Patents by Inventor Thomas William Tighe

Thomas William Tighe 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).

  • Patent number: 11867427
    Abstract: A fluid heating system for heating a production fluid using a thermal transfer fluid, the production fluid being contained in a vessel includes an electric blower configured to receive ambient air and electrical input power and to provide output source air, a combustion system configured to receive the source air from the electric blower and to receive fuel and to provide the thermal transfer fluid, a heat exchanger configured to receive the thermal transfer fluid from the combustion system and configured to provide heat exchange from the thermal transfer fluid to the production fluid, and to provide output exhaust gas, and wherein the electric fan provides a predetermined volume flow rate of the output source air at a predetermined blower efficiency such that the fluid heating system has a Bulk Heat Flux of at least about 14.7 kBTU/Hr/ft2 and a Pressure Drop of at least about 0.7 psi.
    Type: Grant
    Filed: March 26, 2021
    Date of Patent: January 9, 2024
    Assignee: FULTON GROUP N.A., INC.
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Thomas William Tighe, Keith Richard Waltz
  • Publication number: 20210215392
    Abstract: A fluid heating system for heating a production fluid using a thermal transfer fluid, the production fluid being contained in a vessel includes an electric blower configured to receive ambient air and electrical input power and to provide output source air, a combustion system configured to receive the source air from the electric blower and to receive fuel and to provide the thermal transfer fluid, a heat exchanger configured to receive the thermal transfer fluid from the combustion system and configured to provide heat exchange from the thermal transfer fluid to the production fluid, and to provide output exhaust gas, and wherein the electric fan provides a predetermined volume flow rate of the output source air at a predetermined blower efficiency such that the fluid heating system has a Bulk Heat Flux of at least about 14.7 kBTU/Hr/ft2 and a Pressure Drop of at least about 0.7 psi.
    Type: Application
    Filed: March 26, 2021
    Publication date: July 15, 2021
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Thomas William Tighe, Keith Richard Waltz
  • Patent number: 10989441
    Abstract: A fluid heating system including: a pressure vessel shell com including prising a first inlet; a heat exchanger disposed in the pressure vessel shell, the heat exchanger including a second inlet and a second outlet, wherein the second inlet of the heat exchanger is connected to the first inlet of the pressure vessel shell; and an exhaust manifold disposed in the pressure vessel shell, the exhaust manifold including a third inlet and a third outlet, wherein the third inlet of the exhaust manifold is connected to the second outlet of the heat exchanger, wherein the third outlet of the exhaust manifold is outside of the pressure vessel shell, and wherein the exhaust manifold penetrates the pressure vessel shell.
    Type: Grant
    Filed: January 16, 2018
    Date of Patent: April 27, 2021
    Assignee: FULTON GROUP N.A., INC.
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Richard James Snyder, Thomas William Tighe, Keith Richard Waltz
  • Patent number: 10962257
    Abstract: A fluid heating system for heating a production fluid using a thermal transfer fluid, the production fluid being contained in a vessel includes an electric blower configured to receive ambient air and electrical input power and to provide output source air, a combustion system configured to receive the source air from the electric blower and to receive fuel and to provide the thermal transfer fluid, a heat exchanger configured to receive the thermal transfer fluid from the combustion system and configured to be in thermal communication with the production fluid to provide convective heat exchange from the thermal transfer fluid to the production fluid, and to provide output exhaust gas, and wherein the electric fan provides a predetermined volume flow rate of the output source air at a predetermined blower efficiency such that the fluid heating system has a Bulk Heat Flux of at least about 14.7 kBTU/Hr/ft2 and a Pressure Drop of at least about 0.7 psi.
    Type: Grant
    Filed: June 15, 2018
    Date of Patent: March 30, 2021
    Assignee: FULTON GROUP N.A., INC.
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Thomas William Tighe, Keith Richard Waltz
  • Patent number: 10612816
    Abstract: A fluid heating system including: a pressure vessel; an assembly comprising: a heat exchanger core including a second inlet and a second outlet; a first conduit having a first end connected to the second inlet of the heat exchanger core and a second end disposed outside of the pressure vessel; a second conduit having a first end connected to the second outlet of the heat exchanger core and a second end disposed outside of the pressure vessel; and a blower in fluid connection with the first end of the first conduit, wherein the fluid heating system satisfies the condition that a Bulk Heat Flux between the first end of the first conduit and the first end of the second conduit is between 45 kW/m2 and 300 kW/m2, and wherein the Pressure Drop between the first conduit and the second conduit is between 3 kiloPascals and 30 kiloPascals.
    Type: Grant
    Filed: December 9, 2016
    Date of Patent: April 7, 2020
    Assignee: FULTON GROUP N.A., INC.
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Thomas William Tighe, Keith Richard Waltz
  • Publication number: 20200103174
    Abstract: A compliant heating system includes a dynamic component including a heat exchanger; a pressure vessel shell encompassing at least a portion of the dynamic component; and a metallic expansion joint that connects the dynamic component and the pressure vessel shell, wherein the metallic expansion joint includes a deformable section comprising a convolution.
