Multi–Factor Attribute Modeling Method Constrained by Geological Structure:A Case Study in Xixian New Area
-
摘要:
支持结构——属性一体化表达的建模方法是三维建模研究的重点和难点之一。已有三维地质建模技术往往存在结构与属性建模过程的割裂,难以实现对地质结构先验知识与属性分析模拟的融合表达。笔者以西咸新区工程地质建模为例,基于多要素精细化探测成果,建立区域统一的地质构造框架模型;在地质构造约束下,充分考虑地质单元特征,精细剖分建模网格,采用随机模拟算法开展属性建模研究,从而实现地质结构约束下的三维属性模型构建。本方法既保留了构造建模对层面的清晰划分,又可以在地层内部更加合理地展现地质属性的空间分布和变化,能够在工程地质勘察和城市地下空间开发等领域得到应用。
Abstract:The 3D geological modeling method that supports the structure–attribute integrated representation is one of the keys and difficulties in the research of 3D modeling. Existing 3D geological modeling technology is difficult to realize the integration and expression of the prior knowledge of geological structure and attribute analysis and simulation. Taking Xixian new area as an example, a unified regional geological structure framework model is established. Under the constraint of geological structure conditions, three–dimensional structure–attribute integrated expression are realized. This method not only retains geology structural modeling, but also can more reasonably show the spatial distribution and change of geological attributes inside the strata It has been applied in engineering geological investigation and urban underground space development.
-
表 1 建模数据源
Table 1. Data source for 3D geological modeling
编号 数据源 精度 1 大西安地区遥感影像图 2 m 2 西咸新区数字高程模型 5 m 3 西咸新区地貌图 1∶50000 4 西咸新区构造地质图 1∶100000 5 工程地质钻孔 280孔 6 工程地质剖面图 1∶5000 7 多要素测井曲线 167孔 -
[1] 陈麒玉, 刘刚, 何珍文, 等, 面向地质大数据的结构-属性一体化三维地质建模技术现状与展望[J]. 地质科技通报, 2020, 39(04): 51-58
CHEN Qiyu, LIU Gang, HE Zhenwen, et al. Current situation and prospect of structure-attribute integrated 3D geological modeling technology for geological big data[J]. Bulletin of Geological Science and Technology, 2020, 39(04): 51-58.
[2] 方寅琛, 龚日祥, 李三凤, 等. 基于三维地质模型的地下空间开发适宜性评价—以嘉兴城市地质调查工作为例[J]. 上海国土资源, 2017, 38(2): 43-45
FANG Yinchen, GONG Rixiang, LI Sanfeng, et al. Suitability evaluation of underground space development based on a three-dimensional geological model, using the Jiaxing urban geological survey as an example[J]. Shanghai Land & Resources, 2017, 38(2): 43-45.
[3] 何静, 何晗晗, 郑桂森, 等. 北京五环城区浅部沉积层的三维地质结构建模[J]. 中国地质, 2019, 46(2): 244-254
HE Jing, HE Hanhan, ZHENG Guisen, et al. 3D geological modelling of superficial deposits in Beijing City[J]. Geology in China, 2019, 46(2): 244-254.
[4] 李良平, 胡伏生, 尹立河. 鄂尔多斯盆地白垩系三维地质建模研究[J]. 西北地质, 2007, 40(02): 109-113
LI Liangping, HU Fusheng, YIN Lihe. Research on 3D geological modeling of cretaceous in ordos basin[J]. Northwestern Geology, 2007, 40(02): 109-113.
[5] 李林, 朱立峰, 李政国, 等. 复杂断裂构造条件下城市地质三维建模方法研究[J]. 西北地质, 2022, 55(04): 133-139
LI Lin, ZHU Lifeng, LI Zhengguo, et al. Technology Research on the Constructing of Urban Geological 3D Model in Condition of Complex Faults[J]. Northwestern Geology, 2022, 55(03): 133-139.
