Patents by Inventor BAICHUAN WANG

BAICHUAN WANG 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: 10947836
    Abstract: The present invention provides a device and a method for measuring overburden of injected gas in cyclic gas injection development of condensate gas reservoir. The device comprises sand packed model and temperature control system. The temperature control system is nested outside the sand packed model. The sand packed model comprises sand pack cell, four gas inlets, four gas outlets, bracket, direction control component, rotating shaft, upper cover, lower cover, fixing bolts, two top pressuring inlets, pressure transmission rods, pressure transfer piston and multiple gas sampling ports. The sand pack cell can be filled with quartz sand of different particle size and composition, and the angle of the whole device is adjusted by the direction control component.
    Type: Grant
    Filed: July 29, 2020
    Date of Patent: March 16, 2021
    Assignee: UNIVERSITY OF SCIENCE AND TECHNOLOGY BEIJING
    Inventors: Weiyao Zhu, Kun Huang, Jing Xia, Tongwen Jiang, Ming Yue, Kai Luo, Zhiyong Song, Baichuan Wang, Debin Kong
  • Publication number: 20200362689
    Abstract: The present invention provides a device and a method for measuring overburden of injected gas in cyclic gas injection development of condensate gas reservoir. The device comprises sand packed model and temperature control system. The temperature control system is nested outside the sand packed model. The sand packed model comprises sand pack cell, four gas inlets, four gas outlets, bracket, direction control component, rotating shaft, upper cover, lower cover, fixing bolts, two top pressuring inlets, pressure transmission rods, pressure transfer piston and multiple gas sampling ports. The sand pack cell can be filled with quartz sand of different particle size and composition, and the angle of the whole device is adjusted by the direction control component.
    Type: Application
    Filed: July 29, 2020
    Publication date: November 19, 2020
    Inventors: WEIYAO ZHU, KUN HUANG, JING XIA, TONGWEN JIANG, MING YUE, KAI LUO, ZHIYONG SONG, BAICHUAN WANG, DEBIN KONG
  • Patent number: 10822938
    Abstract: A method of optimizing well spacing for shale gas development is provided. It belongs to the technical field of hydrocarbon reservoir exploration and development. The method comprises: firstly verifying block area based on the explored geological structure; analyzing the connection situation of a shale reservoir, identifying the minimum developing area units; calculating the recoverable reserves of the units, confirming the candidate units; drilling representative shale cores and analyzing related physical properties; calculating seepage field and pressure field using unified multi-field, multi-flow-regime, and multi-scale mathematical models; calculating the effective recoverable area of each well; and arranging wells based on the rule that the interference among wells is not larger than 10%. Considering the fluid-solid coupling effects, the method can define appropriately well spacing for shale gas exploration and enhance effectively the output of shale gas.
    Type: Grant
    Filed: March 30, 2020
    Date of Patent: November 3, 2020
    Assignee: UNIVERSITY OF SCIENCE AND TECHNOLOGY, BEIJING
    Inventors: Weiyao Zhu, Kun Huang, Zhen Chen, Ming Yue, Zhiyong Song, Hua Li, Baichuan Wang, Debin Kong
  • Publication number: 20200224522
    Abstract: This disclosure provides a method of optimizing well spacing for shale gas development. It belongs to the technical field of hydrocarbon reservoir exploration and development. The method comprises: firstly verifying block area based on the explored geological structure; analyzing the connection situation of a shale reservoir, identifying the minimum developing area units; calculating the recoverable reserves of the units, confirming the candidate units; drilling representative shale cores and analyzing related physical properties; calculating seepage field and pressure field using unified multi-field, multi-flow-regime, and multi-scale mathematical models; calculating the effective recoverable area of each well; and arranging wells based on the rule that the interference among wells is not larger than 10%. Considering the fluid-solid coupling effects, this method can define appropriately well spacing for shale gas exploration and enhance effectively the output of shale gas.
    Type: Application
    Filed: March 30, 2020
    Publication date: July 16, 2020
    Inventors: Weiyao ZHU, Kun HUANG, Zhen CHEN, MING YUE, ZHIYONG SONG, HUA LI, BAICHUAN WANG, DEBIN KONG