矿冶工程
礦冶工程
광야공정
2014年
6期
5-9
,共5页
数字矿山%精细模型%混构模型%变异函数%克里格
數字礦山%精細模型%混構模型%變異函數%剋裏格
수자광산%정세모형%혼구모형%변이함수%극리격
digital mine%refined model%hybrid model%vorigram%Kriging
为满足数字矿山建设对矿体三维模型越来越高的精度要求,研究了精细化矿体混构模型的构建方法。利用分支轮廓线的中轴线构造过渡轮廓线,建立无缝连接的矿体分支;通过断层与矿体、矿体与矿体模型之间的布尔运算,实现矿体和断层边界吻合的无缝模型;使用外存八叉树技术构建小尺寸单元块的精细块段模型,提高块段模型边界与矿体表面模型边界的吻合;分析矿石品位的空间变异性,根据变异函数变程、勘探网度以及钻孔工程数量确定对应储量分级的样品搜索策略对矿石品位进行克里格方法估值。以某铜矿为实例对该方法进行验证,结果表明本文提出的精细化模型构建技术能够满足资源分类评价、采矿设计、剖切后出工程图等较高的模型精度要求。
為滿足數字礦山建設對礦體三維模型越來越高的精度要求,研究瞭精細化礦體混構模型的構建方法。利用分支輪廓線的中軸線構造過渡輪廓線,建立無縫連接的礦體分支;通過斷層與礦體、礦體與礦體模型之間的佈爾運算,實現礦體和斷層邊界吻閤的無縫模型;使用外存八扠樹技術構建小呎吋單元塊的精細塊段模型,提高塊段模型邊界與礦體錶麵模型邊界的吻閤;分析礦石品位的空間變異性,根據變異函數變程、勘探網度以及鑽孔工程數量確定對應儲量分級的樣品搜索策略對礦石品位進行剋裏格方法估值。以某銅礦為實例對該方法進行驗證,結果錶明本文提齣的精細化模型構建技術能夠滿足資源分類評價、採礦設計、剖切後齣工程圖等較高的模型精度要求。
위만족수자광산건설대광체삼유모형월래월고적정도요구,연구료정세화광체혼구모형적구건방법。이용분지륜곽선적중축선구조과도륜곽선,건립무봉련접적광체분지;통과단층여광체、광체여광체모형지간적포이운산,실현광체화단층변계문합적무봉모형;사용외존팔차수기술구건소척촌단원괴적정세괴단모형,제고괴단모형변계여광체표면모형변계적문합;분석광석품위적공간변이성,근거변이함수변정、감탐망도이급찬공공정수량학정대응저량분급적양품수색책략대광석품위진행극리격방법고치。이모동광위실례대해방법진행험증,결과표명본문제출적정세화모형구건기술능구만족자원분류평개、채광설계、부절후출공정도등교고적모형정도요구。
In view of the precision of 3D modeling of orebody required to be increasingly high for mine digitization, methods to construct refined hybrid model of orebody was studied in the following steps:firstly, orebody branches were constructed with seamless connection based on the interim contour lines which were drawn using medial axis of contour lines branches. Secondly, based on Boolean operations for the relation between fault and orebody, as well as between orebodies, a close?fitting between orebody and faults boundaries was realized in the seamless 3D modeling. Then, refined block model with small size cell block was created utilizing the out?of?core octree technique, so as to improve the close?fitting between block boundary and orebody surface in the model. Finally, based on the analysis of ore grade spatial variability, a method for searching ore samples in the corresponding reserve grading was determined using virograms, exploration grid density and amount of drills, also the ore grade of cell blocks within block model was evaluated using Kriging interpolation. With a copper mine as a practical example for verification, results show that the technology of refined hybrid model can meet the precision requirment for resources classification and evaluation, mining design, as well as engineering drawings with sectional views.