[6] 李宁, 陈蕴生, 陈方方, 等. 地下洞室围岩稳定性评判方法新探讨[J]. 岩石力学与工程学报, 2006, 25(9): 1941-1944 doi: 10.3321/j.issn:1000-6915.2006.09.033
LI Ning, CHEN Yunsheng, CHEN Fangfang, et al. Research on tunnel stability criterion[J]. Chinese Journal of Rock Mechanics and Engineering, 2006, 25(9): 1941-1944 doi: 10.3321/j.issn:1000-6915.2006.09.033
[7] 李宁, 刘乃飞, 李国峰. 软岩及土质隧洞围岩稳定性评价新方法[J]. 岩石力学与工程学报, 2014, 33(9): 1812 -1821.
LI Ning, LIU Naifei, LI Guofeng, New method for stability evaluation of soil and soft rock tunnels[J]. Chinese Journal of Rock Mechanics and Engineering, 2014, 33(9): 1812-1821
[8] 李青元, 张洛, 曹代勇. 三维地质建模的用途、现状、问题、趋势与建议[J]. 地质与勘探, 2016, 52(4): 759-767
LI Qingyuan, ZHANG Luo, CAO Daiyong, et al. Usage. Status. Problems, Trends and Suggestions of 3D Geological Modeling[J]. Geology and Exploration, 2016, 52(4): 759-767.
[9] 马朝阳, 王占昌, 张立海, 等. 新型三维地质建模方法及其在成都-昌都区域建模的应用[J]. 西北地质, 2022, 55(02): 82-92
MA Zhaoyang, WANG Zhanchang, ZHANG Lihai, et al. A New 3D Geological Modeling Method and Its Application in Chengdu-Changdu Region Modeling [J]. Northwestern Geology, 2022, 55(02): 82-92.
[10] 孟天宇, 王睿, 葛伟亚, 等. 基于三维建模的南京江北新区地下空间资源质量评价[J]. 地理信息世界, 2022, 29(5): 94-100+105
MENG Tianyu, WANG Rui, GE Weiya, et al. Quality Evaluation of Underground Space Resources in Jiangbei New Area of Nanjing Based on 3D Modeling[J]. Geomatics World, 29(5): 94-100+105.
[11] 明镜, 潘懋, 屈红刚. 北京市新生界三维地质结构模型构建[J]. 北京大学学报(自然科学版), 2009, 45(1): 111-119
MING Jing, PAN Mao, QU Honggang. Constructing three dimensional geological structure model of Cenozoic Erathem in Beijing[J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2009, 45(1): 111-119.
[12] 潘懋,方裕,屈红刚.三维地质建模若干基本问题探讨[J].地理与地理信息科学,2007,23(3):1-5.
PAN Mao, FANG Yu, QU Honggang. Discussion on several foundational issues in three-dimensional geological modeling[J]. Geography and Geo-information Science, 2007, 23 (3) :1-5.
[13] 孙波,刘大安.复杂地质界面三维重构与评价方法[J].岩石力学与工程学报.2015,34(3):556-564.
SUN Bo, LIU Da’an. Three-dimensional reconstruction of complex geological interfaces and its evaluation method[J]. Chinese Journal of Rock Mechanics and Engineering, 2015,34(3):556-564.
[14] 谭飞, 汪君, 焦玉勇, 等. 城市地下空间适宜性评价研究国内外现状及趋势[J]. 地球科学. 2021, 46(05): 1896-1908
TAN Fei, WANG Jun, JIAO Yuyong, Current Situation and Development of Urban Underground Space Suitability Evaluation[J]. Earth Science 2021, 46(05): 1896-1908.
