includes only an annulus about the internal surface of the bellmouth component. The variable thickness coating is configured to present a more even internal surface than the substantially uneven internal surface.
    Type: Application
    Filed: August 21, 2014
    Publication date: February 25, 2016
    Inventors: Rex Allen Morgan, Stephen Ronald Watts