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地质工程

"地质工程"的翻译和解释

例句与用法

  • This article lists the fuzzy phenomena in geological engineering administrative system and makes analysis on the objective origins
    本文列举了地质工程管理系统存在的模糊现象并分析了其产生的客观根源。
  • 3d visualized modeling technique based on gocad is proposed in view of the complexity of geological engineering in hydropower projects
    摘要针对水电地质工程的复杂性,提出了基于gocad的三维可视化建模技术。
  • The information can be used in the monitor of land use , water quality , geotechnical engineering , environmental protection , commercial potentials , transport planning , housing and industrial site location
    此等数据更可应用于监察土地使用、水质检定、地质工程、环境保护、商业用途、交通规划、房屋及工业选址等。
  • The paper discussed the application of seismic - refraction on tunnel geologic engineering in detail through the practical problems in engineering geology exploration of jikeng tunnel in funing highway , fujan province
    摘要本文通过福建省福宁高速公路矶坑隧道工程地质勘察中的实际问题,详细讨论了地震折射波法在隧道地质工程中的应用。
  • In terms of geological engineering this paper has preliminarily analyzed all kinds of damages causing the north district rock caves to destroy seriously , including wind erosion , rain erosion , flood erodes , crack development , rock body collapsing and environmental desertification
    本文从地质工程的角度,初步分析了造成北区石窟严重破坏的各类病害,包括风蚀、雨蚀、洪水冲刷、裂隙发育、岩体坍塌及环境沙漠化等。
  • This article expands generally the stability of coast through stress and emerhency theory which is applied in the heological engineering , and analysis the basic characters of different kinds of the coast , introduces the theory and way which analysis the stability of the coast
    文中运用地质工程中的应力应变方法对滑坡稳定性进行了综合性的阐述。详细分析了各类滑坡的基本特征,介绍了滑坡稳定性分析的理论和方法。
  • Now it primarily engaged in geological prospecting , regional geological survey , hydrogeology prospecting , environmentgeology surveys , geological mapping and engineering survey , geological hazard prevention , mineral and rock identification and analysis , and water quality analysis , and some chemical products produceing
    现主要从事矿产地质调查与勘查,区域地质调查,水文地质工程地质勘察,环境地质调查,地质测绘与工程测量,地质勘探,地质灾害防治,岩石矿物及水质分析鉴定,地质资料收集分析,地质技术研究推广以及化工产品生产等主要业务。
  • From the viewpoint of that the knowledge body of human beings possesses fuzzy properties , the article sets forth the obfuscations that are encountered in treating fuzzy problems in geological engineering administration with traditional mathematics , demonstrating the feasibility that fuzzy mathematics is used in geological engineering administration
    从人类认识主体具有模糊性角度阐述了用传统数学处理地质工程管理中的模糊问题时遇到的困惑。论证了模糊数学应用于地质工程管理的可行性。介绍了模糊数学的基本概念和常用方法。
  • By the application of the rough set theory , this paper makes quantized evaluation with the geological engineering model for slope , explains its establishing method and procedure , and presents a network for the recognition of the deformation and failure modes of slope . examples from practice are analyzed with the model , which concludes its advantages of high speed , precision , practicability and powerful quantization , exploring a new way for quantized model establishment for slope
    应用rs ( roughset或粗糙集)理论,对边坡地质工程模型进行量化判别,阐述了rs边坡地质工程模型的建模方法及实现步骤,提出了边坡变形破坏模式的识别网络,进行了实例分析,结果表明该方法具有速度快、精度高、实用性强和量化功能强等优点,为边坡量化建模提供了新的思路。
  • Considering the contents of slope model , practice of slope engineering and the present research situation on models for slope and their application situation , this paper puts forward a geological engineering model for slope , and states its definition , contents and establishment methods . this paper then points out , firstly , that the geological engineering model for slope is the product of the unification of engineering and geological conditions of slope , which are complemented to and interacted with each other ; secondly , that engineering conditions are vital in this model , and the stability of slope is up to the coupling degree of engineering conditions and geological conditions , which increases as the degree grows and decreases as it lowers
    从模型的内涵和边坡工程的实际出发,根据目前边坡中模型的研究和应用现状,提出了边坡地质工程模型,并论述了边坡地质工程模型的含义、内容以及建模方法,指出边坡地质工程模型是边坡工程条件和工程地质条件一体化的产物,两者相辅相成、互馈作用,工程条件在边坡地质工程模型中有着重要的地位与作用,边坡的稳定性取决于这两个因素的耦合作用程度,耦合程度越高,边坡越稳定,反之越不稳定。
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