|Table of Contents|

Design and Implementation of Roadway Geological Sketch Pictures Drawing System Based on MapGIS(PDF)

《地球科学与环境学报》[ISSN:1672-6561/CN:61-1423/P]

Issue:
2011年第01期
Page:
105-110
Research Field:
地球信息科学
Publishing date:

Info

Title:
Design and Implementation of Roadway Geological Sketch Pictures Drawing System Based on MapGIS
Author(s):
YI Hong-yan1CHEN Suo-zhong2XIAO Suo-yun2
1. Archives, Soochow University, Suzhou 215021, Jiangsu, China; 2. Key Laboratory of Virtual GeographicalEnvironment of Ministry of Education, Nanjing Normal University, Nanjing 210046, Jiangsu, China
Keywords:
geological sketch picture data model drawing flow roadway mine MapGIS
PACS:
P623.3;P208
DOI:
-
Abstract:
According to the management business requirement of the metal mining and survey data, the components of roadway geological sketch pictures(RGSP)were analyzed, and the drawing flow of RGSP based on MapGIS and the component modules of the drawing system were designed. The main components of RGSP were essential information, strata information, hydrogeology information, notch groove track information, sample test information. The drawing system of RGSP were composed of eight modules, i.e. data management, coordinate transformation, automatic generation of RGSP template, element drawing, ore-rock type and planar structure, automatic generation of notch groove track, automatic lettering, and generation of integrative RGSP. Then, the object-oriented method was used to analyze the component spatial entities of RGSP and the topological relations of these spatial entities, and the spatial data model and logic model of the drawing system of RGSP were established. Finally, the drawing system of RGSP was realized based on MapGIS platform and component-based development technology, RGSP for Meishan iron mine of Shanghai Baosteel Group Corporation was successfully drawn according to the system. The system provided application basis and practical experience for the information construction of mine geological map.

References:

[1] 康全玉,王玉琨,原东方.矿图设计、绘制与管理信息系统开发[J].焦作工学院学报:自然科学版,2002,21(3):168-171.
[2] 林浔钟.计算机绘制矿图与计算机矿图[J].山东矿业学院学报:自然科学版,1999,18(1):67-69.
[3] 黄 群.浅谈矿山地形地质图的绘制[J].江西铜业工程,1999(1):54-55.
[4] 李兴文,李思峰,郝金山.浅析微机绘制矿图的工作方法和效益[J].煤炭技术,2002,21(9):77-78.
[5] Larman C.UML和模式应用:面向对象分析和设计导论[M].姚淑珍,李 虎,译.北京:机械工业出版社,2002.
[6] 贾建华,张艮龙.巷道三维显示自动建模新方法[J].西安科技大学学报,2010,30(6):716-719.
[7] 陈志杰.高等代数与解析几何[M].北京:高等教育出版社,2000.
[8] 王舒鹏,方 莉.混合积判断线段相交的方法分析[J].电脑开发与应用,2006,19(10):34-35.
[9] 焦建刚,汤中立,钱壮志,等.中国镍铜铂族岩浆矿床矿产地空间数据库建设及其开发应用[J].地球科学与环境学报,2007,29(1):22-25.
[10] 马智民,高凤亮.数字地质图核心元数据库管理系统研究[J].西安工程学院学报,2002,24(3):52-54.
[11] Tate S J,Jared G E M.Recognising Symmetry in Solid Models[J].Computer-aided Design, 2003,35(7):673-692.

Memo

Memo:
-
Last Update: 2011-03-20