Showing 11,461 - 11,480 results of 18,700 for search 'significantly ((((((step decrease) OR (mean decrease))) OR (a decrease))) OR (observed decrease))', query time: 0.77s Refine Results
  1. 11461

    Baseline results of the impact of RLM on HWSW. by Yi Yu (28902)

    Published 2025
    “…Specifically, with every 1% increase in RLM, the likelihood of rural residents’ HWSW will decrease by 3.5%. This effect remains significant after a series of robustness checks. …”
  2. 11462

    The influencing factors of RLM. by Yi Yu (28902)

    Published 2025
    “…Specifically, with every 1% increase in RLM, the likelihood of rural residents’ HWSW will decrease by 3.5%. This effect remains significant after a series of robustness checks. …”
  3. 11463

    Variable definitions and basic statistics. by Yi Yu (28902)

    Published 2025
    “…Specifically, with every 1% increase in RLM, the likelihood of rural residents’ HWSW will decrease by 3.5%. This effect remains significant after a series of robustness checks. …”
  4. 11464

    Average and marginal effects of RLM on HWSW. by Yi Yu (28902)

    Published 2025
    “…Specifically, with every 1% increase in RLM, the likelihood of rural residents’ HWSW will decrease by 3.5%. This effect remains significant after a series of robustness checks. …”
  5. 11465

    Thermal supply for each thermal supply unit. by Jingjing Ma (419752)

    Published 2025
    “…Additionally, it results in a 7.8% reduction in overall costs and a 30.2% decrease in carbon emissions. …”
  6. 11466

    The OCPP-P2G-CHP coupling relationship. by Jingjing Ma (419752)

    Published 2025
    “…Additionally, it results in a 7.8% reduction in overall costs and a 30.2% decrease in carbon emissions. …”
  7. 11467

    The provision of energy for carbon capture. by Jingjing Ma (419752)

    Published 2025
    “…Additionally, it results in a 7.8% reduction in overall costs and a 30.2% decrease in carbon emissions. …”
  8. 11468

    39-20-6 Integrated Energy System. by Jingjing Ma (419752)

    Published 2025
    “…Additionally, it results in a 7.8% reduction in overall costs and a 30.2% decrease in carbon emissions. …”
  9. 11469

    Power supply for each power supply unit. by Jingjing Ma (419752)

    Published 2025
    “…Additionally, it results in a 7.8% reduction in overall costs and a 30.2% decrease in carbon emissions. …”
  10. 11470

    Overall view of the slurry. by Jiawei Fan (8822046)

    Published 2024
    “…The field experimental results illustrated that: (1) The bearing capacity of inclined steel grouting pipe with anchorage length of 9 m increases 22.6% compared with that of ordinary grouting pipe. (2) Anchorage length is not a significant influence factor for bearing capacity of inclined steel grouting pipes in loess embankment slope, while anchorage length is a significant influence factor for modulus of load-displacement curves of inclined steel grouting pipes in loess embankment slope. (3) Effective anchorage length of inclined steel grouting pipe in loess embankment slope will be slightly increased when increasing anchorage length, while the ratio of effective anchorage length to total anchorage length will be decreased when increasing anchorage length. (4) Inclined steel grouting pipe average cohesive strength along effective anchorage length section at the interface between cement grouting and soil stratum is at least three times compared with that of rock bolt.…”
  11. 11471

    Definitions of variables. by Jiawei Fan (8822046)

    Published 2024
    “…The field experimental results illustrated that: (1) The bearing capacity of inclined steel grouting pipe with anchorage length of 9 m increases 22.6% compared with that of ordinary grouting pipe. (2) Anchorage length is not a significant influence factor for bearing capacity of inclined steel grouting pipes in loess embankment slope, while anchorage length is a significant influence factor for modulus of load-displacement curves of inclined steel grouting pipes in loess embankment slope. (3) Effective anchorage length of inclined steel grouting pipe in loess embankment slope will be slightly increased when increasing anchorage length, while the ratio of effective anchorage length to total anchorage length will be decreased when increasing anchorage length. (4) Inclined steel grouting pipe average cohesive strength along effective anchorage length section at the interface between cement grouting and soil stratum is at least three times compared with that of rock bolt.…”
  12. 11472

    Realistic structure diagram of testing equipment. by Jiawei Fan (8822046)

    Published 2024
    “…The field experimental results illustrated that: (1) The bearing capacity of inclined steel grouting pipe with anchorage length of 9 m increases 22.6% compared with that of ordinary grouting pipe. (2) Anchorage length is not a significant influence factor for bearing capacity of inclined steel grouting pipes in loess embankment slope, while anchorage length is a significant influence factor for modulus of load-displacement curves of inclined steel grouting pipes in loess embankment slope. (3) Effective anchorage length of inclined steel grouting pipe in loess embankment slope will be slightly increased when increasing anchorage length, while the ratio of effective anchorage length to total anchorage length will be decreased when increasing anchorage length. (4) Inclined steel grouting pipe average cohesive strength along effective anchorage length section at the interface between cement grouting and soil stratum is at least three times compared with that of rock bolt.…”
  13. 11473