[15] 王斌, 郑洪波, 王平, 等. 渭河盆地新生代地层与沉积演化研究: 现状和问题[J]. 地球科学进展, 2013, 28(10): 1126-1135 doi: 10.11867/j.issn.1001-8166.2013.10.1126
WANG Bin, ZHENG Hongbo, WANG Ping, et al. The Cenozoic strata and depositional evolution of Weihe Basin progresses and problems[J]. Advances in Earth Science, 2013, 28(10): 1126-1135. doi: 10.11867/j.issn.1001-8166.2013.10.1126
[16] 王波, 雷传扬, 刘兆鑫, 等. 三维地质建模过程中综合地质剖面构建方法研究[J]. 沉积与特提斯地质, 2021, 41(01): 112-120
WANG Bo, LEI Chuanyang, LIU Zhaoxin, et al. A geological 3D modeling method of comprehensive geological section for Chengdu[J]. Sedimentary Geology and Tethyan Geology, 41(01): 112-120.
[17] 魏嘉. 地质建模技术[J]. 勘探地球物理进展, 2007, 30(1): 1-6
WEI Jia. Review of geologic model building techniques[J]. Progress in Exploration Geophysics, 2007, 30 (1): 1-6.
[18] 武强, 徐华. 三维地质建模与可视化方法研究[J]. 中国科学(D辑)-地球科学, 2004, 34(1): 54-60
WU Qiang, XU Hua. Study on 3D geology modeling and visualization method[J]. Science in China (Series D), Earth Sciences, 2004, 34 (1): 54–60.
[19] 吴宇龙. 基于测井数据的三维工程地质属性建模方法研究[D]. 北京: 中国地质大学(北京), 2020.
WU Yulong. Research on 3D Engineering Geological Attribute Modeling Method Based on Logging Data[D]. Beijing: China University of Geosciences (Beijing), 2020.
[20] 解博. 基于多源测井数据融合的三维随机属性建模[D]. 北京: 中国地质大学(北京), 2021.
XIE Bo. 3D Stochastic Attribute Modeling Based on Multi Source Logging Data Fusion[D]. Beijing: China University of Geosciences (Beijing), 2021.
[21] 谢振乾. 杨建军, 郑宁平. 论渭河盆地断块运动及地震活动特征[J]. 陕西地质, 2010, 28(2): 59-65
XIE Zhenqian, YANG Jianjun ZHENG Ningping Characteristic of fault-block movement and seismicity in the Weihe Basin[J]. Geology of ShaanXi, 2010, 28(2): 59-65.
[22] 杨东来, 张永波, 王新春, 等. 地质体三维建模方法与技术指南[M]. 北京: 地质出版社, 2007
YANG Donglai, ZHANG Yongbo, WANG Xinchun, et al. The geological body and the technology of 3D modeling method guide[M]. BeiJing: Geological Publishing House, 2007.
[23] 张茂省, 王化齐, 王尧, 等. 中国城市地质调查进展与展望[J]. 西北地质, 2018, 51(4): 1-9 doi: 10.3969/j.issn.1009-6248.2018.04.001
ZHANG Maosheng, WANG Huaqi, WANG Yao, et al. Progress and prospects of urban geological survey in China[J]. Northwestern Geology, 2018, 51(4): 1-9. doi: 10.3969/j.issn.1009-6248.2018.04.001
[24] 周念清, 杨浩博, 杨磊, 等. EVS 耦合地层-岩性三维地质建模方法在南宁地铁工程中的应用[J]. 隧道建设, 2020, 40(2): 238 doi: 10.3973/j.issn.2096-4498.2020.02.012
ZHOU Nianqing, YANG Haobo, YANG Lei, et al. Application of EVS coupled stratigraphic-lithologic three-dimensional geological modeling method in Nanning Metro Project[J]. Tunnel Construction, 2020, 40(2): 238. doi: 10.3973/j.issn.2096-4498.2020.02.012
[25] 朱良峰, 吴信才, 潘信. 三维地层模型误差修正机制及其实现技术[J]. 岩土力学, 2006, 27(2): 268-271
ZHU Liangfeng, WU Xincai, PAN Xin. Mechanism and implementation of error correction for 3D strata model[J]. Rock and Soil Mechanics, 2006, 27(2): 268-271.
[26] Mallet J L. Discrete smooth interpolation in geometric modeling [J]. Computer-Aided Design, 1992, 24(4), 177−191.