    Type: Application
    Filed: July 25, 2016
    Publication date: April 2, 2020
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, James Pettiford, Richard James Snyder, Thomas William Tighe, Keith Richard Waltz
  • Publication number: 20190360756
    Abstract: A fluid heating system assembly includes a first tube sheet, a second tube sheet opposite the first sheet, a plurality heat exchanger tubes, which connect the first tube sheet and the second tube sheet, and a plurality of baffles, comprising at least one plate baffle and at least one annular baffle disposed between the first tube sheet and the second tube sheet, wherein the heat exchanger tubes sealingly pass through the baffles, and wherein the tubes are arranged in a staggered ring configuration and the baffles have a baffle spacing, such that there is a substantially uniform temperature distribution and efficient exchange of thermal energy across the heat exchanger tube walls.
    Type: Application
    Filed: August 5, 2019
    Publication date: November 28, 2019
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Thomas William Tighe, Keith Richard Waltz, Joel Richard Landry, Richard James Snyder, Alireza Bahrami
  • Publication number: 20190285370
    Abstract: A compliant heating system includes a dynamic component including a heat exchanger; a pressure vessel shell encompassing at least a portion of the heat exchanger; and a accessible and detachable compressive seal expansion that connects the dynamic component and the pressure vessel shell.
    Type: Application
    Filed: June 3, 2019
    Publication date: September 19, 2019
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, James Pettiford, Richard James Snyder, Thomas William Tighe, Keith Richard Waltz
  • Patent number: 10309731
    Abstract: A compliant heating system includes a dynamic component including a heat exchanger; a pressure vessel shell encompassing at least a portion of the heat exchanger; and a compressive seal expansion that connects the dynamic component and the pressure vessel shell.
    Type: Grant
    Filed: July 22, 2016
    Date of Patent: June 4, 2019
    Assignee: FULTON GROUP N.A., INC.
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, James Pettiford, Richard James Snyder, Thomas William Tighe, Keith Richard Waltz
  • Publication number: 20180292106
    Abstract: A fluid heating system for heating a production fluid using a thermal transfer fluid, the production fluid being contained in a vessel includes an electric blower configured to receive ambient air and electrical input power and to provide output source air, a combustion system configured to receive the source air from the electric blower and to receive fuel and to provide the thermal transfer fluid, a heat exchanger configured to receive the thermal transfer fluid from the combustion system and configured to be in thermal communication with the production fluid to provide convective heat exchange from the thermal transfer fluid to the production fluid, and to provide output exhaust gas, and wherein the electric fan provides a predetermined volume flow rate of the output source air at a predetermined blower efficiency such that the fluid heating system has a Bulk Heat Flux of at least about 14.7 kBTU/Hr/ft2 and a Pressure Drop of at least about 0.7 psi.
    Type: Application
    Filed: June 15, 2018
    Publication date: October 11, 2018
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Thomas William Tighe, Keith Richard Waltz
  • Publication number: 20180142918
    Abstract: A fluid heating system including: a pressure vessel shell com including prising a first inlet; a heat exchanger disposed in the pressure vessel shell, the heat exchanger including a second inlet and a second outlet, wherein the second inlet of the heat exchanger is connected to the first inlet of the pressure vessel shell; and an exhaust manifold disposed in the pressure vessel shell, the exhaust manifold including a third inlet and a third outlet, wherein the third inlet of the exhaust manifold is connected to the second outlet of the heat exchanger, wherein the third outlet of the exhaust manifold is outside of the pressure vessel shell, and wherein the exhaust manifold penetrates the pressure vessel shell.
    Type: Application
    Filed: January 16, 2018
    Publication date: May 24, 2018
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Richard James Snyder, Thomas William Tighe, Keith Richard Waltz
  • Publication number: 20170211895
    Abstract: A fluid heating system assembly including: a first tube sheet; a second tube sheet opposite the first sheet; a heat exchanger tube, which connects the first tube sheet and the second tube sheet; a baffle such as a plate baffle and/or an annular baffle disposed between the first tube sheet and the second tube sheet, wherein the heat exchanger tube passes through the baffle.
    Type: Application
    Filed: January 23, 2017
    Publication date: July 27, 2017
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Richard James Snyder, Thomas William Tighe, Keith Richard Waltz
  • Publication number: 20170167751
    Abstract: A fluid heating system including: a pressure vessel; an assembly comprising: a heat exchanger core including a second inlet and a second outlet; a first conduit having a first end connected to the second inlet of the heat exchanger core and a second end disposed outside of the pressure vessel; a second conduit having a first end connected to the second outlet of the heat exchanger core and a second end disposed outside of the pressure vessel; and a blower in fluid connection with the first end of the first conduit, wherein the fluid heating system satisfies the condition that a Bulk Heat Flux between the first end of the first conduit and the first end of the second conduit is between 45 kW/m2 and 300 kW/m2, and wherein the Pressure Drop between the first conduit and the second conduit is between 3 kiloPascals and 30 kiloPascals.
    Type: Application
    Filed: December 9, 2016
    Publication date: June 15, 2017
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, Thomas William Tighe, Keith Richard Waltz
  • Publication number: 20170023316
    Abstract: A compliant heating system includes a dynamic component including a heat exchanger; a pressure vessel shell encompassing at least a portion of the heat exchanger; and a compressive seal expansion that connects the dynamic component and the pressure vessel shell.
    Type: Application
    Filed: July 22, 2016
    Publication date: January 26, 2017
    Inventors: Alexander Thomas Frechette, Carl Nicholas Nett, James Pettiford, Richard James Snyder, Thomas William Tighe, Keith Richard Waltz