• 제목/요약/키워드: flexible-rigid composite support

검색결과 2건 처리시간 0.014초

Coordinated supporting method of gob-side entry retaining in coal mines and a case study with hard roof

  • Liu, X.S.;Ning, J.G.;Tan, Y.L.;Xu, Q.;Fan, D.Y.
    • Geomechanics and Engineering
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    • 제15권6호
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    • pp.1173-1182
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    • 2018
  • The coal wall, gob-side backfill, and gangues in goaf, constitute the support system for Gob-side entry retaining (GER) in coal mines. Reasonably allocating and utilizing their bearing capacities are key scientific and technical issues for the safety and economic benefits of the GER technology. At first, a mechanical model of GER was established and a governing equation for coordinated bearing of the coal-backfill-gangue support system was derived to reveal the coordinated bearing mechanism. Then, considering the bearing characteristics of the coal wall, gob-side backfill and gangues in goaf, their quantitative design methods were proposed, respectively. Next, taking the No. 2201 haulage roadway serving the No. 7 coal seam in Jiangjiawan Mine, China, as an example, the design calculations showed that the strains of both the coal wall and gob-side backfill were larger than their allowable strains and the rotational angle of the lateral main roof was larger than its allowable rotational angle. Finally, flexible-rigid composite supporting technology and roof cutting technology were designed and used. In situ investigations showed that the deformation and failure of surrounding rocks were well controlled and both the coal wall and gob-side backfill remained stable. Taking the coal wall, gob-side backfill and gangues in goaf as a whole system, this research takes full consideration of their bearing properties and provides a quantitative basis for design of the support system.

수중에서 퍼넬형 macro fiber composite 에너지 하베스터의 에너지 수확 특성 (A study on the underwater energy harvesting characteristics of a funnel type macro fiber composite energy harvester)

  • 이종길;안진효
    • 한국음향학회지
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    • 제42권1호
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    • pp.57-66
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    • 2023
  • 본 연구에서 제안한 에너지 하베스팅 장치는 입구가 넓고 출구가 좁은 퍼넬형 에너지 하베스터(Funnel Type Energy Harvester, FTEH)에 Macro Fiber Composite(MFC)가 외팔보 형태로 장착되어 있는 구조로서 MFC의 구조를 변화 시켰을 때 FTEH에 수확하는 에너지양의 특성을 이론과 실험을 통하여 분석하였다. MFC의 길이를 50 % 증가 시켰을 때 진동 변위는 3.5배 증가하였고, 두께를 75 % 감소시 30.9배 증가하였다. 수조 실험에서 최대 전력량은 스파이럴 스크루가 장착된 상태의 유연한 지지대에 수직으로 설치된 MFC가 스파이럴 스크루가 없고 견고한 지지대에 수평으로 설치된 경우보다 약 5배 정도 높았다. FTEH에 최적저항 4,010 kΩ을 적용하여 유속 0.24 m/s일 때 FTEH의 출력을 350 s 동안 커패시터에 에너지를 저장하면 4 ㎼·s에 도달하였다. 빠른 유속으로 유연한 지지대에 수직으로 설치된 대면적 MFC의 커패시터 충전 시간을 길게 하면 충전 에너지를 증가시킬 수 있음을 확인하였다.