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水利水电工程可行性研究报告编制规程(SL618-2013 英文版)
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水利水电工程可行性研究报告编制规程(SL618-2013 英文版)

  • 作者:中华人民共和国水利部
  • 出版社:中国水利水电出版社
  • ISBN:9787517060512
  • 出版日期:2017年10月01日
  • 页数:127
  • 定价:¥280.00
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    内容提要
    《水利水电工程可行性研究报告编制规程(SL618-2013 英文版)》包含:General Provisions、Executive Summary、Hydrology、River Basin Overview、Basic Hydrologic Data、Runoff、 Drainage (Warerlogging) Modulus and Discharge、Sediment、River Watcr Rating Curve、 Surface Evaporation and Ice Regime等。
    文章节选
    《水利水电工程可行性研究报告编制规程(SL618-2013 英文版)》:
    5.4.1 Brief the situation of local physical gcography, socioeco—nomic development of the area, and the status and training planof the river channel and cstuary.For a navigable river channel,clarify the status of navigation and relevant plans; and describethe characteristics of local storm, flood, typhoon, tide, sedi—ment and the topographic and geological conditions.5.4.2 Determine the training scope of river channel and estuary.5.4.3 Based on the importance of the river reach to be trainedand the training situation upstream and downstream of thereach, determine the training criteria through technical and eco—nomic comparison; calculate and determine the river bed—form—ing discharge, and select the design watcr (tide) level, dis—charge and width of the reach.
    ……
    目录
    Introduction to English Version
    Foreword
    1 General Provisions
    2 Executive Summary

    3 Hydrology
    3.1 River Basin Overview
    3.3 Basic Hydrologic Data
    3.4 Runoff
    3.6 Drainage (Warerlogging) Modulus and Discharge
    3.7 Sediment
    3.8 River Watcr Rating Curve
    3.10 Surface Evaporation and Ice Regime
    3.11 Automatic Hydrologic Data Acquisition and Transmission System
    3.12 Figures and Tables Attached

    4 Engineering Geology
    4.1 General Description
    4.2 Regional Tecronics and Ground Morion Parameters
    4.3 Engineering Geology of Reservoir Area
    4.4 Engineering Geology of Dam (Sluice) Site
    4.5 Engineering Geology of Water Releasing Structure
    4.6 Engineering Geology Along Waterway for Power Generation
    4.7 Engineering Geology of Powerhouse and Pump Station
    4.8 Engineefing Geology of Navigation and Fish Passing Structures
    4.9 Engineering Geology of River Diversion and Closure Works
    4.10 Engineering Geology Along Water Conveyance Routes
    4.11 Engineering Geology of Levee and River Training Works
    4.12 Hydrogeology of Irrigation Area
    4.13 Natural Canstruction Materials
    4.14 Figures and Tables

    5 Purposes and Scale of Project 24
    5.1 Necessities and Purposes of Project Development
    5.3 Waterlogging Control
    5.4 River Channel and Estuary Training
    5.5 Irrigation
    5.7 Hydropower
    5.8 Multi—Purpose Project
    5.9 Reinforcement, Renovation and Extension Projects
    5.10 Figures, Tables and Appendices Project Layout and Structures

    6.1 Design Basis
    6.2 Project Crade and Standard
    6.3 Selection of Project Site and Route
    6.4 Selection of Structural Types
    6.5 General Project Layout
    6.6 Water Reraining Structures
    6.7 Water Releasing Structures
    6.8 Waterway for Power Generation
    6.9 Powerhouse (Pump House) and Switchyard
    6.10 Slope Engineering
    6.11 Irrigation and Drainage Structures
    6.12 Water Supply Works
    6.13 Navigation and Fish Passing Structures
    6.16 Engineering Safety Monitoring
    6.17 Reinforcement of Existing Projects Electro—Mechanical Equipment and Hydraulic Steel Works

    7.3 Hydraulic Steel Works
    7.4 Heating, Ventilationand Air Conditioning (HVAC)
    7.5 Fire Fighting

    8 Construction Planning
    8.1 Construction Conditions
    8.2 Selection and Exploitation of Borrow Area/Quarry
    8.3 River Diversion and Closure During Construction
    8.4 Construction of Main Works
    8.5 Construction Transportation and General Construction Layout
    8.6 General Construction Schedule
    8.7 Figures, Tables and Appendices

    9 Land Acquisition and Resettlement
    9.1 General Description
    9.2 Scope of Land Acquisition
    9.3 Land Acquisition Objects
    9.4 Rural Resettlement
    9.5 Town (Fair) Relocation
    9.6 Disposition of Industrial Enterprises
    9.7 Disposition of Specific Works
    9.8 Protection Works
    9.9 Clearance of Reservoir Basin
    9.10 Figures, Tables and Appendices

    10 Environmental Impact Assessment
    10.1 General Description
    10.2 Investigation and As.sessment of Environmental Status
    10.3 Environmental Impact Prediction and Assessment
    10.4 Environmental Protection Countermeasures
    10.5 Environmental Management and Monitoring
    10.6 Comprehensive Assessment Conclusion
    10.7 Figures and Appendices

    11 Water and Soil Conservation
    11.1 General Description
    11.2 Water and Soil Conservation Assessment for Main Works
    11.3 Responsible Area and Zorung of Soil Erosion Control
    11.4 Prediction of Soil Erosion
    11.5 Standard and General Layout of Soil Erosion Control
    11.6 Design of Zoning Control Measures
    11.7 Water and Soil Conservation Management and Monitoring
    11.8 Figures and Appendices

    12 Labor Safety and Industrial Hygiene
    12.1 Anaiysis of Dangerous and Harmful Factors
    12.2 Labor Safety Measures
    12.3 Industrial Hygiene Measures
    12.4 Safety and Health Assessment

    13.2 Energy Consumption Analysis
    13.3 Energy Conservation Measures
    13.4 Energy Conservation Effect Evaluation

    14.1 Project Management System
    14.2 Project Operation Management
    14.3 Scope of Management and Protection
    14.4 Management Facilities and Equipment

    15.2 Principle and Contents of Preparation
    15.4 Cost Comparison and Analysis
    16.3 National Economic Evaluation

    17 Social Stability Risk Analysis
    17.4 Risk Prevention and Mitigation Measures
    17.5 Risk Analysis Conclusions
    Annex A Format of Feasibility Study Report
    Annex B F—Ormat of the Table of Project Characteristics at Feasibility Study Stage Explanation of Wording

    与描述相符

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