地下厂房

  • 网络underground powerhouse
地下厂房地下厂房
  1. 水电站地下厂房锚杆支护模型在CAD和ANSYS中的实现

    Anchor Rod Support Model of Underground Powerhouse Realized in CAD & ANSYS

  2. BP模型在地下厂房顶拱裂缝开度预测中的应用

    The application of BP artificial neural net model in forecasting of opening of arch-crown crack of underground powerhouse

  3. 基于混沌RBF网络的地下厂房围岩变形预报

    RBF neural network with chaotic time series for deformation forecasting of underground powerhouse surrounding rocks

  4. ANFIS在水电站地下厂房围岩变形预测中应用

    Prediction of surrounding deformations of underground powerhouse using ANFIS

  5. 展望21世纪,地下厂房、灯泡贯流式机组厂房将得到广泛的应用,CAD技术将成为厂房设计的重要工具。

    Prospecting to the 21 century , underground powerhouse and powerhouse of bulb tubular unit will be widely adopted in China , and CAD technology will be an important tool for powerhouse design .

  6. 基于改进GSI体系确定三峡地下厂房围岩等效变形模量及强度

    Equivalent Deformation Modulus and Strength Parameters of Surrounding Rock for the Underground Powerhouse of Three Gorges Project Based on the Modified GSI System

  7. 通过ANSYS软件建立地下厂房网格模型,运用自行研制的ANSYS-FLAC3D转换程序将网格模型导入FLAC3D软件进行施工开挖过程模拟。

    This paper through establishes underground plant grid model by ANSYS , it to transforms the grid model to FLAC3D by ANSYS-FLAC3D program .

  8. 采用地下厂房方案,厂房水平埋深250m,垂直埋深185m。

    The underground powerhouse scheme is selected with lateral burial depth of 250m and vertical burial depth of 185m .

  9. 基于ANSYS的地下厂房机墩组合结构分析及配筋程序为此编制了优化程序及配筋计算程序。

    Structural Analysis and Reinforcing Procedure of Generator Frusta Combination of Underground Powerhouse Based on ANSYS Composite Construction Based on ANSYS and It 's Computational Program for Reinforcement The program of the optimization design and the reinforcement calculation was given at last .

  10. 小浪底工程地下厂房设计时,在对围岩进行分类的基础上,采用直接对比法、间接类比法、Q系统分类等方法进行综合分析,确定各洞室的间距及其喷锚支护参数。

    On the basis of classification of wall rock , the spaces between holes and coefficients of rock support were determined by integral analysis such as direct analogism , indirect analogism and Q-system classification method in the design of underground workshop of Xiaolangdi project .

  11. 应用SAS的ETS时序分析与挖掘系统对龙滩水电站地下厂房模型洞的位移观测资料进行了岩体的位移变化趋势预测。

    Lastly , the time series analysis and time series data mining system of SAS / ETS are used to conduct tendency forecasting of displacement of the Longtan Water Power Project underground plant observation tunnel rock .

  12. 西南某水电站恩2滑坡的总体积约800万m3,属大型滑坡,其滑动将对电站地下厂房安全造成严重威胁。

    The En-2 giant landslide at a hydropower station in southwest China is a giant landslide with a volume of 8 million m2 and its sliding will be a serious risk to safety of the underground workshops of the power station .

  13. 针对水电工程地下厂房系统施工的特点,提出了地下厂房施工三维动态可视化仿真与进度优化理论,并研制开发了相应的可视化仿真软件ESAS。

    The second section of this thesis focuses on the methodology of three dimension dynamic visual simulation and schedule optimization for underground structure construction . The corresponding software , ESAS , is developed by author .

  14. 本试验利用自制的地质力学模型材料(MSB),在窑洞式地下厂房的立式平面应力模型的周边上,按实际主应力方向进行加载。

    In this paper , a self-made geomechanics model material ( MSB ) is used for exerting normal load in the direction of actual principal stress on the round sides of the vertical plane stress model of large buried underground power houses .

  15. 关于地下厂房水工设计和施工组织设计的几点建议

    Some Suggestions about Structural Design and Construction Design of Underground Powerhouse

  16. 竖转的操作程序;地下厂房优化设计

    Vertical swing procedures ; Discussions on optimizing methods of underground powerhouse

  17. 某水电站地下厂房区初始地应力场回归分析

    Regression analysis of initial geostress for an underground power plant region

  18. 水工地下厂房岩体隧洞地震反应的初步分析

    Seismic Response Primary Analysis on Underground Rock Tunnel for Hydropower Station

  19. 百色地下厂房洞室施工开挖数值分析

    Numerical analysis of seepage and excavation for Bai-se underground house construction

  20. 超大跨度地下厂房施工期稳定性研究

    Study on Stability of Extra Large Span Underground Powerhouse during Construction

  21. 岩壁梁是地下厂房开挖中的重点和难点。

    Ledge beam is important and difficult in underground powerhouse excavation .

  22. 地下厂房岩壁梁岩台开挖

    Excavation of rock bench for rock face beam of underground powerhouse

  23. 大型地下厂房开挖施工中的关键技术问题研究

    The Key Technologies in the Excavation Construction of Huge Underground Powerhouse

  24. 地下厂房围岩参数场位移反分析

    Displacement back analysis of surrounding rocks for parameter-field of underground powerhouses

  25. 地下厂房工程尾水系统开挖施工技术

    Excavation and construction technique for tailrace structures of underground powerhouse

  26. 地下厂房岩锚梁砼钢管支撑架验算

    Examination Calculation of underground powerhouse rock anchor beam concrete steel pipe support

  27. 江口水电站地下厂房系统布置优化设计

    Optimization design of underground chamber system in Jiangkou hydropower station

  28. 小浪底水利枢纽水电站地下厂房岩壁吊车梁的施工

    Construction of Rocky Crane Beam in Underground Workshop of Xiaolangdi Hydropower Station

  29. 西部三大水电工程地下厂房研究比较

    Comparative study of three large underground powerhouses in West China

  30. 江垭电站地下厂房洞室群共有大小洞室33个。

    Jiangya underground powerhouse has 33 chambers in different size .