Patents by Inventor Zheng Ling

Zheng Ling 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: 20220230326
    Abstract: The present invention belongs to the technical field of petroleum exploitation engineering, and discloses a 3D modeling method for cementing hydrate sediment based on a CT image. Indoor remolding rock cores or in situ site rock cores without hydrate can be scanned by CT; a sediment matrix image stack and a pore image stack are obtained by gray threshold segmentation; then, a series of cementing hydrate image stacks with different saturations are constructed through image morphological processing of the sediment matrix image stack such as dilation, erosion and image subtraction operation; and a series of digital rock core image stacks of the cementing hydrate sediment with different saturations are formed through image subtraction operation and splicing operation to provide a relatively real 3D model for the numerical simulation work of the basic physical properties of a reservoir of natural gas hydrate.
    Type: Application
    Filed: July 23, 2020
    Publication date: July 21, 2022
    Inventors: Yongchen SONG, Yanghui LI, Peng WU, Xiang SUN, Weiguo LIU, Jiafei ZHAO, Mingjun YANG, Lei YANG, Zheng LING
  • Patent number: 11389766
    Abstract: The invention provides a method and system for separating xenon-krypton mixed gas by hydrate formation process. The system is mainly composed of a gas hydrate generating unit, a heat exchanging unit and a gas-water separating unit: pre-cooled xenon-krypton mixed gas is injected from a bottom of a reaction tower, xenon gas in the mixed gas and water attached to a porous tray generate a xenon gas hydrate; and water is injected from a top of the tower to wet the porous tray, a generated hydrate particle is washed and collected to the bottom of the tower simultaneously to form a hydrate slurry, after passing through the heat exchanging unit, the xenon gas hydrate in the slurry is decomposed to form a gas phase flow and a water phase flow, and then enters the gas-water separating unit, and the xenon gas is separated from decomposed water.
    Type: Grant
    Filed: April 9, 2019
    Date of Patent: July 19, 2022
    Assignee: DALIAN UNIVERSITY OF TECHNOLOGY
    Inventors: Yongchen Song, Jiafei Zhao, Xianwei Guo, Lei Yang, Weiguo Liu, Mingjun Yang, Yanghui Li, Zheng Ling, Yu Liu, Yi Zhang, Dayong Wang, Lanlan Jiang, Yuechao Zhao
  • Publication number: 20220156901
    Abstract: The present invention belongs to the technical field of petroleum exploitation engineering, and discloses a 3D modeling method for pore-filling hydrate sediment based on a CT image. Indoor remolding rock cores or in situ site rock cores without hydrate can be scanned by CT; a sediment matrix image stack and a pore image stack are obtained by gray threshold segmentation; then, a series of pore-filling hydrate image stacks with different saturations are constructed through image morphological processing of the pore image stack such as erosion, dilation and image subtraction operation; and a series of digital rock core image stacks of the pore-filling hydrate sediment with different saturations are formed through image subtraction operation and splicing operation to provide a relatively real 3D model for the numerical simulation work of the basic physical properties of a reservoir of natural gas hydrate.
    Type: Application
    Filed: July 23, 2020
    Publication date: May 19, 2022
    Inventors: Yongchen SONG, Yanghui LI, Peng WU, Xiang SUN, Weiguo LIU, Jiafei ZHAO, Mingjun YANG, Lei YANG, Zheng LING
  • Publication number: 20210260517
    Abstract: The present invention discloses a gas hydrate-based particulate/waste gas simultaneous removal system and method. R134a can be used to synthesize particulates/coking waste gases into gas hydrate, which can realize the simultaneous removal of particulates/coking waste gases with no pollution and low energy consumption. The system comprises a waste heat recovery device, a gas hydrate primary dust removal tower, a solid-liquid separation primary tower, a gas hydrate secondary dust removal tower, a solid-liquid separation secondary tower, a gas hydrate decomposition pool, a gas-solid separation tower and a low temperature fractionation device. The present invention can achieve the removal of harmful substances such as heavy metals and coking waste gases while removing particulates.
    Type: Application
    Filed: February 28, 2020
    Publication date: August 26, 2021
    Inventors: Yongchen SONG, Man LI, Jiafei ZHAO, Lei YANG, Zhongwang SUN, Lunxiang ZHANG, Weiguo LIU, Yanghui LI, Yu LIU, Mingjun YANG, Yi ZHANG, Dayong WANG, Zheng LING, Lanlan JIANG, Cong CHEN, Yuechao ZHAO
  • Publication number: 20210146301
    Abstract: The invention provides a method and system for separating xenon-krypton mixed gas by hydrate formation process. The system is mainly composed of a gas hydrate generating unit, a heat exchanging unit and a gas-water separating unit: pre-cooled xenon-krypton mixed gas is injected from a bottom of a reaction tower, xenon gas in the mixed gas and water attached to a porous tray generate a xenon gas hydrate; and water is injected from a top of the tower to wet the porous tray, a generated hydrate particle is washed and collected to the bottom of the tower simultaneously to form a hydrate slurry, after passing through the heat exchanging unit, the xenon gas hydrate in the slurry is decomposed to form a gas phase flow and a water phase flow, and then enters the gas-water separating unit, and the xenon gas is separated from decomposed water.
    Type: Application
    Filed: April 9, 2019
    Publication date: May 20, 2021
    Inventors: Yongchen SONG, Jiafei ZHAO, Xianwei GUO, Lei YANG, Weiguo LIU, Mingjun YANG, Yanghui LI, Zheng LING, Yu LIU, Yi ZHANG, Dayong WANG, Lanlan JIANG, Yuechao ZHAO
  • Publication number: 20210072216
    Abstract: The invention discloses a gas hydrate pressure maintaining replacement device and method for in-situ Raman analysis. Comprehensive experiments such as the formation/decomposition/displacement of high-pressure gas hydrates can be realized, and in-situ Raman characterization can be performed. Including reaction kettle system with temperature control unit, pressure control gas supply system, pressure holding system, replacement gas system, sample pre-cooling system, vacuum system and data acquisition and processing system. The device can solve the problem that the Raman peak position of the 512 cage is covered by the Raman peak position of the gas when the high-pressure gas hydrate is characterized in situ in the reaction kettle, at the same time, it solves the problems of sampling difficulties in ex-situ Raman characterization and experimental errors caused by sample transfer.
    Type: Application
    Filed: August 31, 2019
    Publication date: March 11, 2021
    Inventors: Yongchen SONG, Jiafei ZHAO, Man LI, Lei YANG, Weiguo LIU, Mingjun YANG, Yanghui LI, Zheng LING, Yu LIU, Yi ZHANG, Dayong WANG
  • Publication number: 20130173648
    Abstract: A method for recognizing software applications installed on hardware devices includes scanning a hardware device to discover a target software application installed on the hardware device, where the target application includes one or more files; retrieving one or more sample applications for comparison to the target application; determining a resemblance between the target application and each of the one or more sample applications; and identifying the target application based on the resemblance determination.
    Type: Application
    Filed: October 29, 2010
    Publication date: July 4, 2013
    Inventors: Xiang Tan, Zheng Ling, Li-Hao Chen