    Engineering geological cross section diagram. by Jiawei Fan (8822046)

    Published 2024
    “…The field experimental results illustrated that: (1) The bearing capacity of inclined steel grouting pipe with anchorage length of 9 m increases 22.6% compared with that of ordinary grouting pipe. (2) Anchorage length is not a significant influence factor for bearing capacity of inclined steel grouting pipes in loess embankment slope, while anchorage length is a significant influence factor for modulus of load-displacement curves of inclined steel grouting pipes in loess embankment slope. (3) Effective anchorage length of inclined steel grouting pipe in loess embankment slope will be slightly increased when increasing anchorage length, while the ratio of effective anchorage length to total anchorage length will be decreased when increasing anchorage length. (4) Inclined steel grouting pipe average cohesive strength along effective anchorage length section at the interface between cement grouting and soil stratum is at least three times compared with that of rock bolt.…”
  14. 11474

    The equipped sensors on steel pipes. by Jiawei Fan (8822046)

    Published 2024
    “…The field experimental results illustrated that: (1) The bearing capacity of inclined steel grouting pipe with anchorage length of 9 m increases 22.6% compared with that of ordinary grouting pipe. (2) Anchorage length is not a significant influence factor for bearing capacity of inclined steel grouting pipes in loess embankment slope, while anchorage length is a significant influence factor for modulus of load-displacement curves of inclined steel grouting pipes in loess embankment slope. (3) Effective anchorage length of inclined steel grouting pipe in loess embankment slope will be slightly increased when increasing anchorage length, while the ratio of effective anchorage length to total anchorage length will be decreased when increasing anchorage length. (4) Inclined steel grouting pipe average cohesive strength along effective anchorage length section at the interface between cement grouting and soil stratum is at least three times compared with that of rock bolt.…”
  15. 11475

    Close-up view of the slurry. by Jiawei Fan (8822046)

    Published 2024
    “…The field experimental results illustrated that: (1) The bearing capacity of inclined steel grouting pipe with anchorage length of 9 m increases 22.6% compared with that of ordinary grouting pipe. (2) Anchorage length is not a significant influence factor for bearing capacity of inclined steel grouting pipes in loess embankment slope, while anchorage length is a significant influence factor for modulus of load-displacement curves of inclined steel grouting pipes in loess embankment slope. (3) Effective anchorage length of inclined steel grouting pipe in loess embankment slope will be slightly increased when increasing anchorage length, while the ratio of effective anchorage length to total anchorage length will be decreased when increasing anchorage length. (4) Inclined steel grouting pipe average cohesive strength along effective anchorage length section at the interface between cement grouting and soil stratum is at least three times compared with that of rock bolt.…”
  16. 11476

    The physical index properties of the loess. by Jiawei Fan (8822046)

    Published 2024
    “…The field experimental results illustrated that: (1) The bearing capacity of inclined steel grouting pipe with anchorage length of 9 m increases 22.6% compared with that of ordinary grouting pipe. (2) Anchorage length is not a significant influence factor for bearing capacity of inclined steel grouting pipes in loess embankment slope, while anchorage length is a significant influence factor for modulus of load-displacement curves of inclined steel grouting pipes in loess embankment slope. (3) Effective anchorage length of inclined steel grouting pipe in loess embankment slope will be slightly increased when increasing anchorage length, while the ratio of effective anchorage length to total anchorage length will be decreased when increasing anchorage length. (4) Inclined steel grouting pipe average cohesive strength along effective anchorage length section at the interface between cement grouting and soil stratum is at least three times compared with that of rock bolt.…”
  17. 11477

    Force analysis of soil differential element. by Guihai Gao (21594002)

    Published 2025
    “…Based on Duncan-Chang stress-strain model, this paper puts forward a relationship between friction angle and wall displacement ratio, which can consider both non-limit active state and non-limit passive state. …”
  18. 11478

    Relationship curves of by Guihai Gao (21594002)

    Published 2025
    “…Based on Duncan-Chang stress-strain model, this paper puts forward a relationship between friction angle and wall displacement ratio, which can consider both non-limit active state and non-limit passive state. …”
  19. 11479

    The values used to build graphs. by Guihai Gao (21594002)

    Published 2025
    “…Based on Duncan-Chang stress-strain model, this paper puts forward a relationship between friction angle and wall displacement ratio, which can consider both non-limit active state and non-limit passive state. …”
  20. 11480