Patents by Inventor Jihao SUN

Jihao SUN 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: 12595911
    Abstract: The provided is a coaxially staged burner for a low-emission combustion chamber of a dual-fuel gas turbine utilizing gaseous and liquid fuels. The coaxially staged burner includes a mounting flange, a main fuel sleeve, and a swirler, where the mounting flange is provided with a fuel supply port; the main fuel sleeve is internally provided with coaxially nested four-stage fuel sleeves; the swirler includes a center pilot stage, a first premix stage, a second premix stage, a first-stage hub, and a second-stage hub; when a liquid fuel operates alone, the liquid fuel enters a swirler passage through a pilot-stage liquid fuel nozzle and a second-stage blade liquid fuel hole to achieve premixing and evaporation; and when a gaseous fuel operates alone, the gaseous fuel enters the swirler passage through a first-stage blade fuel hole and a second-stage blade gaseous fuel hole for mixing.
    Type: Grant
    Filed: September 18, 2025
    Date of Patent: April 7, 2026
    Assignee: HARBIN ENGINEERING UNIVERSITY
    Inventors: Ningbo Zhao, Zhongmin Feng, Jihao Sun, Shaowen Luo, Honghao Xu, Honglei Yang, Hongtao Zheng
  • Publication number: 20260085837
    Abstract: The provided is a coaxially staged burner for a low-emission combustion chamber of a dual-fuel gas turbine utilizing gaseous and liquid fuels. The coaxially staged burner includes a mounting flange, a main fuel sleeve, and a swirler, where the mounting flange is provided with a fuel supply port; the main fuel sleeve is internally provided with coaxially nested four-stage fuel sleeves; the swirler includes a center pilot stage, a first premix stage, a second premix stage, a first-stage hub, and a second-stage hub; when a liquid fuel operates alone, the liquid fuel enters a swirler passage through a pilot-stage liquid fuel nozzle and a second-stage blade liquid fuel hole to achieve premixing and evaporation; and when a gaseous fuel operates alone, the gaseous fuel enters the swirler passage through a first-stage blade fuel hole and a second-stage blade gaseous fuel hole for mixing.
    Type: Application
    Filed: September 18, 2025
    Publication date: March 26, 2026
    Applicant: Harbin Engineering University
    Inventors: Ningbo ZHAO, Zhongmin FENG, Jihao SUN, Shaowen LUO, Honghao XU, Honglei YANG, Hongtao ZHENG
  • Patent number: 12044597
    Abstract: A device for measuring a wall surface cooling characteristic of a gas turbine combustor and a modeling method thereof are provided. The device includes a hot flow inlet section, a cold flow inlet section, and a gas discharge section, where the cold flow inlet section is communicated with an experimental section; the cooling structure model is a flat plate structure; a tail end of the experimental section is provided with a thermocouple threading seat; the gas discharge section is provided with a laser injection window; and the experimental section is provided with an infrared thermal imaging measurement window and a visual observation window. The modeling method includes: modeling the wall surface of the gas turbine combustor into the flat plate structure; determining a pressure, a temperature, and a velocity on a hot flow side of the device; and determining a material and a thickness of the cooling structure model.
    Type: Grant
    Filed: January 9, 2024
    Date of Patent: July 23, 2024
    Assignee: HARBIN ENGINEERING UNIVERSITY
    Inventors: Ningbo Zhao, Shaowen Luo, Jihao Sun, Hongtao Zheng, Honglei Yang, Ren Yang, Shilin Yan, Fuquan Deng
  • Publication number: 20240230472
    Abstract: A device for measuring a wall surface cooling characteristic of a gas turbine combustor and a modeling method thereof are provided. The device includes a hot flow inlet section, a cold flow inlet section, and a gas discharge section, where the cold flow inlet section is communicated with an experimental section; the cooling structure model is a flat plate structure; a tail end of the experimental section is provided with a thermocouple threading seat; the gas discharge section is provided with a laser injection window; and the experimental section is provided with an infrared thermal imaging measurement window and a visual observation window. The modeling method includes: modeling the wall surface of the gas turbine combustor into the flat plate structure; determining a pressure, a temperature, and a velocity on a hot flow side of the device; and determining a material and a thickness of the cooling structure model.
    Type: Application
    Filed: January 9, 2024
    Publication date: July 11, 2024
    Applicant: HARBIN ENGINEERING UNIVERSITY
    Inventors: Ningbo ZHAO, Shaowen LUO, Jihao SUN, Hongtao ZHENG, Honglei YANG, Ren YANG, Shilin YAN, Fuquan DENG