Showing 1,761 - 1,780 results of 21,342 for search '(( significant reduction decrease ) OR ( significant decrease decrease ))', query time: 0.28s Refine Results
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    Soil disturbance cross-sectional model. by Xia Li (14984)

    Published 2025
    “…Under these conditions, the maximum drag reduction rate reaches 16.66%, and the soil disturbance area increases by up to 22.48%, significantly enhancing the drag reduction effect and soil fragmentation efficiency during subsoiling operations. …”
  10. 1770

    Test plan table. by Xia Li (14984)

    Published 2025
    “…Under these conditions, the maximum drag reduction rate reaches 16.66%, and the soil disturbance area increases by up to 22.48%, significantly enhancing the drag reduction effect and soil fragmentation efficiency during subsoiling operations. …”
  11. 1771

    Gas jet subsoiling model. by Xia Li (14984)

    Published 2025
    “…Under these conditions, the maximum drag reduction rate reaches 16.66%, and the soil disturbance area increases by up to 22.48%, significantly enhancing the drag reduction effect and soil fragmentation efficiency during subsoiling operations. …”
  12. 1772

    Schematic diagram of the airflow passage. by Xia Li (14984)

    Published 2025
    “…Under these conditions, the maximum drag reduction rate reaches 16.66%, and the soil disturbance area increases by up to 22.48%, significantly enhancing the drag reduction effect and soil fragmentation efficiency during subsoiling operations. …”
  13. 1773

    Variation in soil penetration resistance. by Xia Li (14984)

    Published 2025
    “…Under these conditions, the maximum drag reduction rate reaches 16.66%, and the soil disturbance area increases by up to 22.48%, significantly enhancing the drag reduction effect and soil fragmentation efficiency during subsoiling operations. …”
  14. 1774

    Supersonic gas jet subsoiler experiment. by Xia Li (14984)

    Published 2025
    “…Under these conditions, the maximum drag reduction rate reaches 16.66%, and the soil disturbance area increases by up to 22.48%, significantly enhancing the drag reduction effect and soil fragmentation efficiency during subsoiling operations. …”
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