Patents by Inventor Hongwei MIN

Hongwei MIN 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: 12138871
    Abstract: A high-temperature high-linear-pressure micro-eutectic method for enhancing a strength of a polytetrafluoroethylene (PTFE)-based membrane is disclosed. The method comprises the following steps: pushing a PTFE-based nano functional composite membrane forwards at a speed of 6-8 m/min in a high-temperature high-linear-pressure micro-eutectic cavity with a length of 1.5 m at a temperature of 380° C., controlling a linear pressure of a surface of the PTFE-based membrane to be 50-80 N/m, and under a coiling traction of a membrane coiling roller outside the cavity, enabling membrane molecular chains to shrink and generate eutectic phases, wherein multiple micro-eutectic molecular structures are arranged in parallel, and the PTFE-based nano functional composite membrane has a density of 2.
    Type: Grant
    Filed: December 15, 2020
    Date of Patent: November 12, 2024
    Assignees: CHINA THREE GORGES CORPORATION, CHINA THREE GORGES RENEWABLES (GROUP) CO., LTD., NANJING HAOHUI HI TECH CO., LTD.
    Inventors: Jianping Liu, Xin Xiang, Jianhua Wu, Yawei Zhu, Yajing Li, Liang Fang, Jingxin Zhao, Hong Wu, Jianping Wu, Hongwei Min
  • Publication number: 20240211649
    Abstract: The present invention disclosed a method for calibrating distributed hydrologic model parameters based on multipoint parallel correction, comprising: dividing the research-targeted basin into several sub-basins according to the position of the hydrometric stations of the main stream and larger tributaries within the research-targeted basin, when performing model parameter calibration, dividing the research-targeted basin into several parameter calibrated units according to the positional relationship of the sub-basins and the data situation of the hydrometric stations; integrating the hydrological model parameters of each parameter-calibrated unit to give the hydrological model parameters of the entire basin.
    Type: Application
    Filed: April 22, 2021
    Publication date: June 27, 2024
    Inventors: Jianping LIU, Xin XIANG, Jianhua WU, Zhiyu SUN, Yawei ZHU, Wenwei LI, Yajing LI, Hong WU, Jingxin ZHAO, Jianping WU, Hongwei MIN
  • Publication number: 20230256690
    Abstract: A high-temperature high-linear-pressure micro-eutectic method for enhancing a strength of a polytetrafluoroethylene (PTFE)-based membrane is disclosed. The method comprises the following steps: pushing a PTFE-based nano functional composite membrane forwards at a speed of 6-8 m/min in a high-temperature high-linear-pressure micro-eutectic cavity with a length of 1.5 m at a temperature of 380° C., controlling a linear pressure of a surface of the PTFE-based membrane to be 50-80 N/m, and under a coiling traction of a membrane coiling roller outside the cavity, enabling membrane molecular chains to shrink and generate eutectic phases, wherein multiple micro-eutectic molecular structures are arranged in parallel, and the PTFE-based nano functional composite membrane has a density of 2.
    Type: Application
    Filed: December 15, 2020
    Publication date: August 17, 2023
    Applicants: CHINA THREE GORGES CORPORATION, CHINA THREE GORGES RENEWABLES (GROUP) CO., LTD., NANJING HAOHUI HI TECH CO., LTD.
    Inventors: Jianping LIU, Xin XIANG, Jianhua WU, Yawei ZHU, Yajing LI, Liang FANG, Jingxin ZHAO, Hong WU, Jianping WU, Hongwei MIN
  • Publication number: 20230259678
    Abstract: The disclosure discloses a numerical simulation method of an influence of a polytetrafluoroethylene (PTFE)-based membrane on an aerodynamic characteristic of a wind turbine blade, and relates to the technical field of polymer composites. The simulation method comprises the following steps: selecting a wind turbine generator, a blade airfoil and a PTFE-based nano functional membrane; setting a numerical simulation computation network and a computation area of a wind energy capture area; determining main computation parameters and a Reynolds number for aerodynamic characteristic computation; establishing a geometrical model whose airfoil boundary extends by 0.26 mm (membrane thickness) along a normal direction to obtain a new computational geometry; computing by using a hydrodynamic computation method and a finite volume method; and obtaining an influence number simulation computation result.
    Type: Application
    Filed: December 15, 2020
    Publication date: August 17, 2023
    Inventors: Jianping LIU, Xin XIANG, Jianhua WU, Zhiyu SUN, Yawei ZHU, Wenwei LI, Yajing LI, Hong WU, Jingxin ZHAO, Jianping WU, Hongwei MIN