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engineering geological information
相关语句
  工程地质信息
    (5) The 3D visual system of engineering geological information for Jinping First-level Hydropower Station (JP-VisualGeo) is set up successfully. In this way, not only the idea and method in this thesis are testified practically but also the engineering geological information can be utilized roundly and dynamically.
    (5) 最后结合实际工程,成功建立了锦屏一级水电站工程地质信息三维可视化(JP-VisualGeo)系统,不仅使本文提出的方法和思想得到了实证,而且实现了该工程地质信息的三维可视化分析。
短句来源
  “engineering geological information”译为未确定词的双语例句
    (2) The reconstruction approach of 3D unified model of hydraulic and hydroelectric engineering geological information integrated with multi-source geological data was presented.
    从几何性、构造合理性、原始数据精度和反馈信息四个方面进行模型可靠性分析,确保模型解释符合真实情况;
短句来源
    Based on the analysis of engineering geological information and the system function demand, LHEGIS (Engineering Geological Information and Embankment Evaluation System of Lower Huanghe) was developed.
    在对黄河下游堤防地质信息分析的基础上 ,根据系统需求 ,建立了黄河下游工程地质安全评价系统。
短句来源
    Therefore, it is important to constitute reasonable Changjiang River embankment engineering geological information processing model and to get this technical method mature.
    因此 ,建立合理的长江堤防工程地质信息处理模型及其成熟的技术方法具有重要的意义。
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  engineering geological information
Engineering geological information including geotechnical and geological data from exploratory boreholes and trial pits located in the wider area of Athens were stored in a database system.
      
The use of such maps would be more widespread if engineering geological information were more readily available.
      
An analysis of some specific problems connected with processing of engineering geological information.
      
IT offers opportunities for efficient handling of engineering geological information.
      


Based on the analysis of engineering geological information and the system function demand, LHEGIS (Engineering Geological Information and Embankment Evaluation System of Lower Huanghe) was developed. This system, a perfect combination of Data-base management system (DBMS) and Graphic data-base management system(GDMS), can not only input, output, numerically state and manage the data base, and interconvert the data base and attribute base of GDMS, but also inquire, analyse, edit, output and manage...

Based on the analysis of engineering geological information and the system function demand, LHEGIS (Engineering Geological Information and Embankment Evaluation System of Lower Huanghe) was developed. This system, a perfect combination of Data-base management system (DBMS) and Graphic data-base management system(GDMS), can not only input, output, numerically state and manage the data base, and interconvert the data base and attribute base of GDMS, but also inquire, analyse, edit, output and manage space graphic information. LHEGIS supply several methods evaluating the stability of bank slope and dyke, and provide some practical tools, which supply the criterion for the decision of safe management and planning. Five aspects of developing process: function demand analysis, developing methods, designing principle, structure of system, characteristics of system developing are concerned.

在对黄河下游堤防地质信息分析的基础上 ,根据系统需求 ,建立了黄河下游工程地质安全评价系统。该系统将数据库管理系统和图形管理系统有机结合 ,不仅实现了数据库的输入、输出、统计分析 ,以及其与图形属性库之间的转换与管理 ,而且实现了信息的空间查询、空间分析、图形编辑、输出和图形管理 ;系统同时提供堤岸稳定性评价的方法和其它实用工具 ,为黄河下游堤防安全管理和规划提供了辅助决策工具。本文主要从系统功能需求分析、设计原则和开发方法、系统基本框架、及开发实施等五个方面 ,对系统开发进行了较详细地介绍

The main engineering project of flood controlling in the middle and lower reaches of the Changjiang River implemented on the back levee of the Changjiang River.The Changjaing River embankment, a long course and a large project, has a mass of existing geological data.The hydrologic and geologic conditions for the embankment foundation are complex. Henceforth in the engineering-geological investigation work repairing and reinforcing the embankment, it is necessary to collect, store,...

The main engineering project of flood controlling in the middle and lower reaches of the Changjiang River implemented on the back levee of the Changjiang River.The Changjaing River embankment, a long course and a large project, has a mass of existing geological data.The hydrologic and geologic conditions for the embankment foundation are complex. Henceforth in the engineering-geological investigation work repairing and reinforcing the embankment, it is necessary to collect, store, index, analyse, count and maintain data as well as to transfer these data in order to synthesise and compile reports and maps at any moment.In flood season, the related data can be provided for inquiry and transfer of concerned files, or maps in decision making and used intaking measures dealing with an emergency. It increase the value in use and utilization of geological data, in the same way, it ensures the veracity, integrality and share of the imformation. Therefore, it is important to constitute reasonable Changjiang River embankment engineering geological information processing model and to get this technical method mature.

长江中下游的主要防洪工程是长江干堤 ,长江堤防线路长、工程浩大、堤基工程地质水文地质条件复杂 ,涉及大量的已有地质数据和资料。今后在整治加固堤防的工程地质勘察工作中 ,还需随时进行数据的收集、存储、检索、分析、统计和维护 ,随时调用这些数据进行综合处理、编制报告和图件 ;在防汛期间可以针对堤防险工险段的险情 ,随时查询和调用有关的资料、数据或者图件 ,提供采取抢险措施决策的地质依据。这既提高了地质数据的利用价值和利用率 ,又保证了信息的准确性、完整性和共享性。因此 ,建立合理的长江堤防工程地质信息处理模型及其成熟的技术方法具有重要的意义。

 
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