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geological相关的网络例句

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与 geological 相关的网络例句 [注:此内容来源于网络,仅供参考]

Then we used Kriging interpolation technique in geological statistics to establish geological graphics model,and presented the method of searching known sample points in the region to be interpolated adjacent to triangle mesh vertex with"polygon"expanding,and the method of dealing with the impact of boundary and faultage on interpolated results by distance revolving.

首先给出限制条件下的区域Delaunay剖分原理;其次采用了地质统计学中的克里金插值技术建立图件模型,提出了"多边形"扩张法搜索待插值三角网格顶点邻域内的已知采样点,以"距离环绕法"处理了断层和边界对插值结果造成的影响;结合地质图件自动建立过程;最后给出了一个具体的应用实例。

Base on the systematically geological investigation and study, we choose to use aremote sensing data source,the geography control data source(1:50,000relief map of Qiaojia and measured GPS ) as the data source of this research, adopt"Digital Landslide"processing image data, and carry on time-space analysiscombining geological investigation and related data. Application aerodynamicist theories, some important conclusions that obtained from the wind-tunnel experiment,and according to the time –space analysis result, we analyzed the landslide dammingmovement mechanism, presumed the movement format of this high-speed landslide,studied the formation mechanism and the movement characteristic of this landslide ,calculated it's movement equation, applied VC language to write calculationprocedure of each stage of the landslide, computed movement speed and displacement,and made sure its possible stop district.

本文在前人研究的基础上,选用遥感数据源、地理控制数据源(1:5万巧家幅地形图及实测GPS点)为本研究的数据源,采用"数字滑坡"技术处理图像数据,结合野外实地考察及相关资料对石膏地滑坡进行了时空分析;运用空气动力学理论,采用胡厚田等人在风洞实验中得出的许多重要结论,根据时空分析结果分析滑坡的运动机理,推测高速滑坡的运动模式;研究石膏地滑坡的形成机理、运动特征及运动方程,并用C++语言在VC开发环境中编写滑坡各阶段的计算程序,计算滑坡的流动速度及运动位移,确定其可能的停止区域。

The theory and method of neural network,and the feasibility and superiority of building the coal bed geological model are also discussed by considering the geological variable characteristics,such as space territory,continuity,anisotropism and great non-liner relation.

摘 要:分析了建立矿床地质模型传统的估值方法的不足,针对地质变量之间具有空间局域性、连续性和各向异性,以及高度非线性关系的特征,阐述了应用人工神经网络原理和方法建立矿床地质模型的可能性和优越性,建立了地质变量参数估值计算的神经网络模型的基本结构,描述了地质变量与其影响因素之间的非线性映射关系,从而提出了基于人工神经网络原理的地质模型估值方法。

It can predict the long-distance geological conditions tunnel driving face: such as soft rock, the geological fault zone and tectonic belt. In general, it can accurately and effectively predict the range of 100 ~ 150m in front of the tunnel driving face, while in the hard rock can be as long as 200m. It can provide detailed geological information for the tunnel construction, and ensure the safety and quality of tunnel construction.

它能长距离的预报隧道施工掌子面前方的地质情况:如软弱岩层、断层构造带以及不良地质地带,在一般的岩层中可以准确预报的有效范围为100~150m,在坚硬岩层中可高达200m,能为隧道工程的施工提供详细的地质资料,保障隧道施工的安全和质量。

The authors discuss some major geological issues in Pre-Cambrian and Mesozoic ear in the South -East China in the light of recent geological mapping and re-expound the geological texture of Mesozoic ear in the South-East China.

作者根据近期一系列地质编图所取得的认识,就中国东南部前寒武纪和中生代地质的一些主要问题进行了讨论。

Article 1These Regulations are formulated for the purposes of strengthening the administration of geological data, bringing into full play the geological data, and protecting the lawful rights and interests of submitters of geological data.

第一条 为加强地质资料的管理,充分发挥地质资料的作用,保护地质资料汇交人的合法权益,制定本条例。

Pit exploration project, including the type of the tunnel is as follows: pit exploration projects in the main role is available for geological personnel to enter the tunnel, direct observation and study of geological structure and ore occurrence, geological sketch and collecting rocks, ore samples.

坑探工程的主要作用是可供地质人员进入坑道内直接观察研究地质构造和矿体产状,进行地质素描和采集岩、矿样品。

In recent years, with the extension of urbanization, the contradiction between the human and the geological environment is increasingly sharp-pointed, and all kinds of geological disaster tends to be more serious because of excessive demand of geological resources.

近年来,由于人类对地质资源的过度需求和城市的扩张,造成人类与地质环境之间的矛盾日益尖锐,各种地质灾害更趋严重。

Thirdly, it analyzes and studies in detail Surpac mechanism and the relevant concepts on constructing the model of mineral deposits and mining engineering systems according to the modeling procedure and the actual conditions of Jinchuan"s mines. Based on these:Lit points out some differences between the western countries and China in the practice of the geological data record, explores the inputting data on computers performed by more people at the same time and the method to improve constructing the data-base and finished the data-base of Jinchuan mineral deposits;2.It puts forward the steps and flow chart to construct the solid model and brings forward the scheme of "first individual then whole to set up Jinchuan mineral deposits geological model, summarizes some experiences for constructing the complicated geological ore body of the high accuracy: add control lines, add auxiliary demarcation lines +control lines, the operation of intersection, cross and incorporation between solid bodies and plane and section combination. The above-mentioned methods applied to construct the mineral deposits solid models of four mine areas in Jinchuan; 3.lt studies and presents the detailed flow chart of constructing block and grade model, analyses the workable scheme in setting up the block and grade model of main ore body for Jinchuan mineral deposits and also sets it up.

接着,按建模流程并结合公司矿山实情,详细研究、分析了Surpac构造矿床模型和采矿工程系统模型的机理、有关概念,在此基础上:(1)指出了西方国家与我国在地质数据记录习惯方面存在的一些差异,探索出多人多机同时录入、提高建库效率的方法,建立了金川矿床地质数据库;(2)研究并提出了构造实体模型的步骤和流程图及&先分后整&建立金川矿床地质体实体模型方案,总结出建立高精度复杂地质体模型几点经验:添加控制线法、添加辅助分界线+控制线法、实体间的交、叉、并运算法及平剖面图联合法,建立了金川矿床四个矿区主矿体的实体模型;(3)研究并提出了建立块模型、品位模型详细流程图,分析了建立金川矿床主矿体块模型和品位模型的可行方案,建立了金川矿床主矿体的块模型和品位模型。

The uncertainties of re serves calculation parameters, such as reservoir volume, porosity, fluid interface, hydrocarbon saturation and volume factor, are evaluated and given a possible variation range respectively, by analyzing their geological origins. The uncertainly variations of reserves calculation parameters are represented in geological modeling, and the OIIP evaluation is made by a combination of geological models with Monte Carlo simulations.

通过分析影响储层体积、孔隙度、流体界面、含烃饱和度以及体积系数等储量计算参数不确定性的地质成因,对各参数的不确定性进行评价并给出可能存在的变化范围;在地质建模中体现储量计算参数的不确定性变化;基于地质模型并结合Monte Carlo模拟方法进行地质储量评价。

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